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    <title>New Books in Physics and Chemistry</title>
    <link>https://newbooksnetwork.com</link>
    <language>en</language>
    <copyright>New Books Network</copyright>
    <description>This podcast is a channel on the New Books Network. The New Books Network is an academic audio library dedicated to public education. In each episode you will hear scholars discuss their recently published research with another expert in their field.

Discover our 150+ channels and browse our 28,000+ episodes on our website: ⁠newbooksnetwork.com⁠

Subscribe to our free weekly Substack newsletter to get informative, engaging content straight to your inbox: ⁠https://newbooksnetwork.substack.com/⁠

Follow us on Instagram and Bluesky to learn about more our latest interviews: @newbooksnetwork</description>
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      <title>New Books in Physics and Chemistry</title>
      <link>https://newbooksnetwork.com</link>
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    <itunes:explicit>no</itunes:explicit>
    <itunes:type>episodic</itunes:type>
    <itunes:subtitle>Interviews with physicists and chemists about their new books</itunes:subtitle>
    <itunes:author>New Books Network</itunes:author>
    <itunes:summary>This podcast is a channel on the New Books Network. The New Books Network is an academic audio library dedicated to public education. In each episode you will hear scholars discuss their recently published research with another expert in their field.

Discover our 150+ channels and browse our 28,000+ episodes on our website: ⁠newbooksnetwork.com⁠

Subscribe to our free weekly Substack newsletter to get informative, engaging content straight to your inbox: ⁠https://newbooksnetwork.substack.com/⁠

Follow us on Instagram and Bluesky to learn about more our latest interviews: @newbooksnetwork</itunes:summary>
    <content:encoded>
      <![CDATA[<p>This podcast is a channel on the New Books Network. The New Books Network is an academic audio library dedicated to public education. In each episode you will hear scholars discuss their recently published research with another expert in their field.</p>
<p>Discover our 150+ channels and browse our 28,000+ episodes on our website: <a href="http://newbooksnetwork.com">⁠<u>newbooksnetwork.com</u>⁠</a></p>
<p>Subscribe to our free weekly Substack newsletter to get informative, engaging content straight to your inbox: <a href="https://newbooksnetwork.substack.com/">⁠<u>https://newbooksnetwork.substack.com/</u>⁠</a></p>
<p>Follow us on Instagram and Bluesky to learn about more our latest interviews: @newbooksnetwork</p>]]>
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    <itunes:owner>
      <itunes:name>New Books Network</itunes:name>
      <itunes:email>marshallpoe@newbooksnetwork.com</itunes:email>
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    <itunes:category text="Arts">
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    <itunes:category text="Science">
      <itunes:category text="Physics"/>
      <itunes:category text="Astronomy"/>
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      <title>Keith Cooper, "Amazing Worlds of Science Fiction and Science Fact" (Reaktion, 2025)</title>
      <description>Have you ever wondered what it would be like to watch a double sunset on Tatooine, stand among the sand dunes of Arrakis or gaze at the gas-giant planet Polyphemus from the moon Pandora? In Amazing Worlds of Science Fiction and Science Fact (Reaktion, 2025), Keith Cooper explores the fictional planets of films such as Star Wars, Dune and Avatar, and discusses how realistic they are based on our current scientific understanding and astronomical observations. The real exoplanets astronomers are now discovering are truly stranger than fiction, as the author shows. Featuring insights from over a dozen scientists and award-winning science-fiction authors, including Charlie Jane Anders, Stephen Baxter and Alastair Reynolds, Amazing Worlds of Science Fiction and Science Fact is perfect for readers of popular science and fans of science fiction.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 15 Apr 2026 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Have you ever wondered what it would be like to watch a double sunset on Tatooine, stand among the sand dunes of Arrakis or gaze at the gas-giant planet Polyphemus from the moon Pandora? In Amazing Worlds of Science Fiction and Science Fact (Reaktion, 2025), Keith Cooper explores the fictional planets of films such as Star Wars, Dune and Avatar, and discusses how realistic they are based on our current scientific understanding and astronomical observations. The real exoplanets astronomers are now discovering are truly stranger than fiction, as the author shows. Featuring insights from over a dozen scientists and award-winning science-fiction authors, including Charlie Jane Anders, Stephen Baxter and Alastair Reynolds, Amazing Worlds of Science Fiction and Science Fact is perfect for readers of popular science and fans of science fiction.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Have you ever wondered what it would be like to watch a double sunset on Tatooine, stand among the sand dunes of Arrakis or gaze at the gas-giant planet Polyphemus from the moon Pandora? In <a href="https://bookshop.org/a/12343/9781836392712"><em>Amazing Worlds of Science Fiction and Science Fact</em> </a>(Reaktion, 2025), Keith Cooper explores the fictional planets of films such as Star Wars, Dune and Avatar, and discusses how realistic they are based on our current scientific understanding and astronomical observations. The real exoplanets astronomers are now discovering are truly stranger than fiction, as the author shows. Featuring insights from over a dozen scientists and award-winning science-fiction authors, including Charlie Jane Anders, Stephen Baxter and Alastair Reynolds, <em>Amazing Worlds of Science Fiction and Science Fact</em> is perfect for readers of popular science and fans of science fiction.</p>
<p><em>This interview was conducted by Dr. Miranda Melcher whose</em><a href="https://www.bloomsbury.com/uk/securing-peace-in-angola-and-mozambique-9781350407930/"><em> book</em></a><em> focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on </em><a href="https://newbooksnetwork.com/category/special-series/new-books-with-miranda-melcher"><em>New Books with Miranda Melcher</em></a><em>, wherever you get your podcasts.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2974</itunes:duration>
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    <item>
      <title>Keith Cooper, "Amazing Worlds of Science Fiction and Science Fact" (Reaktion, 2025)</title>
      <description>Have you ever wondered what it would be like to watch a double sunset on Tatooine, stand among the sand dunes of Arrakis or gaze at the gas-giant planet Polyphemus from the moon Pandora? In Amazing Worlds of Science Fiction and Science Fact (Reaktion, 2025), Keith Cooper explores the fictional planets of films such as Star Wars, Dune and Avatar, and discusses how realistic they are based on our current scientific understanding and astronomical observations. The real exoplanets astronomers are now discovering are truly stranger than fiction, as the author shows. Featuring insights from over a dozen scientists and award-winning science-fiction authors, including Charlie Jane Anders, Stephen Baxter and Alastair Reynolds, Amazing Worlds of Science Fiction and Science Fact is perfect for readers of popular science and fans of science fiction.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 15 Apr 2026 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Have you ever wondered what it would be like to watch a double sunset on Tatooine, stand among the sand dunes of Arrakis or gaze at the gas-giant planet Polyphemus from the moon Pandora? In Amazing Worlds of Science Fiction and Science Fact (Reaktion, 2025), Keith Cooper explores the fictional planets of films such as Star Wars, Dune and Avatar, and discusses how realistic they are based on our current scientific understanding and astronomical observations. The real exoplanets astronomers are now discovering are truly stranger than fiction, as the author shows. Featuring insights from over a dozen scientists and award-winning science-fiction authors, including Charlie Jane Anders, Stephen Baxter and Alastair Reynolds, Amazing Worlds of Science Fiction and Science Fact is perfect for readers of popular science and fans of science fiction.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Have you ever wondered what it would be like to watch a double sunset on Tatooine, stand among the sand dunes of Arrakis or gaze at the gas-giant planet Polyphemus from the moon Pandora? In <a href="https://bookshop.org/a/12343/9781836392712"><em>Amazing Worlds of Science Fiction and Science Fact</em> </a>(Reaktion, 2025), Keith Cooper explores the fictional planets of films such as Star Wars, Dune and Avatar, and discusses how realistic they are based on our current scientific understanding and astronomical observations. The real exoplanets astronomers are now discovering are truly stranger than fiction, as the author shows. Featuring insights from over a dozen scientists and award-winning science-fiction authors, including Charlie Jane Anders, Stephen Baxter and Alastair Reynolds, <em>Amazing Worlds of Science Fiction and Science Fact</em> is perfect for readers of popular science and fans of science fiction.</p>
<p><em>This interview was conducted by Dr. Miranda Melcher whose</em><a href="https://www.bloomsbury.com/uk/securing-peace-in-angola-and-mozambique-9781350407930/"><em> book</em></a><em> focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on </em><a href="https://newbooksnetwork.com/category/special-series/new-books-with-miranda-melcher"><em>New Books with Miranda Melcher</em></a><em>, wherever you get your podcasts.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2974</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Matthew Bothwell, "The Invisible Universe: Why There's More to Reality than Meets the Eye" (Simon and Schuster, 2021)</title>
      <description>Since the dawn of our species, people all over the world have gazed in awe at the night sky. But for all the beauty and wonder of the stars, when we look with just our eyes we are seeing and appreciating only a tiny fraction of the Universe. What does the cosmos have in store for us beyond the phenomena we can see, from black holes to supernovas? How different does the invisible Universe look from the home we thought we knew? In ﻿The Invisible Universe: Why There's More to Reality than Meets the Eye (Simon and Schuster, 2021) Dr Matt Bothwell takes us on a journey through the full spectrum of light and beyond, revealing what we have learned about the mysteries of the Universe.This book is a guide to the ninety-nine per cent of cosmic reality we can’t see – the Universe that is hidden, right in front of our eyes. It is also the endpoint of a scientific detective story thousands of years in the telling. It is a tour through our Invisible Universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sun, 12 Apr 2026 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Since the dawn of our species, people all over the world have gazed in awe at the night sky. But for all the beauty and wonder of the stars, when we look with just our eyes we are seeing and appreciating only a tiny fraction of the Universe. What does the cosmos have in store for us beyond the phenomena we can see, from black holes to supernovas? How different does the invisible Universe look from the home we thought we knew? In ﻿The Invisible Universe: Why There's More to Reality than Meets the Eye (Simon and Schuster, 2021) Dr Matt Bothwell takes us on a journey through the full spectrum of light and beyond, revealing what we have learned about the mysteries of the Universe.This book is a guide to the ninety-nine per cent of cosmic reality we can’t see – the Universe that is hidden, right in front of our eyes. It is also the endpoint of a scientific detective story thousands of years in the telling. It is a tour through our Invisible Universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Since the dawn of our species, people all over the world have gazed in awe at the night sky. But for all the beauty and wonder of the stars, when we look with just our eyes we are seeing and appreciating only a tiny fraction of the Universe. What does the cosmos have in store for us beyond the phenomena we can see, from black holes to supernovas? How different does the invisible Universe look from the home we thought we knew? In ﻿<a href="https://bookshop.org/a/12343/9780861544387">The Invisible Universe: Why There's More to Reality than Meets the Eye</a> (Simon and Schuster, 2021) Dr Matt Bothwell takes us on a journey through the full spectrum of light and beyond, revealing what we have learned about the mysteries of the Universe.<br>This book is a guide to the ninety-nine per cent of cosmic reality we can’t see – the Universe that is hidden, right in front of our eyes. It is also the endpoint of a scientific detective story thousands of years in the telling. It is a tour through our Invisible Universe.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4081</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Douglas H. Erwin, "The Origins of the New: Novelty and Innovation in the History of Life, Culture, and Technology" (Princeton UP, 2026)</title>
      <description>The Origins of the New (Princeton University Press, 2026) presents a revolutionary approach to evolutionary success in all realms of life. In this groundbreaking book, Douglas Erwin takes readers on a dazzling excursion across science and history to explore how evolution generates new and enduring features in biology, culture, and technology.Erwin begins by tracing how thinkers from Darwin’s time to the present day have sought to discover the driving mechanisms of evolutionary novelty. He then lays out compelling empirical evidence for separating novelty from innovation, showing that novelty involves the emergence of unique characteristics, while innovation concerns the success of those characteristics over time. Erwin develops a unifying conceptual framework for these powerful dynamics, demonstrating how they have shaped everything from the evolution of avian feathers and flight to the creation of human language and the breathtaking advances in digital computing we’re witnessing today.A landmark work that redefines our understanding of the changes happening all around us, The Origins of the New reveals how the forces of novelty and innovation are the same across nature and culture, continually producing new forms and refashioning the world as we know it.

Our guest is doctor Doug Erwin, who is an independent researcher at the Santa Fe Institute, after retiring as Senior Scientist and Curator of Paleobiology at the National Museum of Natural History of the Smithsonian Institution.

Our host is Eleonora Mattiacci, an Associate Professor of Political Science at Amherst College. She is the author of "Volatile States in International Politics" (Oxford University Press, 2023).
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 06 Apr 2026 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>The Origins of the New (Princeton University Press, 2026) presents a revolutionary approach to evolutionary success in all realms of life. In this groundbreaking book, Douglas Erwin takes readers on a dazzling excursion across science and history to explore how evolution generates new and enduring features in biology, culture, and technology.Erwin begins by tracing how thinkers from Darwin’s time to the present day have sought to discover the driving mechanisms of evolutionary novelty. He then lays out compelling empirical evidence for separating novelty from innovation, showing that novelty involves the emergence of unique characteristics, while innovation concerns the success of those characteristics over time. Erwin develops a unifying conceptual framework for these powerful dynamics, demonstrating how they have shaped everything from the evolution of avian feathers and flight to the creation of human language and the breathtaking advances in digital computing we’re witnessing today.A landmark work that redefines our understanding of the changes happening all around us, The Origins of the New reveals how the forces of novelty and innovation are the same across nature and culture, continually producing new forms and refashioning the world as we know it.

Our guest is doctor Doug Erwin, who is an independent researcher at the Santa Fe Institute, after retiring as Senior Scientist and Curator of Paleobiology at the National Museum of Natural History of the Smithsonian Institution.

Our host is Eleonora Mattiacci, an Associate Professor of Political Science at Amherst College. She is the author of "Volatile States in International Politics" (Oxford University Press, 2023).
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://bookshop.org/p/books/the-origins-of-the-new-novelty-and-innovation-in-the-history-of-life-culture-and-technology-douglas-h-erwin/92069cc0cbc4860b?ean=9780691178943&amp;next=t">The Origins of the New</a><em> (Princeton University Press, 2026)</em> presents a revolutionary approach to evolutionary success in all realms of life. In this groundbreaking book, Douglas Erwin takes readers on a dazzling excursion across science and history to explore how evolution generates new and enduring features in biology, culture, and technology.<br>Erwin begins by tracing how thinkers from Darwin’s time to the present day have sought to discover the driving mechanisms of evolutionary novelty. He then lays out compelling empirical evidence for separating novelty from innovation, showing that novelty involves the emergence of unique characteristics, while innovation concerns the success of those characteristics over time. Erwin develops a unifying conceptual framework for these powerful dynamics, demonstrating how they have shaped everything from the evolution of avian feathers and flight to the creation of human language and the breathtaking advances in digital computing we’re witnessing today.<br>A landmark work that redefines our understanding of the changes happening all around us, <em>The Origins of the New</em> reveals how the forces of novelty and innovation are the same across nature and culture, continually producing new forms and refashioning the world as we know it.</p>
<p>Our guest is doctor <a href="https://santafe.edu/people/profile/douglas-h-erwin">Doug Erwin,</a> who is an independent researcher at the Santa Fe Institute, after retiring as Senior Scientist and Curator of Paleobiology at the National Museum of Natural History of the Smithsonian Institution.</p>
<p>Our host is <a href="https://www.eleonoramattiacci.com/home">Eleonora Mattiacci</a>, an Associate Professor of Political Science at Amherst College. She is the author of "<a href="https://www.eleonoramattiacci.com/book-project-1">Volatile States in International Politics</a>" (Oxford University Press, 2023).</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <itunes:duration>2878</itunes:duration>
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      <title>Vojta Hybl, "Rocks: A Guide to the Stones Around Us and the Stories They Tell" (Frances Lincoln, 2026)</title>
      <description>What is that rock you’ve just picked up? Which minerals is it made of, what’s unique about it and what can it reveal about Earth’s deeper story?Rocks: A Guide to the Stones Around Us and the Stories They Tell (Frances Lincoln, 2026) gives you the tools to answer these questions. Geologist and science illustrator Vojta Hybl guides you through more than 100 rock types, explaining how they form, what they look like and the geological processes they represent.This authoritative yet accessible guide includes clear explanations of igneous, volcaniclastic, sedimentary, metamorphic and anthropic rocks. It also discusses practical tips for spotting and identifying rocks, including detailed specimen illustrations that highlight key features for easy recognition.

Alongside practical identification advice, Rocks invites you to see the ground beneath your feet in a new way, connecting everyday stones to billions of years of planetary change.Whether you’re a curious walker, an outdoor enthusiast or simply fascinated by the natural world, this book will transform how you experience landscapes and help you read the stories written in stone.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 30 Mar 2026 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>What is that rock you’ve just picked up? Which minerals is it made of, what’s unique about it and what can it reveal about Earth’s deeper story?Rocks: A Guide to the Stones Around Us and the Stories They Tell (Frances Lincoln, 2026) gives you the tools to answer these questions. Geologist and science illustrator Vojta Hybl guides you through more than 100 rock types, explaining how they form, what they look like and the geological processes they represent.This authoritative yet accessible guide includes clear explanations of igneous, volcaniclastic, sedimentary, metamorphic and anthropic rocks. It also discusses practical tips for spotting and identifying rocks, including detailed specimen illustrations that highlight key features for easy recognition.

Alongside practical identification advice, Rocks invites you to see the ground beneath your feet in a new way, connecting everyday stones to billions of years of planetary change.Whether you’re a curious walker, an outdoor enthusiast or simply fascinated by the natural world, this book will transform how you experience landscapes and help you read the stories written in stone.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>What is that rock you’ve just picked up? Which minerals is it made of, what’s unique about it and what can it reveal about Earth’s deeper story?<br><em>Rocks: A Guide to the Stones Around Us and the Stories They Tell</em> (Frances Lincoln, 2026) gives you the tools to answer these questions. Geologist and science illustrator Vojta Hybl guides you through more than 100 rock types, explaining how they form, what they look like and the geological processes they represent.<br>This authoritative yet accessible guide includes clear explanations of igneous, volcaniclastic, sedimentary, metamorphic and anthropic rocks. It also discusses practical tips for spotting and identifying rocks, including detailed specimen illustrations that highlight key features for easy recognition.</p>
<p><br>Alongside practical identification advice, <em>Rocks</em> invites you to see the ground beneath your feet in a new way, connecting everyday stones to billions of years of planetary change.<br>Whether you’re a curious walker, an outdoor enthusiast or simply fascinated by the natural world, this book will transform how you experience landscapes and help you read the stories written in stone.</p>
<p><em>This interview was conducted by Dr. Miranda Melcher whose</em><a href="https://www.bloomsbury.com/uk/securing-peace-in-angola-and-mozambique-9781350407930/"><em> book</em></a><em> focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on </em><a href="https://newbooksnetwork.com/category/special-series/new-books-with-miranda-melcher"><em>New Books with Miranda Melcher</em></a><em>, wherever you get your podcasts.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2247</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Patricia B. O'Hara, "Food Chemistry in Small Bites: The Alchemist in the Kitchen" (U California Press, 2025)</title>
      <description>Food Chemistry in Small Bites takes readers on an up-close scientific journey through the transformation of food when meals are prepared. Organized in bite-size, digestible units, this innovative text introduces students to food's molecular makeup as well as the perception of food by the five senses. Using familiar foods as examples, it explores what happens to ingredients when heated, cooled, or treated and also considers what happens when materials that don't naturally mix are forced to do so.

With informative, full-color renderings and a hands-on lab section, the book encourages students to think like scientists while preparing delicious dishes. Readers will formulate hypotheses as to why certain foods taste hot despite being at room temperature, why milk separates into curds and whey when lemon is added, and other ordinary but chemically complex phenomena. This book also importantly challenges readers to think critically about the future of food in the face of a warming planet.

Patricia B. O'Hara is the Amanda and Lisa Cross Professor of Chemistry, Biochemistry, and Biophysics at Amherst College, coauthor of The Chemical Story of Olive Oil, and author of numerous scholarly research publications.

Melek Firat Altay is a trained musician and neurobiologist, currently a postdoctoral scholar at Stanford University.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 30 Mar 2026 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Food Chemistry in Small Bites takes readers on an up-close scientific journey through the transformation of food when meals are prepared. Organized in bite-size, digestible units, this innovative text introduces students to food's molecular makeup as well as the perception of food by the five senses. Using familiar foods as examples, it explores what happens to ingredients when heated, cooled, or treated and also considers what happens when materials that don't naturally mix are forced to do so.

With informative, full-color renderings and a hands-on lab section, the book encourages students to think like scientists while preparing delicious dishes. Readers will formulate hypotheses as to why certain foods taste hot despite being at room temperature, why milk separates into curds and whey when lemon is added, and other ordinary but chemically complex phenomena. This book also importantly challenges readers to think critically about the future of food in the face of a warming planet.

Patricia B. O'Hara is the Amanda and Lisa Cross Professor of Chemistry, Biochemistry, and Biophysics at Amherst College, coauthor of The Chemical Story of Olive Oil, and author of numerous scholarly research publications.

Melek Firat Altay is a trained musician and neurobiologist, currently a postdoctoral scholar at Stanford University.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><em>Food Chemistry in Small Bites</em> takes readers on an up-close scientific journey through the transformation of food when meals are prepared. Organized in bite-size, digestible units, this innovative text introduces students to food's molecular makeup as well as the perception of food by the five senses. Using familiar foods as examples, it explores what happens to ingredients when heated, cooled, or treated and also considers what happens when materials that don't naturally mix are forced to do so.</p>
<p>With informative, full-color renderings and a hands-on lab section, the book encourages students to think like scientists while preparing delicious dishes. Readers will formulate hypotheses as to why certain foods taste hot despite being at room temperature, why milk separates into curds and whey when lemon is added, and other ordinary but chemically complex phenomena. This book also importantly challenges readers to think critically about the future of food in the face of a warming planet.</p>
<p>Patricia B. O'Hara is the Amanda and Lisa Cross Professor of Chemistry, Biochemistry, and Biophysics at Amherst College, coauthor of <em>The Chemical Story of Olive Oil</em>, and author of numerous scholarly research publications.</p>
<p><em>Melek Firat Altay is a trained musician and neurobiologist, currently a postdoctoral scholar at Stanford University.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2090</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[39be6fe2-2bc9-11f1-aa15-4b02d3ec88ca]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK6942406635.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Emma Chapman, "Radio Universe: How to Explore Space Without Leaving Earth" (Hachette UK, 2026)</title>
      <description>In Radio Universe: How to Explore Space Without Leaving Earth (Hachette UK, 2026) award-winning astrophysicist Emma Chapman takes us on an electrifying voyage through the cosmos using one of the most powerful, yet overlooked, tools in science: the radio wave. With dazzling clarity and humour, Chapman reveals how these invisible messengers glide through space, bounce off planets, tunnel through clouds and slip past galactic dust – carrying secrets of the universe that no other kind of light can uncover.

We follow a single radio wave as it escapes Earth and travels outward – ricocheting off the Moon, tunnelling through Venus’s furnace-thick atmosphere, tracing ancient ice hidden in Mercury’s shadows and diving deep into the swirling arms of the Milky Way. Along the way, we meet black holes that roar louder than stars, pulsars more precise than atomic clocks and galaxies lit by the very first starlight. We explore volcanic pancake planets, death-defying neutron stars, the eerie possibility of alien broadcasts – and the fragile question of our own future in the cosmos.A celebration of human ingenuity and cosmic curiosity, The Radio Universe reveals that the true frontier of space isn’t ‘out there’ – it’s humming quietly all around us, waiting to be heard.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 19 Mar 2026 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>In Radio Universe: How to Explore Space Without Leaving Earth (Hachette UK, 2026) award-winning astrophysicist Emma Chapman takes us on an electrifying voyage through the cosmos using one of the most powerful, yet overlooked, tools in science: the radio wave. With dazzling clarity and humour, Chapman reveals how these invisible messengers glide through space, bounce off planets, tunnel through clouds and slip past galactic dust – carrying secrets of the universe that no other kind of light can uncover.

We follow a single radio wave as it escapes Earth and travels outward – ricocheting off the Moon, tunnelling through Venus’s furnace-thick atmosphere, tracing ancient ice hidden in Mercury’s shadows and diving deep into the swirling arms of the Milky Way. Along the way, we meet black holes that roar louder than stars, pulsars more precise than atomic clocks and galaxies lit by the very first starlight. We explore volcanic pancake planets, death-defying neutron stars, the eerie possibility of alien broadcasts – and the fragile question of our own future in the cosmos.A celebration of human ingenuity and cosmic curiosity, The Radio Universe reveals that the true frontier of space isn’t ‘out there’ – it’s humming quietly all around us, waiting to be heard.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="https://www.hachette.co.uk/titles/emma-chapman/radio-universe/9781529398977/"><em>Radio Universe: How to Explore Space Without Leaving Earth</em> </a>(Hachette UK, 2026) award-winning astrophysicist Emma Chapman takes us on an electrifying voyage through the cosmos using one of the most powerful, yet overlooked, tools in science: the radio wave. With dazzling clarity and humour, Chapman reveals how these invisible messengers glide through space, bounce off planets, tunnel through clouds and slip past galactic dust – carrying secrets of the universe that no other kind of light can uncover.</p>
<p><br>We follow a single radio wave as it escapes Earth and travels outward – ricocheting off the Moon, tunnelling through Venus’s furnace-thick atmosphere, tracing ancient ice hidden in Mercury’s shadows and diving deep into the swirling arms of the Milky Way. Along the way, we meet black holes that roar louder than stars, pulsars more precise than atomic clocks and galaxies lit by the very first starlight. We explore volcanic pancake planets, death-defying neutron stars, the eerie possibility of alien broadcasts – and the fragile question of our own future in the cosmos.<br>A celebration of human ingenuity and cosmic curiosity, <em>The Radio Universe</em> reveals that the true frontier of space isn’t ‘out there’ – it’s humming quietly all around us, waiting to be heard.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4400</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[7e3dbed8-21ed-11f1-8018-03f9f512be5a]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK3253219353.mp3?updated=1773745062" length="0" type="audio/mpeg"/>
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    <item>
      <title>Subodhana Wijeyeratne, "The Islands and the Stars: A History of Japan's Space Programs" (Stanford UP, 2026)</title>
      <description>The Japan Aerospace Exploration Agency (JAXA) is among the six largest national space agencies in the world, along with China's CNSA, US's NASA, and Russia's Roscosmos. JAXA's budget is more than $1 billion USD—bigger than France or Germany individually, and more than that of Italy, India, Canada, and the UK combined. And yet, Japan's significant contributions have largely been absent in the history of space exploration, and space exploration largely absent in the history of technology in Japan. The Islands and the Stars: A History of Japan’s Space Programs (Stanford University Press, 2026) corrects this conspicuous oversight. Through meticulous archival research in Japanese and anglophone archives, Dr. Subodhana Wijeyeratne examines the history of Japan's space exploration efforts over nearly a century.

Dr. Wijeyeratne traces the evolution of Japan's space program from its early origins in the 1920s, through the postwar period of rapid technological innovation, to the consolidation of its various institutional elements into JAXA in 2003. He situates Japan's space programs within the broader history of the country's postwar recovery, economic growth, and cultural identity, while also considering their place within global trends in space exploration. Through this narrative, Wijeyeratne not only illuminates Japan's centrality to the global history of science and technology, but also offers insights into the future of global space exploration, emphasizing the importance of diverse voices and perspectives in the quest to understand our place in the cosmos.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 23 Feb 2026 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>The Japan Aerospace Exploration Agency (JAXA) is among the six largest national space agencies in the world, along with China's CNSA, US's NASA, and Russia's Roscosmos. JAXA's budget is more than $1 billion USD—bigger than France or Germany individually, and more than that of Italy, India, Canada, and the UK combined. And yet, Japan's significant contributions have largely been absent in the history of space exploration, and space exploration largely absent in the history of technology in Japan. The Islands and the Stars: A History of Japan’s Space Programs (Stanford University Press, 2026) corrects this conspicuous oversight. Through meticulous archival research in Japanese and anglophone archives, Dr. Subodhana Wijeyeratne examines the history of Japan's space exploration efforts over nearly a century.

Dr. Wijeyeratne traces the evolution of Japan's space program from its early origins in the 1920s, through the postwar period of rapid technological innovation, to the consolidation of its various institutional elements into JAXA in 2003. He situates Japan's space programs within the broader history of the country's postwar recovery, economic growth, and cultural identity, while also considering their place within global trends in space exploration. Through this narrative, Wijeyeratne not only illuminates Japan's centrality to the global history of science and technology, but also offers insights into the future of global space exploration, emphasizing the importance of diverse voices and perspectives in the quest to understand our place in the cosmos.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The Japan Aerospace Exploration Agency (JAXA) is among the six largest national space agencies in the world, along with China's CNSA, US's NASA, and Russia's Roscosmos. JAXA's budget is more than $1 billion USD—bigger than France or Germany individually, and more than that of Italy, India, Canada, and the UK combined. And yet, Japan's significant contributions have largely been absent in the history of space exploration, and space exploration largely absent in the history of technology in Japan. <a href="https://bookshop.org/a/12343/9781503644786">The Islands and the Stars: A History of Japan’s Space Programs</a> (Stanford University Press, 2026) corrects this conspicuous oversight. Through meticulous archival research in Japanese and anglophone archives, Dr. Subodhana Wijeyeratne examines the history of Japan's space exploration efforts over nearly a century.</p>
<p>Dr. Wijeyeratne traces the evolution of Japan's space program from its early origins in the 1920s, through the postwar period of rapid technological innovation, to the consolidation of its various institutional elements into JAXA in 2003. He situates Japan's space programs within the broader history of the country's postwar recovery, economic growth, and cultural identity, while also considering their place within global trends in space exploration. Through this narrative, Wijeyeratne not only illuminates Japan's centrality to the global history of science and technology, but also offers insights into the future of global space exploration, emphasizing the importance of diverse voices and perspectives in the quest to understand our place in the cosmos.</p>
<p><br><em>This interview was conducted by Dr. Miranda Melcher whose</em><a href="https://www.bloomsbury.com/uk/securing-peace-in-angola-and-mozambique-9781350407930/"><em> book</em></a><em> focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on </em><a href="https://newbooksnetwork.com/category/special-series/new-books-with-miranda-melcher"><em>New Books with Miranda Melcher</em></a><em>, wherever you get your podcasts.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2912</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[1ca8074e-1033-11f1-8cdd-9b805efc2724]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK1564580197.mp3?updated=1771795073" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Antonio Padilla, "Fantastic Numbers and Where to Find Them: A Cosmic Quest from Zero to Infinity" (FSG,2022)</title>
      <description>﻿A fun, dazzling exploration of the strange numbers that illuminate the ultimate nature of reality.

For particularly brilliant theoretical physicists like James Clerk Maxwell, Paul Dirac, or Albert Einstein, the search for mathematical truths led to strange new understandings of the ultimate nature of reality. But what are these truths? What are the mysterious numbers that explain the universe?In Fantastic Numbers and Where to Find Them: A Cosmic Quest from Zero to Infinity (FSG,2022), the leading theoretical physicist and YouTube star Antonio Padilla takes us on an irreverent cosmic tour of nine of the most extraordinary numbers in physics, offering a startling picture of how the universe works. These strange numbers include Graham’s number, which is so large that if you thought about it in the wrong way, your head would collapse into a singularity; TREE(3), whose finite nature can never be definitively proved, because to do so would take so much time that the universe would experience a Poincaré Recurrence—resetting to precisely the state it currently holds, down to the arrangement of individual atoms; and 10^{-120}, measuring the desperately unlikely balance of energy needed to allow the universe to exist for more than just a moment, to extend beyond the size of a single atom—in other words, the mystery of our unexpected universe.Leading us down the rabbit hole to a deeper understanding of reality, Padilla explains how these unusual numbers are the key to understanding such mind-boggling phenomena as black holes, relativity, and the problem of the cosmological constant—that the two best and most rigorously tested ways of understanding the universe contradict one another. Fantastic Numbers and Where to Find Them is a combination of popular and cutting-edge science—and a lively, entertaining, and even funny exploration of the most fundamental truths about the universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sun, 15 Feb 2026 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>﻿A fun, dazzling exploration of the strange numbers that illuminate the ultimate nature of reality.

For particularly brilliant theoretical physicists like James Clerk Maxwell, Paul Dirac, or Albert Einstein, the search for mathematical truths led to strange new understandings of the ultimate nature of reality. But what are these truths? What are the mysterious numbers that explain the universe?In Fantastic Numbers and Where to Find Them: A Cosmic Quest from Zero to Infinity (FSG,2022), the leading theoretical physicist and YouTube star Antonio Padilla takes us on an irreverent cosmic tour of nine of the most extraordinary numbers in physics, offering a startling picture of how the universe works. These strange numbers include Graham’s number, which is so large that if you thought about it in the wrong way, your head would collapse into a singularity; TREE(3), whose finite nature can never be definitively proved, because to do so would take so much time that the universe would experience a Poincaré Recurrence—resetting to precisely the state it currently holds, down to the arrangement of individual atoms; and 10^{-120}, measuring the desperately unlikely balance of energy needed to allow the universe to exist for more than just a moment, to extend beyond the size of a single atom—in other words, the mystery of our unexpected universe.Leading us down the rabbit hole to a deeper understanding of reality, Padilla explains how these unusual numbers are the key to understanding such mind-boggling phenomena as black holes, relativity, and the problem of the cosmological constant—that the two best and most rigorously tested ways of understanding the universe contradict one another. Fantastic Numbers and Where to Find Them is a combination of popular and cutting-edge science—and a lively, entertaining, and even funny exploration of the most fundamental truths about the universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>﻿A fun, dazzling exploration of the strange numbers that illuminate the ultimate nature of reality.</p>
<p><br>For particularly brilliant theoretical physicists like James Clerk Maxwell, Paul Dirac, or Albert Einstein, the search for mathematical truths led to strange new understandings of the ultimate nature of reality. But what are these truths? What are the mysterious numbers that explain the universe?<br>In <a href="https://bookshop.org/a/12343/9780374600570">Fantastic Numbers and Where to Find Them: A Cosmic Quest from Zero to Infinity</a> (FSG,2022), the leading theoretical physicist and YouTube star Antonio Padilla takes us on an irreverent cosmic tour of nine of the most extraordinary numbers in physics, offering a startling picture of how the universe works. These strange numbers include Graham’s number, which is so large that if you thought about it in the wrong way, your head would collapse into a singularity; TREE(3), whose finite nature can never be definitively proved, because to do so would take so much time that the universe would experience a Poincaré Recurrence—resetting to precisely the state it currently holds, down to the arrangement of individual atoms; and 10^{-120}, measuring the desperately unlikely balance of energy needed to allow the universe to exist for more than just a moment, to extend beyond the size of a single atom—in other words, the mystery of our unexpected universe.<br>Leading us down the rabbit hole to a deeper understanding of reality, Padilla explains how these unusual numbers are the key to understanding such mind-boggling phenomena as black holes, relativity, and the problem of the cosmological constant—that the two best and most rigorously tested ways of understanding the universe contradict one another. <em>Fantastic Numbers and Where to Find Them</em> is a combination of popular and cutting-edge science—and a lively, entertaining, and even funny exploration of the most fundamental truths about the universe.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3960</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[07c9934e-089d-11f1-8a89-67eeb0eef343]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK3660755485.mp3?updated=1770960748" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Jennifer Vail, "Friction: A Biography" (Harvard UP, 2026)</title>
      <description>Friction, the force that resists motion, is synonymous with difficulty and complication. If you’ve ever replaced tires worn smooth by the road or reached for a can of WD-40 to fix a creaking door hinge, then you know the headache this force can cause.

In Friction: a Biography (Harvard UP, 2026), Dr. Jennifer Vail reveals beneath the difficulty and complication a force as enigmatic and intriguing as it is central to the human story. She traces how, from the moment we first harnessed the power of fire to the Industrial Revolution and beyond, the quest to manipulate friction has driven innovation, culture, and even our own evolution. Today, as scientists study friction in the most unexpected of places, they’re learning why some viruses lie dormant for years while others devastate our cells immediately; where elusive dark matter might be found; and how the climate crisis ought finally be addressed. And yet, for all they’ve learned, scientists still haven’t cracked the greatest mystery of all: how to bridge the distinct laws that govern friction at its largest and smallest scales.

Connecting the discoveries of historical luminaries like Newton, da Vinci, and the Wright brothers to the latest breakthroughs in engineering, Friction is a captivating biography of this unsung hero of the physical world.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 03 Feb 2026 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Friction, the force that resists motion, is synonymous with difficulty and complication. If you’ve ever replaced tires worn smooth by the road or reached for a can of WD-40 to fix a creaking door hinge, then you know the headache this force can cause.

In Friction: a Biography (Harvard UP, 2026), Dr. Jennifer Vail reveals beneath the difficulty and complication a force as enigmatic and intriguing as it is central to the human story. She traces how, from the moment we first harnessed the power of fire to the Industrial Revolution and beyond, the quest to manipulate friction has driven innovation, culture, and even our own evolution. Today, as scientists study friction in the most unexpected of places, they’re learning why some viruses lie dormant for years while others devastate our cells immediately; where elusive dark matter might be found; and how the climate crisis ought finally be addressed. And yet, for all they’ve learned, scientists still haven’t cracked the greatest mystery of all: how to bridge the distinct laws that govern friction at its largest and smallest scales.

Connecting the discoveries of historical luminaries like Newton, da Vinci, and the Wright brothers to the latest breakthroughs in engineering, Friction is a captivating biography of this unsung hero of the physical world.

This interview was conducted by Dr. Miranda Melcher whose book focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on New Books with Miranda Melcher, wherever you get your podcasts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Friction, the force that resists motion, is synonymous with difficulty and complication. If you’ve ever replaced tires worn smooth by the road or reached for a can of WD-40 to fix a creaking door hinge, then you know the headache this force can cause.</p>
<p>In <a href="https://bookshop.org/a/12343/9780674290662">Friction: a Biography</a> (Harvard UP, 2026), Dr. Jennifer Vail reveals beneath the difficulty and complication a force as enigmatic and intriguing as it is central to the human story. She traces how, from the moment we first harnessed the power of fire to the Industrial Revolution and beyond, the quest to manipulate friction has driven innovation, culture, and even our own evolution. Today, as scientists study friction in the most unexpected of places, they’re learning why some viruses lie dormant for years while others devastate our cells immediately; where elusive dark matter might be found; and how the climate crisis ought finally be addressed. And yet, for all they’ve learned, scientists still haven’t cracked the greatest mystery of all: how to bridge the distinct laws that govern friction at its largest and smallest scales.</p>
<p>Connecting the discoveries of historical luminaries like Newton, da Vinci, and the Wright brothers to the latest breakthroughs in engineering, <em>Friction</em> is a captivating biography of this unsung hero of the physical world.</p>
<p><em>This interview was conducted by Dr. Miranda Melcher whose</em><a href="https://www.bloomsbury.com/uk/securing-peace-in-angola-and-mozambique-9781350407930/"><em> book</em></a><em> focuses on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars. You can find Miranda’s interviews on </em><a href="https://newbooksnetwork.com/category/special-series/new-books-with-miranda-melcher"><em>New Books with Miranda Melcher</em></a><em>, wherever you get your podcasts.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2062</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[93e6320e-0007-11f1-ad35-d7f77609876e]]></guid>
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    <item>
      <title>Dagomar Degroot, "Ripples on the Cosmic Ocean: An Environmental History of Our Place in the Solar System" (Harvard UP, 2025)</title>
      <description>﻿Our solar system is a dynamic arena where asteroids careen off course and solar winds hurl charged particles across billions of miles of space. Yet we seldom consider how these events, so immense in scale, influence our fragile blue planet: Earth.

In Ripples on the Cosmic Ocean: An Environmental History of Our Place in the Solar System (Harvard UP, 2025), Dagomar Degroot traces the surprising threads linking human endeavor to the rest of the solar system. He reveals how variability in planetary environments has shaped geopolitics, spurred scientific and cultural innovation, and encouraged new ideas about the emergence and fate of life. Martian dust storms altered the trajectory of the Cold War and inspired fantastical stories about alien civilizations. Comet impacts on Jupiter led to the first planetary defense strategy. And volcanic eruptions spewed sulfuric acid into Venus's atmosphere, exposing the existential risks of climate change at home.

As we stand on the brink of a new era of space settlement, cosmic environments are becoming increasingly vulnerable to human activity. They may also hold the key to slowing the destruction of environments on Earth. Ripples on the Cosmic Ocean urges us to develop an interplanetary environmentalism across a vast mosaic of entangled worlds and to consider the profound connections that bind us to the cosmos and each other.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 13 Jan 2026 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>﻿Our solar system is a dynamic arena where asteroids careen off course and solar winds hurl charged particles across billions of miles of space. Yet we seldom consider how these events, so immense in scale, influence our fragile blue planet: Earth.

In Ripples on the Cosmic Ocean: An Environmental History of Our Place in the Solar System (Harvard UP, 2025), Dagomar Degroot traces the surprising threads linking human endeavor to the rest of the solar system. He reveals how variability in planetary environments has shaped geopolitics, spurred scientific and cultural innovation, and encouraged new ideas about the emergence and fate of life. Martian dust storms altered the trajectory of the Cold War and inspired fantastical stories about alien civilizations. Comet impacts on Jupiter led to the first planetary defense strategy. And volcanic eruptions spewed sulfuric acid into Venus's atmosphere, exposing the existential risks of climate change at home.

As we stand on the brink of a new era of space settlement, cosmic environments are becoming increasingly vulnerable to human activity. They may also hold the key to slowing the destruction of environments on Earth. Ripples on the Cosmic Ocean urges us to develop an interplanetary environmentalism across a vast mosaic of entangled worlds and to consider the profound connections that bind us to the cosmos and each other.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>﻿Our solar system is a dynamic arena where asteroids careen off course and solar winds hurl charged particles across billions of miles of space. Yet we seldom consider how these events, so immense in scale, influence our fragile blue planet: Earth.</p>
<p>In <a href="https://bookshop.org/a/12343/9780674986503">Ripples on the Cosmic Ocean: An Environmental History of Our Place in the Solar System</a><em> </em>(Harvard UP, 2025), Dagomar Degroot traces the surprising threads linking human endeavor to the rest of the solar system. He reveals how variability in planetary environments has shaped geopolitics, spurred scientific and cultural innovation, and encouraged new ideas about the emergence and fate of life. Martian dust storms altered the trajectory of the Cold War and inspired fantastical stories about alien civilizations. Comet impacts on Jupiter led to the first planetary defense strategy. And volcanic eruptions spewed sulfuric acid into Venus's atmosphere, exposing the existential risks of climate change at home.</p>
<p>As we stand on the brink of a new era of space settlement, cosmic environments are becoming increasingly vulnerable to human activity. They may also hold the key to slowing the destruction of environments on Earth. <em>Ripples on the Cosmic Ocean</em> urges us to develop an interplanetary environmentalism across a vast mosaic of entangled worlds and to consider the profound connections that bind us to the cosmos and each other.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4532</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[94d608d8-ef95-11f0-b135-6f3ad78e5aac]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK3334738791.mp3?updated=1768208840" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Heino Falcke and Jörg Römer, "Light in the Darkness: Black Holes, the Universe, and Us" (HarperCollins, 2021)</title>
      <description>An astrophysicist chronicles his quest to photograph a black hole and reflects on its spiritual ramifications in this international-bestselling memoir.

On April 10, 2019, award-winning astrophysicist Heino Falcke presented the first image ever captured of a black hole at an international press conference—a turning point in astronomy that Science magazine called the scientific breakthrough of the year. That photo was captured with the unthinkable commitment of an intercontinental team of astronomers who transformed the world into a global telescope. While this image achieved Falcke's goal in making a black hole "visible" for the first time, he recognizes that the photo itself asks more questions for humanity than it answers.Light in the Darkness takes us on Falcke's extraordinary journey to the darkest corners of the universe. From the first humans looking up at the night sky to modern astrophysics, from the study of black holes to the still-unsolved mysteries of the universe, Falcke asks, in even the greatest triumphs of science, is there room for doubts, faith, and a God? A plea for curiosity and humility, Light in the Darkness sees one of the great minds shaping the world today as he ponders the big, pressing questions that present themselves when we look up at the stars.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 09 Jan 2026 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>165</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>An astrophysicist chronicles his quest to photograph a black hole and reflects on its spiritual ramifications in this international-bestselling memoir.

On April 10, 2019, award-winning astrophysicist Heino Falcke presented the first image ever captured of a black hole at an international press conference—a turning point in astronomy that Science magazine called the scientific breakthrough of the year. That photo was captured with the unthinkable commitment of an intercontinental team of astronomers who transformed the world into a global telescope. While this image achieved Falcke's goal in making a black hole "visible" for the first time, he recognizes that the photo itself asks more questions for humanity than it answers.Light in the Darkness takes us on Falcke's extraordinary journey to the darkest corners of the universe. From the first humans looking up at the night sky to modern astrophysics, from the study of black holes to the still-unsolved mysteries of the universe, Falcke asks, in even the greatest triumphs of science, is there room for doubts, faith, and a God? A plea for curiosity and humility, Light in the Darkness sees one of the great minds shaping the world today as he ponders the big, pressing questions that present themselves when we look up at the stars.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>An astrophysicist chronicles his quest to photograph a black hole and reflects on its spiritual ramifications in this international-bestselling memoir.</p>
<p>On April 10, 2019, award-winning astrophysicist Heino Falcke presented the first image ever captured of a black hole at an international press conference—a turning point in astronomy that <em>Science</em> magazine called the scientific breakthrough of the year. That photo was captured with the unthinkable commitment of an intercontinental team of astronomers who transformed the world into a global telescope. While this image achieved Falcke's goal in making a black hole "visible" for the first time, he recognizes that the photo itself asks more questions for humanity than it answers.<br><em>Light in the Darkness</em> takes us on Falcke's extraordinary journey to the darkest corners of the universe. From the first humans looking up at the night sky to modern astrophysics, from the study of black holes to the still-unsolved mysteries of the universe, Falcke asks, in even the greatest triumphs of science, is there room for doubts, faith, and a God? A plea for curiosity and humility, <em>Light in the Darkness </em>sees one of the great minds shaping the world today as he ponders the big, pressing questions that present themselves when we look up at the stars.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4416</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[85ce83e8-ecba-11f0-9868-3b8dbf70dadd]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK2109985441.mp3?updated=1767896481" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Jeremy Bernstein 11–2007</title>
      <description>In this episode from the Institute’s vault, we revisit an October 2007 presentation by theoretical physicist and Institute Fellow Jeremy Bernstein on J. Robert Oppenheimer, the atomic bomb, and the nuclear arms race that followed.

As a physicist, Bernstein made contributions to elementary particle physics and cosmology, working at the Institute for Advanced Study in Princeton, New York University, and Stevens Institute of Technology, where he became Professor Emeritus in 1967. He held visiting positions at CERN, Oxford, and the École Polytechnique, among others, and was the last surviving senior member of Project Orion, which studied the potential of nuclear pulse propulsion for space travel.

Bernstein was a staff writer for The New Yorker for over three decades. He wrote regularly for The New York Review of Books, The Atlantic Monthly, and Scientific American, and authored over two dozen books, including Oppenheimer: Portrait of an Enigma (2004).

He passed away on April 20th, 2025 at the age of 95. Here he is in 2007, discussing the topics on which he made a great contribution and helped illuminate.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 10 Dec 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>In this episode from the Institute’s vault, we revisit an October 2007 presentation by theoretical physicist and Institute Fellow Jeremy Bernstein on J. Robert Oppenheimer, the atomic bomb, and the nuclear arms race that followed.

As a physicist, Bernstein made contributions to elementary particle physics and cosmology, working at the Institute for Advanced Study in Princeton, New York University, and Stevens Institute of Technology, where he became Professor Emeritus in 1967. He held visiting positions at CERN, Oxford, and the École Polytechnique, among others, and was the last surviving senior member of Project Orion, which studied the potential of nuclear pulse propulsion for space travel.

Bernstein was a staff writer for The New Yorker for over three decades. He wrote regularly for The New York Review of Books, The Atlantic Monthly, and Scientific American, and authored over two dozen books, including Oppenheimer: Portrait of an Enigma (2004).

He passed away on April 20th, 2025 at the age of 95. Here he is in 2007, discussing the topics on which he made a great contribution and helped illuminate.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In this episode from the Institute’s vault, we revisit an October 2007 presentation by theoretical physicist and Institute Fellow Jeremy Bernstein on J. Robert Oppenheimer, the atomic bomb, and the nuclear arms race that followed.</p>
<p>As a physicist, Bernstein made contributions to elementary particle physics and cosmology, working at the Institute for Advanced Study in Princeton, New York University, and Stevens Institute of Technology, where he became Professor Emeritus in 1967. He held visiting positions at CERN, Oxford, and the École Polytechnique, among others, and was the last surviving senior member of Project Orion, which studied the potential of nuclear pulse propulsion for space travel.</p>
<p>Bernstein was a staff writer for <em>The New Yorker</em> for over three decades. He wrote regularly for <em>The New York Review of Books</em>, <em>The Atlantic Monthly</em>, and <em>Scientific American</em>, and authored over two dozen books, including <em>Oppenheimer: Portrait of an Enigma</em> (2004).</p>
<p>He passed away on April 20th, 2025 at the age of 95. Here he is in 2007, discussing the topics on which he made a great contribution and helped illuminate.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2619</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[b7944b62-d4bc-11f0-a9eb-23cfe728c556]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK3796666078.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Jon Willis, "The Pale Blue Data Point: An Earth-Based Perspective on the Search for Alien Life" (U Chicago Press, 2025)</title>
      <description>A thrilling tour of Earth that shows the search for extraterrestrial life starts in our own backyard.Is there life off Earth? Bound by the limitations of spaceflight, a growing number of astrobiologists investigate the question by studying life on our planet. Astronomer and author Jon Willis shows us how it’s done, allowing readers to envision extraterrestrial landscapes by exploring their closest Earth analogs in ﻿The Pale Blue Data Point: An Earth-Based Perspective on the Search for Alien Life (U Chicago Press, 2025). With Willis, we dive into the Pacific Ocean from the submersible-equipped E/V Nautilus to ponder the uncharted seas of Saturn’s and Jupiter’s moons; search the Australian desert for some of Earth’s oldest fossils and consider the prospects for a Martian fossil hunt; visit mountaintop observatories in Chile to search for the telltale twinkle of extrasolar planets; and eavesdrop on dolphins in the Bahamas to imagine alien minds.With investigations ranging from meteorite hunting to exoplanet detection, Willis conjures up alien worlds and unthought-of biological possibilities, speculating what life might look like on other planets by extrapolating from what we can see on Earth, our single “pale blue dot”—as Carl Sagan famously called it—or, in Willis’s reframing, scientists’ “pale blue data point.”
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 03 Dec 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>A thrilling tour of Earth that shows the search for extraterrestrial life starts in our own backyard.Is there life off Earth? Bound by the limitations of spaceflight, a growing number of astrobiologists investigate the question by studying life on our planet. Astronomer and author Jon Willis shows us how it’s done, allowing readers to envision extraterrestrial landscapes by exploring their closest Earth analogs in ﻿The Pale Blue Data Point: An Earth-Based Perspective on the Search for Alien Life (U Chicago Press, 2025). With Willis, we dive into the Pacific Ocean from the submersible-equipped E/V Nautilus to ponder the uncharted seas of Saturn’s and Jupiter’s moons; search the Australian desert for some of Earth’s oldest fossils and consider the prospects for a Martian fossil hunt; visit mountaintop observatories in Chile to search for the telltale twinkle of extrasolar planets; and eavesdrop on dolphins in the Bahamas to imagine alien minds.With investigations ranging from meteorite hunting to exoplanet detection, Willis conjures up alien worlds and unthought-of biological possibilities, speculating what life might look like on other planets by extrapolating from what we can see on Earth, our single “pale blue dot”—as Carl Sagan famously called it—or, in Willis’s reframing, scientists’ “pale blue data point.”
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>A thrilling tour of Earth that shows the search for extraterrestrial life starts in our own backyard.<br>Is there life off Earth? Bound by the limitations of spaceflight, a growing number of astrobiologists investigate the question by studying life on our planet. Astronomer and author Jon Willis shows us how it’s done, allowing readers to envision extraterrestrial landscapes by exploring their closest Earth analogs in ﻿<a href="https://bookshop.org/a/12343/9780226822402"><em>The Pale Blue Data Point: An Earth-Based Perspective on the Search for Alien Life</em> </a>(U Chicago Press, 2025). With Willis, we dive into the Pacific Ocean from the submersible-equipped E/V <em>Nautilus</em> to ponder the uncharted seas of Saturn’s and Jupiter’s moons; search the Australian desert for some of Earth’s oldest fossils and consider the prospects for a Martian fossil hunt; visit mountaintop observatories in Chile to search for the telltale twinkle of extrasolar planets; and eavesdrop on dolphins in the Bahamas to imagine alien minds.<br>With investigations ranging from meteorite hunting to exoplanet detection, Willis conjures up alien worlds and unthought-of biological possibilities, speculating what life might look like on other planets by extrapolating from what we can see on Earth, our single “pale blue dot”—as Carl Sagan famously called it—or, in Willis’s reframing, scientists’ “pale blue data point.”</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4718</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[09abe8c8-cf55-11f0-9b0b-e3a64089ed00]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK4452215403.mp3?updated=1764662705" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title> Andrew H. Jaffe, "The Random Universe: How Models and Probability Help Us Make Sense of the Cosmos" (Yale UP, 2025)</title>
      <description>An award-winning astrophysicist looks at how the understanding of uncertainty and randomness has led to breakthroughs in our knowledge of the cosmos

All of us understand the world around us by constructing models, comparing them to observations, and drawing conclusions. Scientists create, test, and replace these models by applying the twinned concepts of probability and randomness. Exploring how this process has refined our knowledge of quantum mechanics and the birth of the universe,

In The Random Universe: How Models and Probability Help Us Make Sense of the Cosmos ﻿(Yale UP, 2025)﻿﻿﻿ Andrew H. Jaffe offers a unique synthesis of the philosophy of epistemology, the mathematics of probability, and the science of cosmology.

As Jaffe puts Enlightenment thinkers like David Hume in conversation with contemporary philosophers such as Karl Popper and Imre Lakatos and engages with scientists ranging from Isaac Newton and Galileo to Albert Einstein and Arthur Eddington, he uses Thomas Bayes's seminal studies of statistics and probability to make sense of conflicting currents of thought. This is a deep look into how we have learned to account for uncertainty in our search for knowledge--and a reminder that science is not about facts and data as such but about creating models that correctly account for those facts and data.﻿
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 25 Nov 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>An award-winning astrophysicist looks at how the understanding of uncertainty and randomness has led to breakthroughs in our knowledge of the cosmos

All of us understand the world around us by constructing models, comparing them to observations, and drawing conclusions. Scientists create, test, and replace these models by applying the twinned concepts of probability and randomness. Exploring how this process has refined our knowledge of quantum mechanics and the birth of the universe,

In The Random Universe: How Models and Probability Help Us Make Sense of the Cosmos ﻿(Yale UP, 2025)﻿﻿﻿ Andrew H. Jaffe offers a unique synthesis of the philosophy of epistemology, the mathematics of probability, and the science of cosmology.

As Jaffe puts Enlightenment thinkers like David Hume in conversation with contemporary philosophers such as Karl Popper and Imre Lakatos and engages with scientists ranging from Isaac Newton and Galileo to Albert Einstein and Arthur Eddington, he uses Thomas Bayes's seminal studies of statistics and probability to make sense of conflicting currents of thought. This is a deep look into how we have learned to account for uncertainty in our search for knowledge--and a reminder that science is not about facts and data as such but about creating models that correctly account for those facts and data.﻿
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>An award-winning astrophysicist looks at how the understanding of uncertainty and randomness has led to breakthroughs in our knowledge of the cosmos</p>
<p>All of us understand the world around us by constructing models, comparing them to observations, and drawing conclusions. Scientists create, test, and replace these models by applying the twinned concepts of probability and randomness. Exploring how this process has refined our knowledge of quantum mechanics and the birth of the universe,</p>
<p>In <a href="https://bookshop.org/a/12343/9780300250503">The Random Universe: How Models and Probability Help Us Make Sense of the Cosmos</a> ﻿(Yale UP, 2025)﻿﻿﻿ Andrew H. Jaffe offers a unique synthesis of the philosophy of epistemology, the mathematics of probability, and the science of cosmology.</p>
<p>As Jaffe puts Enlightenment thinkers like David Hume in conversation with contemporary philosophers such as Karl Popper and Imre Lakatos and engages with scientists ranging from Isaac Newton and Galileo to Albert Einstein and Arthur Eddington, he uses Thomas Bayes's seminal studies of statistics and probability to make sense of conflicting currents of thought. This is a deep look into how we have learned to account for uncertainty in our search for knowledge--and a reminder that science is not about facts and data as such but about creating models that correctly account for those facts and data.﻿</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5361</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[aaab1c54-c8ec-11f0-acfe-b7c27ef50bd6]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK4832829464.mp3?updated=1763958086" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Craig Hogan, "The Unlikely Primeval Sky" (American Scientist, November-December)</title>
      <description>Of all the patterns that could possibly be preserved in the post–Big Bang radiation, the one we see is surprisingly smooth on large angular scales.﻿

Sitting by a campfire on a dark night, looking up at the Milky Way, a curious child asks, “What does the sky tell us? Where does it all come from? Does space go on forever?” A caring adult might share a little awe and humility about humanity’s place in the grand scheme or perhaps relate a traditional creation story. A scientist like me, who came of age soon after the discovery that the sky is not actually dark but awash in primeval radiation, might instead relate the still-unfinished scientific story of the boundaries and origins of time and space. That tale is displayed in nature’s own record of the structure of the early universe, a mosaic of temperature and density fluctuations preserved in the primordial light that astronomers call the cosmic microwave background (CMB).
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 13 Nov 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Of all the patterns that could possibly be preserved in the post–Big Bang radiation, the one we see is surprisingly smooth on large angular scales.﻿

Sitting by a campfire on a dark night, looking up at the Milky Way, a curious child asks, “What does the sky tell us? Where does it all come from? Does space go on forever?” A caring adult might share a little awe and humility about humanity’s place in the grand scheme or perhaps relate a traditional creation story. A scientist like me, who came of age soon after the discovery that the sky is not actually dark but awash in primeval radiation, might instead relate the still-unfinished scientific story of the boundaries and origins of time and space. That tale is displayed in nature’s own record of the structure of the early universe, a mosaic of temperature and density fluctuations preserved in the primordial light that astronomers call the cosmic microwave background (CMB).
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Of all the patterns that could possibly be preserved in the post–Big Bang radiation, the one we see is surprisingly smooth on large angular scales.﻿</p>
<p>Sitting by a campfire on a dark night, looking up at the Milky Way, a curious child asks, “What does the sky tell us? Where does it all come from? Does space go on forever?” A caring adult might share a little awe and humility about humanity’s place in the grand scheme or perhaps relate a traditional creation story. A scientist like me, who came of age soon after the discovery that the sky is not actually dark but awash in primeval radiation, might instead relate the still-unfinished scientific story of the boundaries and origins of time and space. That tale is displayed in nature’s own record of the structure of the early universe, a mosaic of temperature and density fluctuations preserved in the primordial light that astronomers call the cosmic microwave background (CMB).</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1827</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[9b639d94-bf77-11f0-b0ef-67d4f6172f54]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK9001731561.mp3?updated=1762913945" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Facing Infinity: Black Holes and Our Place on Earth</title>
      <description>Humanity’s relationship with black holes began in 1783 in a small English village, when clergyman John Michell posed a startling question: What if there are objects in space that are so large and heavy that not even light can escape them? Almost 250 years later, in April 2019, scientists presented the first picture of a black hole. Profoundly inspired by that image, physicist Jonas Enander has traveled the world to investigate how our understanding of these elusive celestial objects has evolved since the days of Michell. With the particular goal of discovering our human connection to black holes, Enander visits telescopes and observatories, delves deeply into archives, and interviews over 20 world-leading experts, including several Nobel laureates.

In Facing Infinity: ﻿﻿Black Holes and Our Place on Earth (﻿The Experimen﻿t, 2025), Dr. Enander takes us on a spellbinding journey into the universe’s greatest mystery, deciphers the most mind-bending science, and answers questions surrounding how black holes work, where they come from, and what role they play in the universe. Along the way, he discovers how our desire to understand black holes inadvertently paved the way for the invention of Wi-Fi and the calibration of our global navigation satellites, how astronomical discovery became entangled with colonial conflicts, and how our looking outward gave us critical evidence of the impact of climate change. Facing Infinity helps us appreciate and understand as never before these mysterious celestial objects and our surprising connections to them.

Our guest is: Dr. Jonas Enander, who is a science communicator with a background in cosmology and astrophysics. His previous research focused on dark matter and Einstein’s theory of general relativity. He has worked as a physics teacher at the KTH Royal Institute of Technology in Stockholm, and participated in the construction of the IceCube Neutrino Observatory at the South Pole. He hosts the podcasts Spacetime Fika and Rumtiden.

Our host is: Dr. Christina Gessler, who is a freelance editor. She is the producer of the Academic Life podcast, and writes the show’s newsletter at ChristinaGessler.Substack.Com.

Playlist for listeners:


  The Space-Suit Technician

  The Climate Change Scientist

  The Well-Gardened Mind

  Doctors by Nature

  The Surprising World of Wasps

  The Killer Whale Journals

  The Shark Scientist

  A Day in the Life of Bugs


Welcome to Academic Life, the podcast for your academic journey—and beyond! You can support the show by downloading and sharing episodes. Join us again to learn from more experts inside and outside the academy, and around the world. Missed any of the 275+ Academic Life episodes? Find them here. And thank you for listening!
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 13 Nov 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Humanity’s relationship with black holes began in 1783 in a small English village, when clergyman John Michell posed a startling question: What if there are objects in space that are so large and heavy that not even light can escape them? Almost 250 years later, in April 2019, scientists presented the first picture of a black hole. Profoundly inspired by that image, physicist Jonas Enander has traveled the world to investigate how our understanding of these elusive celestial objects has evolved since the days of Michell. With the particular goal of discovering our human connection to black holes, Enander visits telescopes and observatories, delves deeply into archives, and interviews over 20 world-leading experts, including several Nobel laureates.

In Facing Infinity: ﻿﻿Black Holes and Our Place on Earth (﻿The Experimen﻿t, 2025), Dr. Enander takes us on a spellbinding journey into the universe’s greatest mystery, deciphers the most mind-bending science, and answers questions surrounding how black holes work, where they come from, and what role they play in the universe. Along the way, he discovers how our desire to understand black holes inadvertently paved the way for the invention of Wi-Fi and the calibration of our global navigation satellites, how astronomical discovery became entangled with colonial conflicts, and how our looking outward gave us critical evidence of the impact of climate change. Facing Infinity helps us appreciate and understand as never before these mysterious celestial objects and our surprising connections to them.

Our guest is: Dr. Jonas Enander, who is a science communicator with a background in cosmology and astrophysics. His previous research focused on dark matter and Einstein’s theory of general relativity. He has worked as a physics teacher at the KTH Royal Institute of Technology in Stockholm, and participated in the construction of the IceCube Neutrino Observatory at the South Pole. He hosts the podcasts Spacetime Fika and Rumtiden.

Our host is: Dr. Christina Gessler, who is a freelance editor. She is the producer of the Academic Life podcast, and writes the show’s newsletter at ChristinaGessler.Substack.Com.

Playlist for listeners:


  The Space-Suit Technician

  The Climate Change Scientist

  The Well-Gardened Mind

  Doctors by Nature

  The Surprising World of Wasps

  The Killer Whale Journals

  The Shark Scientist

  A Day in the Life of Bugs


Welcome to Academic Life, the podcast for your academic journey—and beyond! You can support the show by downloading and sharing episodes. Join us again to learn from more experts inside and outside the academy, and around the world. Missed any of the 275+ Academic Life episodes? Find them here. And thank you for listening!
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Humanity’s relationship with black holes began in 1783 in a small English village, when clergyman John Michell posed a startling question: What if there are objects in space that are so large and heavy that not even light can escape them? Almost 250 years later, in April 2019, scientists presented the first picture of a black hole. Profoundly inspired by that image, physicist Jonas Enander has traveled the world to investigate how our understanding of these elusive celestial objects has evolved since the days of Michell. With the particular goal of discovering our <em>human</em> connection to black holes, Enander visits telescopes and observatories, delves deeply into archives, and interviews over 20 world-leading experts, including several Nobel laureates.</p>
<p>In <a href="https://bookshop.org/a/12343/9798893030853">Facing Infinity: ﻿﻿Black Holes and Our Place on Earth </a>(﻿The Experimen﻿t, 2025), Dr. Enander takes us on a spellbinding journey into the universe’s greatest mystery, deciphers the most mind-bending science, and answers questions surrounding how black holes work, where they come from, and what role they play in the universe. Along the way, he discovers how our desire to understand black holes inadvertently paved the way for the invention of Wi-Fi and the calibration of our global navigation satellites, how astronomical discovery became entangled with colonial conflicts, and how our looking outward gave us critical evidence of the impact of climate change. <em>Facing Infinity</em> helps us appreciate and understand as never before these mysterious celestial objects and our surprising connections to them.</p>
<p>Our guest is: Dr. Jonas Enander, who is a science communicator with a background in cosmology and astrophysics. His previous research focused on dark matter and Einstein’s theory of general relativity. He has worked as a physics teacher at the KTH Royal Institute of Technology in Stockholm, and participated in the construction of the IceCube Neutrino Observatory at the South Pole. He hosts the podcasts <em>Spacetime Fika</em> and <em>Rumtiden</em>.</p>
<p>Our host is: <a href="https://christinagessler.com/">Dr. Christina Gessler</a>, who is a freelance editor. She is the producer of the Academic Life podcast, and writes the show’s newsletter at <a href="https://christinagessler.substack.com/">ChristinaGessler.Substack.Com.</a></p>
<p>Playlist for listeners:</p>
<ul>
  <li><a href="https://newbooksnetwork.com/hidden-no-more-a-conversation-with-space-suit-technician-sharon-mcdougle">The Space-Suit Technician</a></li>
  <li><a href="https://newbooksnetwork.com/shuang-ye-wu">The Climate Change Scientist</a></li>
  <li><a href="https://newbooksnetwork.com/exploring-new-paths-to-mental-health-a-discussion-with-sue-stuart-smith">The Well-Gardened Mind</a></li>
  <li><a href="https://newbooksnetwork.com/doctors-by-nature">Doctors by Nature</a></li>
  <li><a href="https://newbooksnetwork.com/endless-forms">The Surprising World of Wasps</a></li>
  <li><a href="https://newbooksnetwork.com/the-killer-whale-journals">The Killer Whale Journals</a></li>
  <li><a href="https://newbooksnetwork.com/sharks-a-day-in-the-life">The Shark Scientist</a></li>
  <li><a href="https://newbooksnetwork.com/bugs-a-day-in-the-life">A Day in the Life of Bugs</a></li>
</ul>
<p>Welcome to Academic Life, the podcast for your academic journey—and beyond! You can support the show by downloading and sharing episodes. Join us again to learn from more experts inside and outside the academy, and around the world. Missed any of the 275+ Academic Life episodes? Find them <a href="https://newbooksnetwork.com/category/up-partners/academic-life">here.</a> And thank you for listening!</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3354</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Marcus Chown, "A Crack in Everything: How Black Holes Came in from the Cold and Took Cosmic Centre Stage" (Apollo, 2025)</title>
      <description>What is space? What is time? Where did the universe come from? The answers to mankind's most enduring questions may lie in science's greatest enigma: black holes.A black hole is a region of space where gravity is so strong that nothing, not even light, can escape. This can occur when a star approaches the end of its life. Unable to generate enough heat to maintain its outer layers, it shrinks catastrophically down to an infinitely dense point.When this phenomenon was first proposed in 1916, it defied scientific understanding so much that Albert Einstein dismissed it as too ridiculous to be true. But scientists have since proven otherwise. In 1971, Paul Murdin and Louise Webster discovered the first black hole: Cygnus X-1. Later, in the 1990s, astronomers using NASA's Hubble Space Telescope found that not only do black holes exist, supermassive black holes lie at the heart of almost every galaxy, including our own. It would take another three decades to confirm this phenomenon. On 10 April 2019, a team of astronomers made history by producing the first image of a black hole.A Crack in Everything: How Black Holes Came in from the Cold and Took Cosmic Centre Stage (Apollo, 2025)is the story of how black holes came in from the cold and took cosmic centre stage. As a journalist, Marcus Chown interviews many of the scientists who made the key discoveries, and, as a former physicist, he translates the most esoteric of science into everyday language. The result is a uniquely engaging page-turner that tells one of the great untold stories in modern science.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 07 Nov 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>What is space? What is time? Where did the universe come from? The answers to mankind's most enduring questions may lie in science's greatest enigma: black holes.A black hole is a region of space where gravity is so strong that nothing, not even light, can escape. This can occur when a star approaches the end of its life. Unable to generate enough heat to maintain its outer layers, it shrinks catastrophically down to an infinitely dense point.When this phenomenon was first proposed in 1916, it defied scientific understanding so much that Albert Einstein dismissed it as too ridiculous to be true. But scientists have since proven otherwise. In 1971, Paul Murdin and Louise Webster discovered the first black hole: Cygnus X-1. Later, in the 1990s, astronomers using NASA's Hubble Space Telescope found that not only do black holes exist, supermassive black holes lie at the heart of almost every galaxy, including our own. It would take another three decades to confirm this phenomenon. On 10 April 2019, a team of astronomers made history by producing the first image of a black hole.A Crack in Everything: How Black Holes Came in from the Cold and Took Cosmic Centre Stage (Apollo, 2025)is the story of how black holes came in from the cold and took cosmic centre stage. As a journalist, Marcus Chown interviews many of the scientists who made the key discoveries, and, as a former physicist, he translates the most esoteric of science into everyday language. The result is a uniquely engaging page-turner that tells one of the great untold stories in modern science.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>What is space? What is time? Where did the universe come from? The answers to mankind's most enduring questions may lie in science's greatest enigma: black holes.<br>A black hole is a region of space where gravity is so strong that nothing, not even light, can escape. This can occur when a star approaches the end of its life. Unable to generate enough heat to maintain its outer layers, it shrinks catastrophically down to an infinitely dense point.<br>When this phenomenon was first proposed in 1916, it defied scientific understanding so much that Albert Einstein dismissed it as too ridiculous to be true. But scientists have since proven otherwise. In 1971, Paul Murdin and Louise Webster discovered the first black hole: Cygnus X-1. Later, in the 1990s, astronomers using NASA's Hubble Space Telescope found that not only do black holes exist, supermassive black holes lie at the heart of almost every galaxy, including our own. It would take another three decades to confirm this phenomenon. On 10 April 2019, a team of astronomers made history by producing the first image of a black hole.<a href="https://bookshop.org/a/12343/9781804544327"><br>A Crack in Everything: How Black Holes Came in from the Cold and Took Cosmic Centre Stage</a> (Apollo, 2025)is the story of how black holes came in from the cold and took cosmic centre stage. As a journalist, Marcus Chown interviews many of the scientists who made the key discoveries, and, as a former physicist, he translates the most esoteric of science into everyday language. The result is a uniquely engaging page-turner that tells one of the great untold stories in modern science.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4678</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>James Trefil and Shobita Satyapal, "Supermassive: Black Holes at the Beginning and End of the Universe" (Smithsonian Books, 2025)</title>
      <description>Black holes, demystified: follow along the quest to understand the history and influence of one of space science's most fascinating and confounding phenomenaLed by physicist James Trefil and astrophysicist Shobita Satyapal, Supermassive: Black Holes at the Beginning and End of the Universe (Smithsonian Books, 2025) traverses the incredible history of black holes and introduces contemporary developments and theories on still unanswered questions about the enigmatic objects. From the early work of Albert Einstein and Karl Schwarzschild to an insider look at black hole-galaxy connection research led by co-author Satyapa, the comprehensive book surveys an exciting and evolving branch of space science, with topics that include:


  Visibility of black holes

  Quasars, the brightest objects in the universe

  The black hole at the center of the Milky Way

  Popular theories on the origin of black holes

  Cosmic X rays

  Death of supermassives

  Black hole collisions

  Black holes in science fiction


Invisible to the naked eye and telescopes, black holes have mystified and entranced astronomers, scientists, and humanity for more than a century. The first image of a supermassive black hole was only unveiled in 2019, and new black holes are continually discovered. Supermassive illuminates what we know about black holes so far and what we have yet to uncover.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 07 Nov 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Black holes, demystified: follow along the quest to understand the history and influence of one of space science's most fascinating and confounding phenomenaLed by physicist James Trefil and astrophysicist Shobita Satyapal, Supermassive: Black Holes at the Beginning and End of the Universe (Smithsonian Books, 2025) traverses the incredible history of black holes and introduces contemporary developments and theories on still unanswered questions about the enigmatic objects. From the early work of Albert Einstein and Karl Schwarzschild to an insider look at black hole-galaxy connection research led by co-author Satyapa, the comprehensive book surveys an exciting and evolving branch of space science, with topics that include:


  Visibility of black holes

  Quasars, the brightest objects in the universe

  The black hole at the center of the Milky Way

  Popular theories on the origin of black holes

  Cosmic X rays

  Death of supermassives

  Black hole collisions

  Black holes in science fiction


Invisible to the naked eye and telescopes, black holes have mystified and entranced astronomers, scientists, and humanity for more than a century. The first image of a supermassive black hole was only unveiled in 2019, and new black holes are continually discovered. Supermassive illuminates what we know about black holes so far and what we have yet to uncover.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Black holes, demystified: follow along the quest to understand the history and influence of one of space science's most fascinating and confounding phenomena<br>Led by physicist James Trefil and astrophysicist Shobita Satyapal, <a href="https://bookshop.org/a/12343/9781588347893">Supermassive: Black Holes at the Beginning and End of the Universe</a> (Smithsonian Books, 2025) traverses the incredible history of black holes and introduces contemporary developments and theories on still unanswered questions about the enigmatic objects. From the early work of Albert Einstein and Karl Schwarzschild to an insider look at black hole-galaxy connection research led by co-author Satyapa, the comprehensive book surveys an exciting and evolving branch of space science, with topics that include:<br></p>
<ul>
  <li>Visibility of black holes</li>
  <li>Quasars, the brightest objects in the universe</li>
  <li>The black hole at the center of the Milky Way</li>
  <li>Popular theories on the origin of black holes</li>
  <li>Cosmic X rays</li>
  <li>Death of supermassives</li>
  <li>Black hole collisions</li>
  <li>Black holes in science fiction</li>
</ul>
<p>Invisible to the naked eye and telescopes, black holes have mystified and entranced astronomers, scientists, and humanity for more than a century. The first image of a supermassive black hole was only unveiled in 2019, and new black holes are continually discovered. <em>Supermassive </em>illuminates what we know about black holes so far and what we have yet to uncover.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3702</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    </item>
    <item>
      <title>Liam Graham, "Physics Fixes All the Facts" (Springer Nature, 2025)</title>
      <description>Complex systems seem to magically emerge from the interactions of their parts. A whirlpool emerges from water molecules. A living cell from organic molecules. You emerge from the cells of your body. Not since chaos has a concept from physics spread like wildfire to other disciplines. Emergence can be found from chemistry to economics; from psychology to ecology. At its heart is the alluring idea that there's more to the world than physics, that there is a holistic component to nature, an edge of mystery.

"Physics Fixes All the Facts" starts by taking you on a tour through a fascinating world of complexity, exploring phenomena from the inside of an atomic nucleus to bacterial behaviour to the ability of your thoughts to affect the world. These examples are used along with a thorough exploration of the philosophical literature to untangle the notoriously poorly defined concept of emergence. This reveals something surprising: the term emergence is redundant. In its weak form it is so weak that it applies to everything. In its strong form it is so restrictive that it is like the belief that there are pixies in your garden, impossible to exclude but not worth spending your time on. Emergence either applies to all systems or to none. Rather than telling us something about the nature of the world, it is an illusion, an artefact of our cognitive limitations.

The past decade has seen a dozen or so monographs and collections about emergence, almost all resolutely supportive of the concept. This book aims to redress the balance. But it is more than just a campaign against the idea of emergence. Graham presents a framework called Austere Physicalism and argues that it is the only coherent way to view the world. He uses this framework to reinterpret so-called emergent phenomena and investigates its wider implications for science. In this radically materialist view, we are nothing but physical systems among others. "Physics Fixes All the Facts" ends by exploring what this means for our sense of free will and consciousness.

The book will appeal to academics in fields which use the concepts of complexity or emergence. Scientists and philosophers alike will find unexpected and exciting ideas in these pages. But the target audience is much broader including students who want to add context to their studies and the intellectually curious with some scientific background.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 05 Nov 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>7</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Complex systems seem to magically emerge from the interactions of their parts. A whirlpool emerges from water molecules. A living cell from organic molecules. You emerge from the cells of your body. Not since chaos has a concept from physics spread like wildfire to other disciplines. Emergence can be found from chemistry to economics; from psychology to ecology. At its heart is the alluring idea that there's more to the world than physics, that there is a holistic component to nature, an edge of mystery.

"Physics Fixes All the Facts" starts by taking you on a tour through a fascinating world of complexity, exploring phenomena from the inside of an atomic nucleus to bacterial behaviour to the ability of your thoughts to affect the world. These examples are used along with a thorough exploration of the philosophical literature to untangle the notoriously poorly defined concept of emergence. This reveals something surprising: the term emergence is redundant. In its weak form it is so weak that it applies to everything. In its strong form it is so restrictive that it is like the belief that there are pixies in your garden, impossible to exclude but not worth spending your time on. Emergence either applies to all systems or to none. Rather than telling us something about the nature of the world, it is an illusion, an artefact of our cognitive limitations.

The past decade has seen a dozen or so monographs and collections about emergence, almost all resolutely supportive of the concept. This book aims to redress the balance. But it is more than just a campaign against the idea of emergence. Graham presents a framework called Austere Physicalism and argues that it is the only coherent way to view the world. He uses this framework to reinterpret so-called emergent phenomena and investigates its wider implications for science. In this radically materialist view, we are nothing but physical systems among others. "Physics Fixes All the Facts" ends by exploring what this means for our sense of free will and consciousness.

The book will appeal to academics in fields which use the concepts of complexity or emergence. Scientists and philosophers alike will find unexpected and exciting ideas in these pages. But the target audience is much broader including students who want to add context to their studies and the intellectually curious with some scientific background.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Complex systems seem to magically emerge from the interactions of their parts. A whirlpool emerges from water molecules. A living cell from organic molecules. You emerge from the cells of your body. Not since chaos has a concept from physics spread like wildfire to other disciplines. Emergence can be found from chemistry to economics; from psychology to ecology. At its heart is the alluring idea that there's more to the world than physics, that there is a holistic component to nature, an edge of mystery.</p>
<p>"Physics Fixes All the Facts" starts by taking you on a tour through a fascinating world of complexity, exploring phenomena from the inside of an atomic nucleus to bacterial behaviour to the ability of your thoughts to affect the world. These examples are used along with a thorough exploration of the philosophical literature to untangle the notoriously poorly defined concept of emergence. This reveals something surprising: the term emergence is redundant. In its weak form it is so weak that it applies to everything. In its strong form it is so restrictive that it is like the belief that there are pixies in your garden, impossible to exclude but not worth spending your time on. Emergence either applies to all systems or to none. Rather than telling us something about the nature of the world, it is an illusion, an artefact of our cognitive limitations.</p>
<p>The past decade has seen a dozen or so monographs and collections about emergence, almost all resolutely supportive of the concept. This book aims to redress the balance. But it is more than just a campaign against the idea of emergence. Graham presents a framework called Austere Physicalism and argues that it is the only coherent way to view the world. He uses this framework to reinterpret so-called emergent phenomena and investigates its wider implications for science. In this radically materialist view, we are nothing but physical systems among others. "Physics Fixes All the Facts" ends by exploring what this means for our sense of free will and consciousness.</p>
<p>The book will appeal to academics in fields which use the concepts of complexity or emergence. Scientists and philosophers alike will find unexpected and exciting ideas in these pages. But the target audience is much broader including students who want to add context to their studies and the intellectually curious with some scientific background.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2813</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Vlatko Vedral, "Portals to a New Reality: Five Pathways to the Future of Physics" (Basic Books, 2025)</title>
      <description>For the last century, physics has been treading along the paths set by the same two theories--quantum theory and general relativity--and, let's face it, it's getting pretty boring. Most scientists are simply chasing decimal points in laboratories, unable to explore the theories at large scales, where serious discrepancies could emerge.

The situation is a lot like the one physics was in in 1890, right before Planck, Einstein, and Bohr blew the roof off Newtonian physics. As Vlatko Vedral argues in Portals to a New Reality: Five Pathways to the Future of Physics (Basic Books, 2025), that means we are on the brink of a revolution. Vedral shows how quantum information theory has opened radically new avenues for experiments that could upend physics. They can sound very strange--one essentially involves entangling a human with Schrödinger's cat--but they lay bare elements of our theories that are particularly problematic, such as the widespread belief that nothing truly exists unless it is observed.

At present these experiments are thought experiments, albeit fascinating ones. But nothing, save inertia and a lack of ambition, stands in our way. Now is the time to rewrite the understanding of the universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 31 Oct 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>For the last century, physics has been treading along the paths set by the same two theories--quantum theory and general relativity--and, let's face it, it's getting pretty boring. Most scientists are simply chasing decimal points in laboratories, unable to explore the theories at large scales, where serious discrepancies could emerge.

The situation is a lot like the one physics was in in 1890, right before Planck, Einstein, and Bohr blew the roof off Newtonian physics. As Vlatko Vedral argues in Portals to a New Reality: Five Pathways to the Future of Physics (Basic Books, 2025), that means we are on the brink of a revolution. Vedral shows how quantum information theory has opened radically new avenues for experiments that could upend physics. They can sound very strange--one essentially involves entangling a human with Schrödinger's cat--but they lay bare elements of our theories that are particularly problematic, such as the widespread belief that nothing truly exists unless it is observed.

At present these experiments are thought experiments, albeit fascinating ones. But nothing, save inertia and a lack of ambition, stands in our way. Now is the time to rewrite the understanding of the universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>For the last century, physics has been treading along the paths set by the same two theories--quantum theory and general relativity--and, let's face it, it's getting pretty boring. Most scientists are simply chasing decimal points in laboratories, unable to explore the theories at large scales, where serious discrepancies could emerge.</p>
<p>The situation is a lot like the one physics was in in 1890, right before Planck, Einstein, and Bohr blew the roof off Newtonian physics. As Vlatko Vedral argues in <a href="https://bookshop.org/a/12343/9781541604780">Portals to a New Reality: Five Pathways to the Future of Physics</a> (Basic Books, 2025), that means we are on the brink of a revolution. Vedral shows how quantum information theory has opened radically new avenues for experiments that could upend physics. They can sound very strange--one essentially involves entangling a human with Schrödinger's cat--but they lay bare elements of our theories that are particularly problematic, such as the widespread belief that nothing truly exists unless it is observed.</p>
<p>At present these experiments are thought experiments, albeit fascinating ones. But nothing, save inertia and a lack of ambition, stands in our way. Now is the time to rewrite the understanding of the universe.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4470</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[86db53b0-b55b-11f0-acbf-e78a184de86c]]></guid>
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    <item>
      <title>Alice Lovejoy, "Tales of Militant Chemistry: The Film Factory in a Century of War" (U California Press, 2025)</title>
      <description>The history of film calls to mind unforgettable photographs, famous directors, and the glitz and hustle of the media business. But there is another tale to tell that connects film as a material to the twentieth century's history of war, destruction, and cruelty.

This story comes into focus during World War II at the factories of Tennessee Eastman, where photographic giant Kodak produced the rudiments of movie magic. Not far away, at Oak Ridge, Kodak was also enriching uranium for the Manhattan Project--uranium mined in the Belgian Congo and destined for the bomb that fell on Hiroshima. While the world's largest film manufacturer transformed into a formidable military contractor, across the ocean its competitor Agfa grew entangled with Nazi Germany's machinery of war. After 1945, Kodak's film factories stood at the front lines of a new, colder war, as their photosensitive products became harbingers of the dangers of nuclear fallout.

Following scientists, soldiers, prisoners, and spies through Kodak's and Agfa's global empires, Alice Lovejoy links the golden age of cinema and photography to colonialism, the military-industrial complex, radioactive dust, and toxic waste. Revelatory and chilling, Tales of Militant Chemistry shows how film became a weapon whose chemistry irrevocably shaped the world we live in today.

Alice Lovejoy is author of the award-winning Army Film and the Avant Garde: Cinema and Experiment in the Czechoslovak Military. A former editor at Film Comment, she is Professor of film and media studies at the University of Minnesota.

Caleb Zakarin is editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 23 Oct 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>The history of film calls to mind unforgettable photographs, famous directors, and the glitz and hustle of the media business. But there is another tale to tell that connects film as a material to the twentieth century's history of war, destruction, and cruelty.

This story comes into focus during World War II at the factories of Tennessee Eastman, where photographic giant Kodak produced the rudiments of movie magic. Not far away, at Oak Ridge, Kodak was also enriching uranium for the Manhattan Project--uranium mined in the Belgian Congo and destined for the bomb that fell on Hiroshima. While the world's largest film manufacturer transformed into a formidable military contractor, across the ocean its competitor Agfa grew entangled with Nazi Germany's machinery of war. After 1945, Kodak's film factories stood at the front lines of a new, colder war, as their photosensitive products became harbingers of the dangers of nuclear fallout.

Following scientists, soldiers, prisoners, and spies through Kodak's and Agfa's global empires, Alice Lovejoy links the golden age of cinema and photography to colonialism, the military-industrial complex, radioactive dust, and toxic waste. Revelatory and chilling, Tales of Militant Chemistry shows how film became a weapon whose chemistry irrevocably shaped the world we live in today.

Alice Lovejoy is author of the award-winning Army Film and the Avant Garde: Cinema and Experiment in the Czechoslovak Military. A former editor at Film Comment, she is Professor of film and media studies at the University of Minnesota.

Caleb Zakarin is editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The history of film calls to mind unforgettable photographs, famous directors, and the glitz and hustle of the media business. But there is another tale to tell that connects film as a material to the twentieth century's history of war, destruction, and cruelty.</p>
<p>This story comes into focus during World War II at the factories of Tennessee Eastman, where photographic giant Kodak produced the rudiments of movie magic. Not far away, at Oak Ridge, Kodak was also enriching uranium for the Manhattan Project--uranium mined in the Belgian Congo and destined for the bomb that fell on Hiroshima. While the world's largest film manufacturer transformed into a formidable military contractor, across the ocean its competitor Agfa grew entangled with Nazi Germany's machinery of war. After 1945, Kodak's film factories stood at the front lines of a new, colder war, as their photosensitive products became harbingers of the dangers of nuclear fallout.</p>
<p>Following scientists, soldiers, prisoners, and spies through Kodak's and Agfa's global empires, Alice Lovejoy links the golden age of cinema and photography to colonialism, the military-industrial complex, radioactive dust, and toxic waste. Revelatory and chilling, <em>Tales of Militant Chemistry</em> shows how film became a weapon whose chemistry irrevocably shaped the world we live in today.</p>
<p>Alice Lovejoy is author of the award-winning <em>Army Film and the Avant Garde: Cinema and Experiment in the Czechoslovak Military</em>. A former editor at <em>Film Comment</em>, she is Professor of film and media studies at the University of Minnesota.</p>
<p><em>Caleb Zakarin is editor of the New Books Network.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2750</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[44349cb8-ae19-11f0-978b-5bec4ca1a95e]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK8378885891.mp3?updated=1761008707" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Jonas Enander, "Facing Infinity: Black Holes and Our Place on Earth" (The Experiment Press, 2025)</title>
      <description>Humanity's relationship with black holes began in 1783 in a small English village, when clergyman John Michell posed a startling question: What if there are objects in space that are so large and heavy that not even light can escape them? Almost 250 years later, in April 2019, scientists presented the first picture of a black hole. Profoundly inspired by that image, physicist Jonas Enander has traveled the world to investigate how our understanding of these elusive celestial objects has evolved since the days of Michell.

With the particular goal of discovering our human connection to black holes, Enander visits telescopes and observatories, delves deeply into archives, and interviews over 20 world-leading experts, including several Nobel laureates. With Facing Infinity: Black Holes and Our Place on Earth (The Experiment Press, 2025), he takes us on a spellbinding journey into the universe's greatest mystery, deciphers the most mind-bending science, and answers questions surrounding how black holes work, where they come from, and what role they play in the universe.

Along the way Enander discovers how our desire to understand black holes inadvertently paved the way for the invention of Wi-Fi and the calibration of our global navigation satellites, how astronomical discovery became entangled with colonial conflicts, and how our looking outward gave us critical evidence of the impact of climate change. Facing Infinity helps us appreciate and understand as never before these mysterious celestial objects and our surprising connections to them.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 23 Sep 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Humanity's relationship with black holes began in 1783 in a small English village, when clergyman John Michell posed a startling question: What if there are objects in space that are so large and heavy that not even light can escape them? Almost 250 years later, in April 2019, scientists presented the first picture of a black hole. Profoundly inspired by that image, physicist Jonas Enander has traveled the world to investigate how our understanding of these elusive celestial objects has evolved since the days of Michell.

With the particular goal of discovering our human connection to black holes, Enander visits telescopes and observatories, delves deeply into archives, and interviews over 20 world-leading experts, including several Nobel laureates. With Facing Infinity: Black Holes and Our Place on Earth (The Experiment Press, 2025), he takes us on a spellbinding journey into the universe's greatest mystery, deciphers the most mind-bending science, and answers questions surrounding how black holes work, where they come from, and what role they play in the universe.

Along the way Enander discovers how our desire to understand black holes inadvertently paved the way for the invention of Wi-Fi and the calibration of our global navigation satellites, how astronomical discovery became entangled with colonial conflicts, and how our looking outward gave us critical evidence of the impact of climate change. Facing Infinity helps us appreciate and understand as never before these mysterious celestial objects and our surprising connections to them.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Humanity's relationship with black holes began in 1783 in a small English village, when clergyman John Michell posed a startling question: What if there are objects in space that are so large and heavy that not even light can escape them? Almost 250 years later, in April 2019, scientists presented the first picture of a black hole. Profoundly inspired by that image, physicist Jonas Enander has traveled the world to investigate how our understanding of these elusive celestial objects has evolved since the days of Michell.</p>
<p>With the particular goal of discovering our <em>human</em> connection to black holes, Enander visits telescopes and observatories, delves deeply into archives, and interviews over 20 world-leading experts, including several Nobel laureates. With <a href="https://bookshop.org/a/12343/9798893030853">Facing Infinity: Black Holes and Our Place on Earth </a>(The Experiment Press, 2025), he takes us on a spellbinding journey into the universe's greatest mystery, deciphers the most mind-bending science, and answers questions surrounding how black holes work, where they come from, and what role they play in the universe.</p>
<p>Along the way Enander discovers how our desire to understand black holes inadvertently paved the way for the invention of Wi-Fi and the calibration of our global navigation satellites, how astronomical discovery became entangled with colonial conflicts, and how our looking outward gave us critical evidence of the impact of climate change. <em>Facing Infinity</em> helps us appreciate and understand as never before these mysterious celestial objects and our surprising connections to them.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3959</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[93bdecca-9790-11f0-87ef-1b63a8515096]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK5509734582.mp3?updated=1758530943" length="0" type="audio/mpeg"/>
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    <item>
      <title>Mario Livio and Jack Szostak, "Is Earth Exceptional?: The Quest for Cosmic Life" (Basic Books, 2024)</title>
      <description>For a long time, scientists have wondered how life has emerged from inanimate chemistry, and whether Earth is the only place where it exists. Charles Darwin speculated about life on Earth beginning in a warm little pond. Some of his contemporaries believed that life existed on Mars. It once seemed inevitable that the truth would be known by now.

It is not. For more than a century, the origins and extent of life have remained shrouded in mystery. But, as Mario Livio and Jack Szostak reveal in Is Earth Exceptional?﻿: The Quest for Cosmic Life (Basic Books, 2024), the veil is finally lifting. The authors describe how life's building blocks--from RNA to amino acids and cells--could have emerged from the chaos of Earth's early existence. They then apply the knowledge gathered from cutting-edge research across the sciences to the search for life in the cosmos: both life as we know it and life as we don't.

Why and where life exists are two of the biggest unsolved problems in science. Is Earth Exceptional? is the ultimate exploration of the question of whether life is a freak accident or a chemical imperative.﻿
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 21 Aug 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>For a long time, scientists have wondered how life has emerged from inanimate chemistry, and whether Earth is the only place where it exists. Charles Darwin speculated about life on Earth beginning in a warm little pond. Some of his contemporaries believed that life existed on Mars. It once seemed inevitable that the truth would be known by now.

It is not. For more than a century, the origins and extent of life have remained shrouded in mystery. But, as Mario Livio and Jack Szostak reveal in Is Earth Exceptional?﻿: The Quest for Cosmic Life (Basic Books, 2024), the veil is finally lifting. The authors describe how life's building blocks--from RNA to amino acids and cells--could have emerged from the chaos of Earth's early existence. They then apply the knowledge gathered from cutting-edge research across the sciences to the search for life in the cosmos: both life as we know it and life as we don't.

Why and where life exists are two of the biggest unsolved problems in science. Is Earth Exceptional? is the ultimate exploration of the question of whether life is a freak accident or a chemical imperative.﻿
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>For a long time, scientists have wondered how life has emerged from inanimate chemistry, and whether Earth is the only place where it exists. Charles Darwin speculated about life on Earth beginning in a warm little pond. Some of his contemporaries believed that life existed on Mars. It once seemed inevitable that the truth would be known by now.</p>
<p>It is not. For more than a century, the origins and extent of life have remained shrouded in mystery. But, as Mario Livio and Jack Szostak reveal in <a href="https://bookshop.org/a/12343/9781541602960">Is Earth Exceptional?﻿: The Quest for Cosmic Life</a><em> </em>(Basic Books, 2024), the veil is finally lifting. The authors describe how life's building blocks--from RNA to amino acids and cells--could have emerged from the chaos of Earth's early existence. They then apply the knowledge gathered from cutting-edge research across the sciences to the search for life in the cosmos: both life as we know it and life as we don't.</p>
<p>Why and where life exists are two of the biggest unsolved problems in science. <em>Is Earth Exceptional? </em>is the ultimate exploration of the question of whether life is a freak accident or a chemical imperative.﻿</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3344</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[43ab5e40-7da8-11f0-8568-dff74ae120ff]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK8189659874.mp3?updated=1755682861" length="0" type="audio/mpeg"/>
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    <item>
      <title>Richard Mainwaring, "What the Ear Hears (And Doesn't): Inside the Extraordinary Everyday World of Frequency" (Sourcebooks, 2022)</title>
      <description>What do the world's loneliest whale, a black hole, and twenty-three people doing Tae Bo all have in common?

In 2011, a skyscraper in South Korea began to shake uncontrollably without warning and was immediately evacuated. Was it an earthquake? An attack? No one seemed quite sure. The actual cause emerged later and is utterly fascinating: Twenty-three middle-aged folks were having a Tae Bo fitness class in the office gym on the twelfth floor. Their beats had inadvertently matched the building's natural frequency, and this coincidence--harnessing a basic principle of physics--caused the building to shake at an alarming rate for ten minutes. Frequency is all around us, but little understood.

Musician, composer, TV presenter, and educator Richard Mainwaring uses the concept of the Infinite Piano to reveal the extraordinary world of frequency in a multitude of arenas--from medicine to religion to the environment to the paranormal--through the universality of music and a range of memorable human (and animal) stories laced with dry humor. Whether you're science curious, musically inclined, or just want to know what a Szechuan pepper has to do with physics, What the Ear Hears (and Doesn't): Inside the Extraordinary Everyday World of Frequency (Sourcebooks, 2022) is an immensely enjoyable read filled with "did you know?" trivia you'll love to share with friends.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 13 Aug 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>What do the world's loneliest whale, a black hole, and twenty-three people doing Tae Bo all have in common?

In 2011, a skyscraper in South Korea began to shake uncontrollably without warning and was immediately evacuated. Was it an earthquake? An attack? No one seemed quite sure. The actual cause emerged later and is utterly fascinating: Twenty-three middle-aged folks were having a Tae Bo fitness class in the office gym on the twelfth floor. Their beats had inadvertently matched the building's natural frequency, and this coincidence--harnessing a basic principle of physics--caused the building to shake at an alarming rate for ten minutes. Frequency is all around us, but little understood.

Musician, composer, TV presenter, and educator Richard Mainwaring uses the concept of the Infinite Piano to reveal the extraordinary world of frequency in a multitude of arenas--from medicine to religion to the environment to the paranormal--through the universality of music and a range of memorable human (and animal) stories laced with dry humor. Whether you're science curious, musically inclined, or just want to know what a Szechuan pepper has to do with physics, What the Ear Hears (and Doesn't): Inside the Extraordinary Everyday World of Frequency (Sourcebooks, 2022) is an immensely enjoyable read filled with "did you know?" trivia you'll love to share with friends.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><em><strong>What do the world's loneliest whale, a black hole, and twenty-three people doing Tae Bo all have in common?</strong></em></p>
<p>In 2011, a skyscraper in South Korea began to shake uncontrollably without warning and was immediately evacuated. Was it an earthquake? An attack? No one seemed quite sure. The actual cause emerged later and is utterly fascinating: Twenty-three middle-aged folks were having a Tae Bo fitness class in the office gym on the twelfth floor. Their beats had inadvertently matched the building's natural frequency, and this coincidence--harnessing a basic principle of physics--caused the building to shake at an alarming rate for ten minutes. Frequency is all around us, but little understood.</p>
<p>Musician, composer, TV presenter, and educator Richard Mainwaring uses the concept of the Infinite Piano to reveal the extraordinary world of frequency in a multitude of arenas--from medicine to religion to the environment to the paranormal--through the universality of music and a range of memorable human (and animal) stories laced with dry humor. Whether you're science curious, musically inclined, or just want to know what a Szechuan pepper has to do with physics, <a href="https://bookshop.org/a/12343/9781728259369">What the Ear Hears (and Doesn't): Inside the Extraordinary Everyday World of Frequency</a> (Sourcebooks, 2022) is an immensely enjoyable read filled with "did you know?" trivia you'll love to share with friends.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4237</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[4a03a5aa-7749-11f0-a31e-370dcbaa495c]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK3156407626.mp3?updated=1754981860" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Emilio Elizalde, "The True Story of Modern Cosmology: Origins, Main Actors and Breakthroughs" (Springer, 2021)</title>
      <description>This book tells the story of how, over the past century, dedicated observers and pioneering scientists achieved our current understanding of the universe. It was in antiquity that humankind first attempted to explain the universe often with the help of myths and legends. This book, however, focuses on the time when cosmology finally became a true science. As the reader will learn, this was a slow process, extending over a large part of the 20th century and involving many astronomers, cosmologists and theoretical physicists. The book explains how empirical astronomical data (e.g., Leavitt, Slipher and Hubble) were reconciled with Einstein's general relativity; a challenge which finally led Friedmann, De Sitter and Lemaître, and eventually Einstein himself, to a consistent understanding of the observational results.

The reader will realize the extraordinary implications of these achievements and how deeply they changed our vision of the cosmos: From being small, static, immutable and eternal, it became vast and dynamical - originating from (almost) nothing, and yet now, nearly 14 billion years later, undergoing accelerated expansion. But, as always happens, as well as precious knowledge, new mysteries have also been created where previously absolute certainty had reigned.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 08 Aug 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>142</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>This book tells the story of how, over the past century, dedicated observers and pioneering scientists achieved our current understanding of the universe. It was in antiquity that humankind first attempted to explain the universe often with the help of myths and legends. This book, however, focuses on the time when cosmology finally became a true science. As the reader will learn, this was a slow process, extending over a large part of the 20th century and involving many astronomers, cosmologists and theoretical physicists. The book explains how empirical astronomical data (e.g., Leavitt, Slipher and Hubble) were reconciled with Einstein's general relativity; a challenge which finally led Friedmann, De Sitter and Lemaître, and eventually Einstein himself, to a consistent understanding of the observational results.

The reader will realize the extraordinary implications of these achievements and how deeply they changed our vision of the cosmos: From being small, static, immutable and eternal, it became vast and dynamical - originating from (almost) nothing, and yet now, nearly 14 billion years later, undergoing accelerated expansion. But, as always happens, as well as precious knowledge, new mysteries have also been created where previously absolute certainty had reigned.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>This book tells the story of how, over the past century, dedicated observers and pioneering scientists achieved our current understanding of the universe. It was in antiquity that humankind first attempted to explain the universe often with the help of myths and legends. This book, however, focuses on the time when cosmology finally became a true science. As the reader will learn, this was a slow process, extending over a large part of the 20th century and involving many astronomers, cosmologists and theoretical physicists. The book explains how empirical astronomical data (e.g., Leavitt, Slipher and Hubble) were reconciled with Einstein's general relativity; a challenge which finally led Friedmann, De Sitter and Lemaître, and eventually Einstein himself, to a consistent understanding of the observational results.</p>
<p>The reader will realize the extraordinary implications of these achievements and how deeply they changed our vision of the cosmos: From being small, static, immutable and eternal, it became vast and dynamical - originating from (almost) nothing, and yet now, nearly 14 billion years later, undergoing accelerated expansion. But, as always happens, as well as precious knowledge, new mysteries have also been created where previously absolute certainty had reigned.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5300</itunes:duration>
      <guid isPermaLink="false"><![CDATA[839f3d3c-72f9-11f0-a43e-af0c753d9ed5]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK5397076020.mp3?updated=1754508543" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>David J. Helfand, "The Universal Timekeepers: Reconstructing History Atom by Atom" (Columbia UP, 2023)</title>
      <description>Atoms are unfathomably tiny. It takes fifteen million trillion of them to make up a single poppy seed—give or take a few billion. And there’s hardly anything to them: atoms are more than 99.9999999999 percent empty space. Yet scientists have learned to count these slivers of near nothingness with precision and to peer into their internal states. In looking so closely, we have learned that atoms, because of their inimitable signatures and imperturbable internal clocks, are little archives holding the secrets of the past.David J. Helfand reconstructs the history of the universe—back to its first microsecond 13.8 billion years ago—with the help of atoms. He shows how, by using detectors and reactors, microscopes and telescopes, we can decode the tales these infinitesimal particles tell, answering questions such as: Is a medieval illustrated prayer book real or forged? How did maize cultivation spread from the highlands of central Mexico to New England? What was Earth’s climate like before humans emerged? Where can we find clues to identify the culprit in the demise of the dinosaurs? When did our planet and solar system form? Can we trace the births of atoms in the cores of massive stars or even glimpse the origins of the universe itself?A lively and inviting introduction to the building blocks of everything we know, The Universal Timekeepers demonstrates the power of science to unveil the mysteries of unreachably remote times and places.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 07 Aug 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>6</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Atoms are unfathomably tiny. It takes fifteen million trillion of them to make up a single poppy seed—give or take a few billion. And there’s hardly anything to them: atoms are more than 99.9999999999 percent empty space. Yet scientists have learned to count these slivers of near nothingness with precision and to peer into their internal states. In looking so closely, we have learned that atoms, because of their inimitable signatures and imperturbable internal clocks, are little archives holding the secrets of the past.David J. Helfand reconstructs the history of the universe—back to its first microsecond 13.8 billion years ago—with the help of atoms. He shows how, by using detectors and reactors, microscopes and telescopes, we can decode the tales these infinitesimal particles tell, answering questions such as: Is a medieval illustrated prayer book real or forged? How did maize cultivation spread from the highlands of central Mexico to New England? What was Earth’s climate like before humans emerged? Where can we find clues to identify the culprit in the demise of the dinosaurs? When did our planet and solar system form? Can we trace the births of atoms in the cores of massive stars or even glimpse the origins of the universe itself?A lively and inviting introduction to the building blocks of everything we know, The Universal Timekeepers demonstrates the power of science to unveil the mysteries of unreachably remote times and places.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Atoms are unfathomably tiny. It takes fifteen million trillion of them to make up a single poppy seed—give or take a few billion. And there’s hardly anything to them: atoms are more than 99.9999999999 percent empty space. Yet scientists have learned to count these slivers of near nothingness with precision and to peer into their internal states. In looking so closely, we have learned that atoms, because of their inimitable signatures and imperturbable internal clocks, are little archives holding the secrets of the past.<br>David J. Helfand reconstructs the history of the universe—back to its first microsecond 13.8 billion years ago—with the help of atoms. He shows how, by using detectors and reactors, microscopes and telescopes, we can decode the tales these infinitesimal particles tell, answering questions such as: Is a medieval illustrated prayer book real or forged? How did maize cultivation spread from the highlands of central Mexico to New England? What was Earth’s climate like before humans emerged? Where can we find clues to identify the culprit in the demise of the dinosaurs? When did our planet and solar system form? Can we trace the births of atoms in the cores of massive stars or even glimpse the origins of the universe itself?<br>A lively and inviting introduction to the building blocks of everything we know, <em>The Universal Timekeepers</em> demonstrates the power of science to unveil the mysteries of unreachably remote times and places.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3733</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[587030c6-72db-11f0-a296-17f311727069]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK3796644198.mp3?updated=1754495571" length="0" type="audio/mpeg"/>
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    <item>
      <title>Robyn Arianrhod, "Vector: A Surprising Story of Space, Time, and Mathematical Transformation" (U of Chicago Press, 2024)</title>
      <description>A celebration of the seemingly simple idea that allowed us to imagine the world in new dimensions--sparking both controversy and discovery.

The stars of this book, vectors and tensors, are unlikely celebrities. If you ever took a physics course, the word "vector" might remind you of the mathematics needed to determine forces on an amusement park ride, a turbine, or a projectile. You might also remember that a vector is a quantity that has magnitude and (this is the key) direction. In fact, vectors are examples of tensors, which can represent even more data. It sounds simple enough--and yet, as award-winning science writer Robyn Arianrhod shows in this riveting story, the idea of a single symbol expressing more than one thing at once was millennia in the making. And without that idea, we wouldn't have such a deep understanding of our world.

Vector and tensor calculus offers an elegant language for expressing the way things behave in space and time, and Arianrhod shows how this enabled physicists and mathematicians to think in a brand-new way. These include James Clerk Maxwell when he ushered in the wireless electromagnetic age; Einstein when he predicted the curving of space-time and the existence of gravitational waves; Paul Dirac, when he created quantum field theory; and Emmy Noether, when she connected mathematical symmetry and the conservation of energy. For it turned out that it's not just physical quantities and dimensions that vectors and tensors can represent, but other dimensions and other kinds of information, too. This is why physicists and mathematicians can speak of four-dimensional space-time and other higher-dimensional "spaces," and why you're likely relying on vectors or tensors whenever you use digital applications such as search engines, GPS, or your mobile phone.

In exploring the evolution of vectors and tensors--and introducing the fascinating people who gave them to us--Arianrhod takes readers on an extraordinary, five-thousand-year journey through the human imagination. She shows the genius required to reimagine the world--and how a clever mathematical construct can dramatically change discovery's direction.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 25 Jul 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>A celebration of the seemingly simple idea that allowed us to imagine the world in new dimensions--sparking both controversy and discovery.

The stars of this book, vectors and tensors, are unlikely celebrities. If you ever took a physics course, the word "vector" might remind you of the mathematics needed to determine forces on an amusement park ride, a turbine, or a projectile. You might also remember that a vector is a quantity that has magnitude and (this is the key) direction. In fact, vectors are examples of tensors, which can represent even more data. It sounds simple enough--and yet, as award-winning science writer Robyn Arianrhod shows in this riveting story, the idea of a single symbol expressing more than one thing at once was millennia in the making. And without that idea, we wouldn't have such a deep understanding of our world.

Vector and tensor calculus offers an elegant language for expressing the way things behave in space and time, and Arianrhod shows how this enabled physicists and mathematicians to think in a brand-new way. These include James Clerk Maxwell when he ushered in the wireless electromagnetic age; Einstein when he predicted the curving of space-time and the existence of gravitational waves; Paul Dirac, when he created quantum field theory; and Emmy Noether, when she connected mathematical symmetry and the conservation of energy. For it turned out that it's not just physical quantities and dimensions that vectors and tensors can represent, but other dimensions and other kinds of information, too. This is why physicists and mathematicians can speak of four-dimensional space-time and other higher-dimensional "spaces," and why you're likely relying on vectors or tensors whenever you use digital applications such as search engines, GPS, or your mobile phone.

In exploring the evolution of vectors and tensors--and introducing the fascinating people who gave them to us--Arianrhod takes readers on an extraordinary, five-thousand-year journey through the human imagination. She shows the genius required to reimagine the world--and how a clever mathematical construct can dramatically change discovery's direction.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><strong>A celebration of the seemingly simple idea that allowed us to imagine the world in new dimensions--sparking both controversy and discovery.</strong></p>
<p>The stars of this book, vectors and tensors, are unlikely celebrities. If you ever took a physics course, the word "vector" might remind you of the mathematics needed to determine forces on an amusement park ride, a turbine, or a projectile. You might also remember that a vector is a quantity that has magnitude and (this is the key) direction. In fact, vectors are examples of tensors, which can represent even more data. It sounds simple enough--and yet, as award-winning science writer Robyn Arianrhod shows in this riveting story, the idea of a single symbol expressing more than one thing at once was millennia in the making. And without that idea, we wouldn't have such a deep understanding of our world.</p>
<p>Vector and tensor calculus offers an elegant language for expressing the way things behave in space and time, and Arianrhod shows how this enabled physicists and mathematicians to <em>think</em> in a brand-new way. These include James Clerk Maxwell when he ushered in the wireless electromagnetic age; Einstein when he predicted the curving of space-time and the existence of gravitational waves; Paul Dirac, when he created quantum field theory; and Emmy Noether, when she connected mathematical symmetry and the conservation of energy. For it turned out that it's not just physical quantities and dimensions that vectors and tensors can represent, but other dimensions and other kinds of information, too. This is why physicists and mathematicians can speak of four-dimensional space-time and other higher-dimensional "spaces," and why you're likely relying on vectors or tensors whenever you use digital applications such as search engines, GPS, or your mobile phone.</p>
<p>In exploring the evolution of vectors and tensors--and introducing the fascinating people who gave them to us--Arianrhod takes readers on an extraordinary, five-thousand-year journey through the human imagination. She shows the genius required to reimagine the world--and how a clever mathematical construct can dramatically change discovery's direction.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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    <item>
      <title>Paul Sen, "Einstein's Fridge: How the Difference Between Hot and Cold Explains the Universe" (Scribner, 2021)</title>
      <description>Einstein's Fridge: How the Difference Between Hot and Cold Explains the Universe (Scribner, 2021) tells the incredible epic story of the scientists who, over two centuries, harnessed the power of heat and ice and formulated a theory essential to comprehending our universe. “Although thermodynamics has been studied for hundreds of years…few nonscientists appreciate how its principles have shaped the modern world” (Scientific American). Thermodynamics—the branch of physics that deals with energy and entropy—governs everything from the behavior of living cells to the black hole at the center of our galaxy. Not only that, but thermodynamics explains why we must eat and breathe, how lights turn on, the limits of computing, and how the universe will end.The brilliant people who decoded its laws came from every branch of the sciences; they were engineers, physicists, chemists, biologists, cosmologists, and mathematicians. From French military engineer and physicist Sadi Carnot to Lord Kelvin, James Joule, Albert Einstein, Emmy Noether, Alan Turing, and Stephen Hawking, author Paul Sen introduces us to all of the players who passed the baton of scientific progress through time and across nations. Incredibly driven and idealistic, these brave pioneers performed groundbreaking work often in the face of torment and tragedy. Their discoveries helped create the modern world and transformed every branch of science, from biology to cosmology.“Elegantly written and engaging” (Financial Times), Einstein’s Fridge brings to life one of the most important scientific revolutions of all time and captures the thrill of discovery and the power of scientific progress to shape the course of history.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 17 Jul 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Einstein's Fridge: How the Difference Between Hot and Cold Explains the Universe (Scribner, 2021) tells the incredible epic story of the scientists who, over two centuries, harnessed the power of heat and ice and formulated a theory essential to comprehending our universe. “Although thermodynamics has been studied for hundreds of years…few nonscientists appreciate how its principles have shaped the modern world” (Scientific American). Thermodynamics—the branch of physics that deals with energy and entropy—governs everything from the behavior of living cells to the black hole at the center of our galaxy. Not only that, but thermodynamics explains why we must eat and breathe, how lights turn on, the limits of computing, and how the universe will end.The brilliant people who decoded its laws came from every branch of the sciences; they were engineers, physicists, chemists, biologists, cosmologists, and mathematicians. From French military engineer and physicist Sadi Carnot to Lord Kelvin, James Joule, Albert Einstein, Emmy Noether, Alan Turing, and Stephen Hawking, author Paul Sen introduces us to all of the players who passed the baton of scientific progress through time and across nations. Incredibly driven and idealistic, these brave pioneers performed groundbreaking work often in the face of torment and tragedy. Their discoveries helped create the modern world and transformed every branch of science, from biology to cosmology.“Elegantly written and engaging” (Financial Times), Einstein’s Fridge brings to life one of the most important scientific revolutions of all time and captures the thrill of discovery and the power of scientific progress to shape the course of history.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://bookshop.org/a/12343/9781501181313">Einstein's Fridge: How the Difference Between Hot and Cold Explains the Universe</a><em> </em>(Scribner, 2021) tells the incredible epic story of the scientists who, over two centuries, harnessed the power of heat and ice and formulated a theory essential to comprehending our universe. “Although thermodynamics has been studied for hundreds of years…few nonscientists appreciate how its principles have shaped the modern world” (<em>Scientific American</em>). Thermodynamics—the branch of physics that deals with energy and entropy—governs everything from the behavior of living cells to the black hole at the center of our galaxy. Not only that, but thermodynamics explains why we must eat and breathe, how lights turn on, the limits of computing, and how the universe will end.<br>The brilliant people who decoded its laws came from every branch of the sciences; they were engineers, physicists, chemists, biologists, cosmologists, and mathematicians. From French military engineer and physicist Sadi Carnot to Lord Kelvin, James Joule, Albert Einstein, Emmy Noether, Alan Turing, and Stephen Hawking, author Paul Sen introduces us to all of the players who passed the baton of scientific progress through time and across nations. Incredibly driven and idealistic, these brave pioneers performed groundbreaking work often in the face of torment and tragedy. Their discoveries helped create the modern world and transformed every branch of science, from biology to cosmology.<br>“Elegantly written and engaging” (<em>Financial Times</em>), <em>Einstein’s Fridge</em> brings to life one of the most important scientific revolutions of all time and captures the thrill of discovery and the power of scientific progress to shape the course of history.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4490</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Liam Graham, "Molecular Storms: The Physics of Stars, Cells and the Origin of Life" (Springer Nature, 2023)</title>
      <description>Why is the universe the way it is? Wherever we look, we find ordered structures: from stars to planets to living cells. Molecular Storms: The Physics of Stars, Cells and the Origin of Life (Springer Nature, 2023) shows that the same driving force is behind structure everywhere: the incessant random motion of the components of matter. Physicists call it thermal noise. Let's call it the molecular storm.

This storm drives the fusion reactions that make stars shine. It drives whirlpools and currents in atmospheres and oceans. It spins and distorts molecules until they are in the right orientation to react and form new substances. In living cells, it drives proteins to fold and molecules to self-assemble. It is behind every detail of the astonishing molecular machines that control cellular processes.

Using cutting-edge research, "Molecular Storms" takes us on a dazzling journey from the early universe to the interior of the smallest living things. There, in a nanoscale world of biological devices, it explains the physics behind the chemical system which we call Life.

Whether you're someone with a general interest in science or a student looking to add context to your studies, this book is for you. "Molecular Storms" is an accessible and captivating read that will deepen your appreciation of the power of science to explain the world.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sun, 22 Jun 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Why is the universe the way it is? Wherever we look, we find ordered structures: from stars to planets to living cells. Molecular Storms: The Physics of Stars, Cells and the Origin of Life (Springer Nature, 2023) shows that the same driving force is behind structure everywhere: the incessant random motion of the components of matter. Physicists call it thermal noise. Let's call it the molecular storm.

This storm drives the fusion reactions that make stars shine. It drives whirlpools and currents in atmospheres and oceans. It spins and distorts molecules until they are in the right orientation to react and form new substances. In living cells, it drives proteins to fold and molecules to self-assemble. It is behind every detail of the astonishing molecular machines that control cellular processes.

Using cutting-edge research, "Molecular Storms" takes us on a dazzling journey from the early universe to the interior of the smallest living things. There, in a nanoscale world of biological devices, it explains the physics behind the chemical system which we call Life.

Whether you're someone with a general interest in science or a student looking to add context to your studies, this book is for you. "Molecular Storms" is an accessible and captivating read that will deepen your appreciation of the power of science to explain the world.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Why is the universe the way it is? Wherever we look, we find ordered structures: from stars to planets to living cells. <a href="https://bookshop.org/a/12343/9783031386800">Molecular Storms: The Physics of Stars, Cells and the Origin of Life</a> (Springer Nature, 2023) shows that the same driving force is behind structure everywhere: the incessant random motion of the components of matter. Physicists call it thermal noise. Let's call it the molecular storm.</p>
<p>This storm drives the fusion reactions that make stars shine. It drives whirlpools and currents in atmospheres and oceans. It spins and distorts molecules until they are in the right orientation to react and form new substances. In living cells, it drives proteins to fold and molecules to self-assemble. It is behind every detail of the astonishing molecular machines that control cellular processes.</p>
<p>Using cutting-edge research, "Molecular Storms" takes us on a dazzling journey from the early universe to the interior of the smallest living things. There, in a nanoscale world of biological devices, it explains the physics behind the chemical system which we call Life.</p>
<p>Whether you're someone with a general interest in science or a student looking to add context to your studies, this book is for you. "Molecular Storms" is an accessible and captivating read that will deepen your appreciation of the power of science to explain the world.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
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      <title>Sharon Udasin and Rachel Frazin, "Poisoning the Well: How Forever Chemicals Contaminated America" (Island Press, 2025)</title>
      <description>This is the shocking true-life story of how PFAS—a set of toxic chemicals most people have never heard of—poisoned the entire country. Based on original, shoe-leather reporting in four highly contaminated towns and damning documents from the polluters’ own files, Poisoning the Well: How Forever Chemicals Contaminated America (Island Press, 2025) traces an ugly history of corporate greed and devastation of human lives.

We learn that PFAS, the ‘forever chemicals’ found in everyday products, from cooking pans to mascara, are coursing through the veins of 97% of Americans. We witness the pain of families who lost sisters and daughters, cousins and neighbors, after PFAS leached into their drinking water. We discover evidence that the makers of forever chemicals may have known for decades about the deadly risks of their products—because their own scientists have been documenting these dangers since the 1960s. And we see the failure of our government, time after time, to provide basic protections to its citizens.

It is impossible to read this searing exposé without being infuriated by the recklessness of corporate America. But readers will also be awed by the spirit of ordinary people who, while fighting for their own lives, took it upon themselves to fix a broken regulatory system. Heart-wrenching and maddening, stirring and uplifting, Poisoning the Well offers a unique window into the worst and best of human nature. It is essential reading for anyone concerned about the unfettered power of industry and the invisible threat it poses to the health of the nation—and to each of us.

Sharon Udasin is a reporter for The Hill, covering U.S. West climate &amp; policy from her home base in Boulder, Colorado. She was a Ted Scripps Fellow in Environmental Journalism at the University of Colorado Boulder and has also reported for The Jerusalem Post and The New York Jewish Week. A graduate of both the University of Pennsylvania and Columbia Journalism School, Sharon also received a 2022 SEAL Environmental Journalism Award and was honored by the Heschel Center for Environmental Learning and Leadership in 2013.

Rachel Frazin covers energy and environment policy for The Hill: that’s everything from climate change to gasoline prices to toxic chemicals to renewable and fossil energy. It was through this work that she learned about, and became alarmed by, "forever chemicals." She is originally from South Florida, and she studied journalism and political science at (the very cold) Northwestern University. Previously, her work has appeared in the Chicago Sun-Times, The Daily Beast, the Tampa Bay Times, and The Palm Beach Post.

Daniel Moran’s writing about literature and film can be found on Pages and Frames. He earned his B.A. and M.A. in English from Rutgers University and his Ph.D. in History from Drew University. The author of Creating Flannery O’Connor: Her Critics, Her Publishers, Her Readers, he teaches research and writing at Rutgers and co-hosts the long-running podcast Fifteen-Minute Film Fanatics, found here on the New Books Network.


Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 02 May 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>210</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Sharon Udasin and Rachel Frazin</itunes:subtitle>
      <itunes:summary>This is the shocking true-life story of how PFAS—a set of toxic chemicals most people have never heard of—poisoned the entire country. Based on original, shoe-leather reporting in four highly contaminated towns and damning documents from the polluters’ own files, Poisoning the Well: How Forever Chemicals Contaminated America (Island Press, 2025) traces an ugly history of corporate greed and devastation of human lives.

We learn that PFAS, the ‘forever chemicals’ found in everyday products, from cooking pans to mascara, are coursing through the veins of 97% of Americans. We witness the pain of families who lost sisters and daughters, cousins and neighbors, after PFAS leached into their drinking water. We discover evidence that the makers of forever chemicals may have known for decades about the deadly risks of their products—because their own scientists have been documenting these dangers since the 1960s. And we see the failure of our government, time after time, to provide basic protections to its citizens.

It is impossible to read this searing exposé without being infuriated by the recklessness of corporate America. But readers will also be awed by the spirit of ordinary people who, while fighting for their own lives, took it upon themselves to fix a broken regulatory system. Heart-wrenching and maddening, stirring and uplifting, Poisoning the Well offers a unique window into the worst and best of human nature. It is essential reading for anyone concerned about the unfettered power of industry and the invisible threat it poses to the health of the nation—and to each of us.

Sharon Udasin is a reporter for The Hill, covering U.S. West climate &amp; policy from her home base in Boulder, Colorado. She was a Ted Scripps Fellow in Environmental Journalism at the University of Colorado Boulder and has also reported for The Jerusalem Post and The New York Jewish Week. A graduate of both the University of Pennsylvania and Columbia Journalism School, Sharon also received a 2022 SEAL Environmental Journalism Award and was honored by the Heschel Center for Environmental Learning and Leadership in 2013.

Rachel Frazin covers energy and environment policy for The Hill: that’s everything from climate change to gasoline prices to toxic chemicals to renewable and fossil energy. It was through this work that she learned about, and became alarmed by, "forever chemicals." She is originally from South Florida, and she studied journalism and political science at (the very cold) Northwestern University. Previously, her work has appeared in the Chicago Sun-Times, The Daily Beast, the Tampa Bay Times, and The Palm Beach Post.

Daniel Moran’s writing about literature and film can be found on Pages and Frames. He earned his B.A. and M.A. in English from Rutgers University and his Ph.D. in History from Drew University. The author of Creating Flannery O’Connor: Her Critics, Her Publishers, Her Readers, he teaches research and writing at Rutgers and co-hosts the long-running podcast Fifteen-Minute Film Fanatics, found here on the New Books Network.


Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>This is the shocking true-life story of how PFAS—a set of toxic chemicals most people have never heard of—poisoned the entire country. Based on original, shoe-leather reporting in four highly contaminated towns and damning documents from the polluters’ own files, <a href="https://bookshop.org/a/12343/9781642833324">Poisoning the Well: How Forever Chemicals Contaminated America </a>(Island Press, 2025) traces an ugly history of corporate greed and devastation of human lives.</p>
<p>We learn that PFAS, the ‘forever chemicals’ found in everyday products, from cooking pans to mascara, are coursing through the veins of 97% of Americans. We witness the pain of families who lost sisters and daughters, cousins and neighbors, after PFAS leached into their drinking water. We discover evidence that the makers of forever chemicals may have known for decades about the deadly risks of their products—because their own scientists have been documenting these dangers since the 1960s. And we see the failure of our government, time after time, to provide basic protections to its citizens.</p>
<p>It is impossible to read this searing exposé without being infuriated by the recklessness of corporate America. But readers will also be awed by the spirit of ordinary people who, while fighting for their own lives, took it upon themselves to fix a broken regulatory system. Heart-wrenching and maddening, stirring and uplifting, <em>Poisoning the Well</em> offers a unique window into the worst and best of human nature. It is essential reading for anyone concerned about the unfettered power of industry and the invisible threat it poses to the health of the nation—and to each of us.</p>
<p>Sharon Udasin is a reporter for <em>The Hill</em>, covering U.S. West climate &amp; policy from her home base in Boulder, Colorado. She was a Ted Scripps Fellow in Environmental Journalism at the University of Colorado Boulder and has also reported for <em>The Jerusalem Post </em>and<em> The New York Jewish Week</em>. A graduate of both the University of Pennsylvania and Columbia Journalism School, Sharon also received a 2022 SEAL Environmental Journalism Award and was honored by the Heschel Center for Environmental Learning and Leadership in 2013.</p>
<p>Rachel Frazin covers energy and environment policy for<em> The Hill</em>: that’s everything from climate change to gasoline prices to toxic chemicals to renewable and fossil energy. It was through this work that she learned about, and became alarmed by, "forever chemicals." She is originally from South Florida, and she studied journalism and political science at (the very cold) Northwestern University. Previously, her work has appeared in the <em>Chicago Sun-Times, The Daily Beast, </em>the<em> Tampa Bay Times, </em>and<em> The Palm Beach Post.</em></p>
<p>Daniel Moran’s writing about literature and film can be found on <a href="https://pagesandframes.substack.com/"><em>Pages and Frames</em></a>. He earned his B.A. and M.A. in English from Rutgers University and his Ph.D. in History from Drew University. The author of <a href="https://ugapress.org/book/9780820352930/creating-flannery-oconnor/"><em>Creating Flannery O’Connor: Her Critics, Her Publishers, Her Readers</em></a>, he teaches research and writing at Rutgers and co-hosts the long-running podcast <a href="https://newbooksnetwork.com/hosts/profile/b03ba330-e86b-47b0-b47a-319088be5448"><em>Fifteen-Minute Film Fanatics</em></a>, found here on the New Books Network.</p>
<p><br></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2719</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBNK3052453027.mp3?updated=1746039205" length="0" type="audio/mpeg"/>
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    <item>
      <title>Scientists Cooperate while Humanists Ruminate (EF, JP)</title>
      <description>Back in 2021, John and Elizabeth sat down with Brandeis string theorist Albion Lawrence to discuss cooperation versus solitary study across disciplines. They sink their teeth into the question, “Why do scientists seem to do collaboration and teamwork better than other kinds of scholars and academics?”
The conversation ranges from the merits of collective biography to the influence of place and geographic location in scientific collaboration to mountaineering traditions in the sciences. As a Recallable Book, Elizabeth champions The People of Puerto Rico, an experiment in ethnography of a nation (in this case under colonial rule) from 1956, including a chapter by Robert Manners, founding chair of the Brandeis Department of Anthropology. Albion sings the praises of a collective biography of the Art Ensemble of Chicago, A Message to Our Folks. But John stays true to his Victorianist roots by praising the contrasting images of the withered humanist Casaubon and the dashing young scientist Lydgate in George Eliot’s own take on collective biography, Middlemarch.
Discussed in this episode:

Richard Rhodes Making of the Atomic Bomb


Ann Finkbeiner, The Jasons: The Secret History of Science’s Postwar Elite


James Gleick, The Information


Jon Gertner, The Idea Factory: Bell Labs and the Great Age of American Innovation


Black Hole photographs win giant prize

Adam Jaffe, “Geographic Localization of Knowledge Spillovers as Evidenced by Patent Citations“

Jamie Cohen-Cole, The Open Mind


Julian Steward et al., The People of Puerto Rico


Paul Steinbeck, Message to Our Folks


Jenny Uglow, Lunar Men


George Eliot, Middlemarch


Listen to and Read the episode here.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 17 Apr 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Back in 2021, John and Elizabeth sat down with Brandeis string theorist Albion Lawrence to discuss cooperation versus solitary study across disciplines. They sink their teeth into the question, “Why do scientists seem to do collaboration and teamwork better than other kinds of scholars and academics?”
The conversation ranges from the merits of collective biography to the influence of place and geographic location in scientific collaboration to mountaineering traditions in the sciences. As a Recallable Book, Elizabeth champions The People of Puerto Rico, an experiment in ethnography of a nation (in this case under colonial rule) from 1956, including a chapter by Robert Manners, founding chair of the Brandeis Department of Anthropology. Albion sings the praises of a collective biography of the Art Ensemble of Chicago, A Message to Our Folks. But John stays true to his Victorianist roots by praising the contrasting images of the withered humanist Casaubon and the dashing young scientist Lydgate in George Eliot’s own take on collective biography, Middlemarch.
Discussed in this episode:

Richard Rhodes Making of the Atomic Bomb


Ann Finkbeiner, The Jasons: The Secret History of Science’s Postwar Elite


James Gleick, The Information


Jon Gertner, The Idea Factory: Bell Labs and the Great Age of American Innovation


Black Hole photographs win giant prize

Adam Jaffe, “Geographic Localization of Knowledge Spillovers as Evidenced by Patent Citations“

Jamie Cohen-Cole, The Open Mind


Julian Steward et al., The People of Puerto Rico


Paul Steinbeck, Message to Our Folks


Jenny Uglow, Lunar Men


George Eliot, Middlemarch


Listen to and Read the episode here.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Back in 2021, John and Elizabeth sat down with Brandeis string theorist <a href="https://www.brandeis.edu/physics/people/profiles/lawrence-albion.html">Albion Lawrence</a> to discuss cooperation versus solitary study across disciplines. They sink their teeth into the question, “Why do scientists seem to do collaboration and teamwork better than other kinds of scholars and academics?”</p><p>The conversation ranges from the merits of collective biography to the influence of place and geographic location in scientific collaboration to mountaineering traditions in the sciences. As a Recallable Book, Elizabeth champions <em>The People of Puerto Rico, </em>an experiment in ethnography of a nation (in this case under colonial rule) from 1956, including a chapter by Robert Manners, founding chair of the Brandeis Department of Anthropology. Albion sings the praises of a collective biography of the Art Ensemble of Chicago, <em>A Message to Our Folks</em>. But John stays true to his Victorianist roots by praising the contrasting images of the withered humanist Casaubon and the dashing young scientist Lydgate in George Eliot’s own take on collective biography, <em>Middlemarch.</em></p><p>Discussed in this episode:</p><ul>
<li>Richard Rhodes <a href="https://en.wikipedia.org/wiki/The_Making_of_the_Atomic_Bomb">Making of the Atomic Bomb</a>
</li>
<li>Ann Finkbeiner, <a href="https://www.penguinrandomhouse.com/books/291195/the-jasons-by-ann-finkbeiner/">The Jasons: The Secret History of Science’s Postwar Elite</a>
</li>
<li>James Gleick, <a href="https://en.wikipedia.org/wiki/The_Information:_A_History,_a_Theory,_a_Flood"><em>The Information</em></a>
</li>
<li>Jon Gertner, <a href="https://www.penguinrandomhouse.com/books/303275/the-idea-factory-by-jon-gertner/">The Idea Factory: Bell Labs and the Great Age of American Innovation</a>
</li>
<li><a href="https://www.theguardian.com/science/2019/sep/05/first-image-black-hole-scientists-awarded-breakthrough-physics-prize">Black Hole photographs win giant prize</a></li>
<li>Adam Jaffe, “<a href="https://www.jstor.org/stable/2118401?seq=1">Geographic Localization of Knowledge Spillovers as Evidenced by Patent Citations</a>“</li>
<li>Jamie Cohen-Cole, <a href="https://www.press.uchicago.edu/ucp/books/book/chicago/O/bo16998335.html"><em>The Open Mind</em></a>
</li>
<li>Julian Steward et al., <a href="https://ehrafworldcultures.yale.edu/ehrafe/citation.do?method=citation&amp;forward=browseAuthorsFullContext&amp;id=su01-001">The People of Puerto Rico</a>
</li>
<li>Paul Steinbeck, <a href="https://www.press.uchicago.edu/ucp/books/book/chicago/M/bo25125876.html">Message to Our Folks</a>
</li>
<li>Jenny Uglow, <a href="https://www.theguardian.com/books/2002/sep/14/featuresreviews.guardianreview17"><em>Lunar Men</em></a>
</li>
<li>George Eliot, <a href="http://www.gutenberg.org/ebooks/145"><em>Middlemarch</em></a>
</li>
</ul><p>Listen to and <a href="https://recallthisbook.org/wp-content/uploads/2019/12/rtb19-albion-lawrence.pdf">Read</a> the episode here.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2386</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBNK3178596679.mp3?updated=1744819741" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Grace Lindsay, "Models of the Mind: How Physics, Engineering and Mathematics Have Shaped Our Understanding of the Brain" (Bloomsbury, 2021)</title>
      <description>Models of the Mind: How Physics, Engineering and Mathematics Have Shaped Our Understanding of the Brain (Bloomsbury, 2021) provides a multifaceted and approachable introduction to theoretical neuroscience. It discusses some major topics of the field, including both the milestones from their history and the currently open questions.
It's accessible for a general audience, not expecting any previous knowledge of neuroscience or maths. At the same time, neuroscientists have described it as impressive. According to Gaute Einevoll, professor of brain physics, "this is a book that belongs on the bookshelf of any computational neuroscientist and lots of other people".
In our conversation, we covered some of the overarching themes of the book. The constant push and pull between mathematics and biology: mathematical models simplifying complex phenomena and biology pointing out the importance of a specific detail. What efficiency means for a biological system, like the brain. Whether and how much we can assume that an evolved system is efficient.
Dr. Grace Lindsay also talked about how science communication has helped her explore and discuss topics not directly related to her research. She started blogging and podcasting during her PhD, which has led to further writing opportunities, including this popular science book.
Similar to Models of the Mind, the Lindsay Lab is multidisciplinary: It uses artificial neural networks for psychology, neuroscience, and climate change. In the interview, Dr. Grace Lindsay talked about her decision about the lab's profile She explains the overlap in technologies used for studying visual systems and satellite images. We also hear about examples of how scientists in various fields have taken on research topics related to climate change.
Links: 

Dr. Grace Lindsay's homepage

Lindsay Lab

Dr. Grace Lindsay's blog post about Models of the Mind


Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 20 Mar 2025 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>31</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Grace Lindsay</itunes:subtitle>
      <itunes:summary>Models of the Mind: How Physics, Engineering and Mathematics Have Shaped Our Understanding of the Brain (Bloomsbury, 2021) provides a multifaceted and approachable introduction to theoretical neuroscience. It discusses some major topics of the field, including both the milestones from their history and the currently open questions.
It's accessible for a general audience, not expecting any previous knowledge of neuroscience or maths. At the same time, neuroscientists have described it as impressive. According to Gaute Einevoll, professor of brain physics, "this is a book that belongs on the bookshelf of any computational neuroscientist and lots of other people".
In our conversation, we covered some of the overarching themes of the book. The constant push and pull between mathematics and biology: mathematical models simplifying complex phenomena and biology pointing out the importance of a specific detail. What efficiency means for a biological system, like the brain. Whether and how much we can assume that an evolved system is efficient.
Dr. Grace Lindsay also talked about how science communication has helped her explore and discuss topics not directly related to her research. She started blogging and podcasting during her PhD, which has led to further writing opportunities, including this popular science book.
Similar to Models of the Mind, the Lindsay Lab is multidisciplinary: It uses artificial neural networks for psychology, neuroscience, and climate change. In the interview, Dr. Grace Lindsay talked about her decision about the lab's profile She explains the overlap in technologies used for studying visual systems and satellite images. We also hear about examples of how scientists in various fields have taken on research topics related to climate change.
Links: 

Dr. Grace Lindsay's homepage

Lindsay Lab

Dr. Grace Lindsay's blog post about Models of the Mind


Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://bookshop.org/a/12343/9781472966438">Models of the Mind: How Physics, Engineering and Mathematics Have Shaped Our Understanding of the Brain</a> (Bloomsbury, 2021) provides a multifaceted and approachable introduction to theoretical neuroscience. It discusses some major topics of the field, including both the milestones from their history and the currently open questions.</p><p>It's accessible for a general audience, not expecting any previous knowledge of neuroscience or maths. At the same time, neuroscientists have described it as impressive. According to Gaute Einevoll, professor of brain physics, "this is a book that belongs on the bookshelf of any computational neuroscientist and lots of other people".</p><p>In our conversation, we covered some of the overarching themes of the book. The constant push and pull between mathematics and biology: mathematical models simplifying complex phenomena and biology pointing out the importance of a specific detail. What efficiency means for a biological system, like the brain. Whether and how much we can assume that an evolved system is efficient.</p><p>Dr. Grace Lindsay also talked about how science communication has helped her explore and discuss topics not directly related to her research. She started blogging and podcasting during her PhD, which has led to further writing opportunities, including this popular science book.</p><p>Similar to Models of the Mind, the Lindsay Lab is multidisciplinary: It uses artificial neural networks for psychology, neuroscience, and climate change. In the interview, Dr. Grace Lindsay talked about <a href="https://gracewlindsay.com/2022/10/19/an-introduction-to-the-lindsay-lab-what-we-are-researching-and-why/">her decision about the lab's profile</a> She explains the overlap in technologies used for studying visual systems and satellite images. We also hear about examples of how scientists in various fields have taken on research topics related to climate change.</p><p>Links: </p><ul>
<li><a href="https://gracewlindsay.com/">Dr. Grace Lindsay's homepage</a></li>
<li><a href="https://lindsay-lab.github.io/">Lindsay Lab</a></li>
<li><a href="https://gracewlindsay.com/2021/02/10/models-of-the-mind-how-physics-engineering-and-mathematics-have-shaped-our-understanding-of-the-brain/">Dr. Grace Lindsay's blog post about Models of the Mind</a></li>
</ul><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2994</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[1989e590-04d2-11f0-b510-eb53a94d315a]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK9061519438.mp3?updated=1742396295" length="0" type="audio/mpeg"/>
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    <item>
      <title>Patchen Barss, "The Impossible Man: Roger Penrose and the Cost of Genius" (Basic Books, 2024)</title>
      <description>When he was six years old, Roger Penrose discovered a sundial in a clearing near his house. Through that machine made of light, shadow, and time, Roger glimpsed a “world behind the world” of transcendently beautiful geometry. It spurred him on a journey to become one of the world’s most influential mathematicians, philosophers, and physicists.
Penrose would prove the limitations of general relativity, set a new agenda for theoretical physics, and astound colleagues and admirers with the elegance and beauty of his discoveries. However, as Patchen Barss documents in The Impossible Man: Roger Penrose and the Cost of Genius (Basic Books, 2024), success came at a price: He was attuned to the secrets of the universe, but struggled to connect with loved ones, especially the women who care for or worked with him.
Both erudite and poetic, The Impossible Man draws on years of research and interviews, as well as previously unopened archives to present a moving portrait of Penrose the Nobel Prize-winning scientist and Roger the human being. It reveals not just the extraordinary life of Roger Penrose, but asks who gets to be a genius, and who makes the sacrifices that allow one man to be one.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 18 Jan 2025 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>270</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Patchen Barss</itunes:subtitle>
      <itunes:summary>When he was six years old, Roger Penrose discovered a sundial in a clearing near his house. Through that machine made of light, shadow, and time, Roger glimpsed a “world behind the world” of transcendently beautiful geometry. It spurred him on a journey to become one of the world’s most influential mathematicians, philosophers, and physicists.
Penrose would prove the limitations of general relativity, set a new agenda for theoretical physics, and astound colleagues and admirers with the elegance and beauty of his discoveries. However, as Patchen Barss documents in The Impossible Man: Roger Penrose and the Cost of Genius (Basic Books, 2024), success came at a price: He was attuned to the secrets of the universe, but struggled to connect with loved ones, especially the women who care for or worked with him.
Both erudite and poetic, The Impossible Man draws on years of research and interviews, as well as previously unopened archives to present a moving portrait of Penrose the Nobel Prize-winning scientist and Roger the human being. It reveals not just the extraordinary life of Roger Penrose, but asks who gets to be a genius, and who makes the sacrifices that allow one man to be one.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>When he was six years old, Roger Penrose discovered a sundial in a clearing near his house. Through that machine made of light, shadow, and time, Roger glimpsed a “world behind the world” of transcendently beautiful geometry. It spurred him on a journey to become one of the world’s most influential mathematicians, philosophers, and physicists.</p><p>Penrose would prove the limitations of general relativity, set a new agenda for theoretical physics, and astound colleagues and admirers with the elegance and beauty of his discoveries. However, as Patchen Barss documents in <a href="https://bookshop.org/a/12343/9781541603660"><em>The Impossible Man: Roger Penrose and the Cost of Genius</em></a><em> </em>(Basic Books, 2024), success came at a price: He was attuned to the secrets of the universe, but struggled to connect with loved ones, especially the women who care for or worked with him.</p><p>Both erudite and poetic, <em>The Impossible Man </em>draws on years of research and interviews, as well as previously unopened archives to present a moving portrait of Penrose the Nobel Prize-winning scientist and Roger the human being. It reveals not just the extraordinary life of Roger Penrose, but asks who gets to be a genius, and who makes the sacrifices that allow one man to be one.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1996</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[b302e82a-d4df-11ef-9fce-af378e08046c]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK2043524602.mp3?updated=1737124459" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Brian Clegg, "Ten Patterns That Explain the Universe" (MIT Press, 2021)</title>
      <description>Our universe might appear chaotic, but deep down it's simply a myriad of rules working independently to create patterns of action, force, and consequence. In Ten Patterns That Explain the Universe (MIT Press, 2021), Brian Clegg explores the phenomena that make up the very fabric of our world by examining ten essential sequenced systems. From diagrams that show the deep relationships between space and time to the quantum behaviors that rule the way that matter and light interact, Clegg shows how these patterns provide a unique view of the physical world and its fundamental workings.
Guiding readers on a tour of our world and the universe beyond, Clegg describes the cosmic microwave background, sometimes called the "echo of the big bang," and how it offers clues to the universe's beginnings; the diagrams that illustrate Einstein's revelation of the intertwined nature of space and time; the particle trail patterns revealed by the Large Hadron Collider and other accelerators; and the simple-looking patterns that predict quantum behavior (and decorated Richard Feynman's van). Clegg explains how the periodic table reflects the underlying pattern of the configuration of atoms, discusses the power of the number line, demonstrates the explanatory uses of tree diagrams, and more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 02 Sep 2024 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>82</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Brian Clegg</itunes:subtitle>
      <itunes:summary>Our universe might appear chaotic, but deep down it's simply a myriad of rules working independently to create patterns of action, force, and consequence. In Ten Patterns That Explain the Universe (MIT Press, 2021), Brian Clegg explores the phenomena that make up the very fabric of our world by examining ten essential sequenced systems. From diagrams that show the deep relationships between space and time to the quantum behaviors that rule the way that matter and light interact, Clegg shows how these patterns provide a unique view of the physical world and its fundamental workings.
Guiding readers on a tour of our world and the universe beyond, Clegg describes the cosmic microwave background, sometimes called the "echo of the big bang," and how it offers clues to the universe's beginnings; the diagrams that illustrate Einstein's revelation of the intertwined nature of space and time; the particle trail patterns revealed by the Large Hadron Collider and other accelerators; and the simple-looking patterns that predict quantum behavior (and decorated Richard Feynman's van). Clegg explains how the periodic table reflects the underlying pattern of the configuration of atoms, discusses the power of the number line, demonstrates the explanatory uses of tree diagrams, and more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Our universe might appear chaotic, but deep down it's simply a myriad of rules working independently to create patterns of action, force, and consequence. In <a href="https://bookshop.org/a/12343/9780262542869"><em>Ten Patterns That Explain the Universe</em></a> (MIT Press, 2021), Brian Clegg explores the phenomena that make up the very fabric of our world by examining ten essential sequenced systems. From diagrams that show the deep relationships between space and time to the quantum behaviors that rule the way that matter and light interact, Clegg shows how these patterns provide a unique view of the physical world and its fundamental workings.</p><p>Guiding readers on a tour of our world and the universe beyond, Clegg describes the cosmic microwave background, sometimes called the "echo of the big bang," and how it offers clues to the universe's beginnings; the diagrams that illustrate Einstein's revelation of the intertwined nature of space and time; the particle trail patterns revealed by the Large Hadron Collider and other accelerators; and the simple-looking patterns that predict quantum behavior (and decorated Richard Feynman's van). Clegg explains how the periodic table reflects the underlying pattern of the configuration of atoms, discusses the power of the number line, demonstrates the explanatory uses of tree diagrams, and more.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3008</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[00a252cc-6867-11ef-b6fb-5b282a76b047]]></guid>
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    <item>
      <title>Alan Lightman, "Einstein's Dreams" (Vintage, 1992)</title>
      <description>Einstein’s Dreams (Vintage, 1992) by Alan Lightman, set in Albert Einstein’s “miracle year” of 1905, is a novel about the cultural interconnection of time, relativity and life. As the young genius creates his theory of relativity, in a series of dreams, he imagines other worlds, each with a different conceptualization of time. In one, time is circular, and people are destined to repeat triumphs and failures over and over. In another, time stands still. In yet another, time is a nightingale, trapped by a bell jar.
Translated into over thirty languages, Einstein’s Dreams has inspired playwrights, dancers, musicians and artists around the world. In poetic vignettes, Alan Lightman explores the connections between science and art, creativity and the rhythms of life, and ultimately the fragility of human existence.
This conversation includes Alan Lightman (MIT), Jeffrey Herlihy-Mera and Annette Martínez-Iñesta, of the Departamento de Humanidades at the Universidad de Puerto Rico-Mayagüez (UPRM), and Joshua Chaparro Mata, a UPRM graduate and doctoral student in Applied Physics at Yale. They discuss dreaming as a scientific and creative resource; the importance of Berne, Switzerland, in the thought of Einstein and Lightman; Lightman’s precise and harmonious poetics; the role of technology in contemporary life; and the course Lightman’s life, experiences and creative process.
This is the second of two episodes about Einstein’s Dreams. The first, in Spanish, appeared on the New Books Network en español. The series is sponsored by the Lenguaje focal group at Instituto Nuevos Horizontes at UPRM, a group of scholars who consider how translanguaging ​​can provide unique dimensions to knowledge. 
This episode and the Instituto Nuevos Horizontes at the UPRM have been supported by the Mellon Foundation. The conversation is part of the “STEM to STEAM” project of the “Cornerstone” initiative, sponsored by the Teagle Foundation, which stresses the importance of integrating humanistic perspectives in the sciences.
Books, scholars, articles and podcasts mentioned in this conversation include:


In Praise of Wasting Time, Alan Lightman.


Mr g, Alan Lightman.


Invisible Cities, Italo Calvino.


Cities I’ve Never Lived In, Sara Majka.

“Academic Life without a Smartphone,” Inside Higher Ed, Jeffrey Herlihy-Mera.


The Hemingway Society Podcast.


Carlos Alberto Peón Casas.


Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sun, 07 Jul 2024 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>137</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Alan Lightman</itunes:subtitle>
      <itunes:summary>Einstein’s Dreams (Vintage, 1992) by Alan Lightman, set in Albert Einstein’s “miracle year” of 1905, is a novel about the cultural interconnection of time, relativity and life. As the young genius creates his theory of relativity, in a series of dreams, he imagines other worlds, each with a different conceptualization of time. In one, time is circular, and people are destined to repeat triumphs and failures over and over. In another, time stands still. In yet another, time is a nightingale, trapped by a bell jar.
Translated into over thirty languages, Einstein’s Dreams has inspired playwrights, dancers, musicians and artists around the world. In poetic vignettes, Alan Lightman explores the connections between science and art, creativity and the rhythms of life, and ultimately the fragility of human existence.
This conversation includes Alan Lightman (MIT), Jeffrey Herlihy-Mera and Annette Martínez-Iñesta, of the Departamento de Humanidades at the Universidad de Puerto Rico-Mayagüez (UPRM), and Joshua Chaparro Mata, a UPRM graduate and doctoral student in Applied Physics at Yale. They discuss dreaming as a scientific and creative resource; the importance of Berne, Switzerland, in the thought of Einstein and Lightman; Lightman’s precise and harmonious poetics; the role of technology in contemporary life; and the course Lightman’s life, experiences and creative process.
This is the second of two episodes about Einstein’s Dreams. The first, in Spanish, appeared on the New Books Network en español. The series is sponsored by the Lenguaje focal group at Instituto Nuevos Horizontes at UPRM, a group of scholars who consider how translanguaging ​​can provide unique dimensions to knowledge. 
This episode and the Instituto Nuevos Horizontes at the UPRM have been supported by the Mellon Foundation. The conversation is part of the “STEM to STEAM” project of the “Cornerstone” initiative, sponsored by the Teagle Foundation, which stresses the importance of integrating humanistic perspectives in the sciences.
Books, scholars, articles and podcasts mentioned in this conversation include:


In Praise of Wasting Time, Alan Lightman.


Mr g, Alan Lightman.


Invisible Cities, Italo Calvino.


Cities I’ve Never Lived In, Sara Majka.

“Academic Life without a Smartphone,” Inside Higher Ed, Jeffrey Herlihy-Mera.


The Hemingway Society Podcast.


Carlos Alberto Peón Casas.


Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://bookshop.org/a/12343/9781400077809"><em>Einstein’s Dreams</em></a> (Vintage, 1992) by Alan Lightman, set in Albert Einstein’s “miracle year” of 1905, is a novel about the cultural interconnection of time, relativity and life. As the young genius creates his theory of relativity, in a series of dreams, he imagines other worlds, each with a different conceptualization of time. In one, time is circular, and people are destined to repeat triumphs and failures over and over. In another, time stands still. In yet another, time is a nightingale, trapped by a bell jar.</p><p>Translated into over thirty languages, <em>Einstein’s Dreams</em> has inspired playwrights, dancers, musicians and artists around the world. In poetic vignettes, Alan Lightman explores the connections between science and art, creativity and the rhythms of life, and ultimately the fragility of human existence.</p><p>This conversation includes <a href="https://en.wikipedia.org/wiki/Alan_Lightman">Alan Lightman</a> (MIT), <a href="https://www.uprm.edu/humanidades/jeffrey-herlihy-mera/">Jeffrey Herlihy-Mera</a> and <a href="https://www.linkedin.com/in/annette-martinez-i%C3%B1esta-3801805a/">Annette Martínez-Iñesta</a>, of the Departamento de Humanidades at the Universidad de Puerto Rico-Mayagüez (UPRM), and Joshua Chaparro Mata, a UPRM graduate and doctoral student in Applied Physics at Yale. They discuss dreaming as a scientific and creative resource; the importance of Berne, Switzerland, in the thought of Einstein and Lightman; Lightman’s precise and harmonious poetics; the role of technology in contemporary life; and the course Lightman’s life, experiences and creative process.</p><p>This is the second of two episodes about <em>Einstein’s Dreams</em>. <a href="https://newbooksnetwork.com/es/einsteins-dreams#entry:302551@2:url">The first, in Spanish</a>, appeared on the <a href="https://newbooksnetwork.com/es/#entry:293156@2:url">New Books Network en español</a>. The series is sponsored by the <a href="https://www.uprm.edu/nuevoshorizontes/lenguaje/">Lenguaje</a> focal group at <a href="https://www.uprm.edu/nuevoshorizontes/">Instituto Nuevos Horizontes</a> at UPRM, a group of scholars who consider how translanguaging ​​can provide unique dimensions to knowledge. </p><p>This episode and the <a href="https://www.uprm.edu/nuevoshorizontes/">Instituto Nuevos Horizontes</a> at the UPRM have been supported by the Mellon Foundation. The conversation is part of the “<a href="https://www.uprm.edu/nuevoshorizontes/educacion-general/">STEM to STEAM</a>” project of the “Cornerstone” initiative, sponsored by the Teagle Foundation, which stresses the importance of integrating humanistic perspectives in the sciences.</p><p>Books, scholars, articles and podcasts mentioned in this conversation include:</p><ul>
<li>
<a href="https://www.amazon.com/Praise-Wasting-Time-TED-Books/dp/1501154362"><em>In Praise of Wasting Time</em></a>, Alan Lightman.</li>
<li>
<a href="https://www.amazon.com/Mr-Novel-Creation-Vintage-Contemporaries/dp/030774485X"><em>Mr g</em></a>, Alan Lightman.</li>
<li>
<a href="https://www.amazon.com/Invisible-Cities-Italo-Calvino/dp/0156453800"><em>Invisible Cities</em></a>, Italo Calvino.</li>
<li>
<a href="https://www.graywolfpress.org/books/cities-ive-never-lived"><em>Cities I’ve Never Lived In</em></a>, Sara Majka.</li>
<li>“<a href="https://www.insidehighered.com/opinion/views/2024/01/24/academic-life-without-smartphone-opinion">Academic Life without a Smartphone</a>,” <em>Inside Higher Ed</em>, Jeffrey Herlihy-Mera.</li>
<li>
<a href="https://www.hemingwaysociety.org/jeffrey-herlihy-mera-clean-well-lighted-place">The Hemingway Society Podcast</a>.</li>
<li>
<a href="https://www.facebook.com/p/Carlos-A-Pe%C3%B3n-Casas-100032954242527/?_rdr">Carlos Alberto Peón Casas</a>.</li>
</ul><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3306</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[aec4b206-3b0c-11ef-a776-2f9f190dc5aa]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBNK6074785748.mp3?updated=1720211556" length="0" type="audio/mpeg"/>
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    <item>
      <title>Pierre Sokolsky, "Clock in the Sun: How We Came to Understand Our Nearest Star" (Columbia UP, 2024)</title>
      <description>On the surface of the Sun, spots appear and fade in a predictable cycle, like a great clock in the sky. In medieval Russia, China, and Korea, monks and court astronomers recorded the appearance of these dark shapes, interpreting them as omens of things to come. In Western Europe, by contrast, where a cosmology originating with Aristotle prevailed, the Sun was regarded as part of the unchanging celestial realm, and it took observations through telescopes by Galileo and others to establish the reality of solar imperfections. In the nineteenth century, amateur astronomers discovered that sunspots ebb and flow about every eleven years—spurring speculation about their influence on the weather and even the stock market.
Exploring these and many other crucial developments, Pierre Sokolsky provides a history of knowledge of the Sun through the lens of sunspots and the solar cycle. He ranges widely across cultures and throughout history, from the earliest recorded observations of sunspots in Chinese annals to satellites orbiting the Sun today, and from worship of the Sun as a deity in ancient times to present-day scientific understandings of stars and their magnetic fields. Considering how various thinkers sought to solve the puzzle of sunspots, Sokolsky sheds new light on key discoveries and the people who made them, as well as their historical and cultural contexts. Fast-paced, comprehensive, and learned, Clock in the Sun: How We Came to Understand Our Nearest Star (Columbia UP, 2024) shows readers our closest star from many new angles.
Garima Garg is a New Delhi based journalist and author.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 05 Jul 2024 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>26</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Pierre Sokolsky</itunes:subtitle>
      <itunes:summary>On the surface of the Sun, spots appear and fade in a predictable cycle, like a great clock in the sky. In medieval Russia, China, and Korea, monks and court astronomers recorded the appearance of these dark shapes, interpreting them as omens of things to come. In Western Europe, by contrast, where a cosmology originating with Aristotle prevailed, the Sun was regarded as part of the unchanging celestial realm, and it took observations through telescopes by Galileo and others to establish the reality of solar imperfections. In the nineteenth century, amateur astronomers discovered that sunspots ebb and flow about every eleven years—spurring speculation about their influence on the weather and even the stock market.
Exploring these and many other crucial developments, Pierre Sokolsky provides a history of knowledge of the Sun through the lens of sunspots and the solar cycle. He ranges widely across cultures and throughout history, from the earliest recorded observations of sunspots in Chinese annals to satellites orbiting the Sun today, and from worship of the Sun as a deity in ancient times to present-day scientific understandings of stars and their magnetic fields. Considering how various thinkers sought to solve the puzzle of sunspots, Sokolsky sheds new light on key discoveries and the people who made them, as well as their historical and cultural contexts. Fast-paced, comprehensive, and learned, Clock in the Sun: How We Came to Understand Our Nearest Star (Columbia UP, 2024) shows readers our closest star from many new angles.
Garima Garg is a New Delhi based journalist and author.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>On the surface of the Sun, spots appear and fade in a predictable cycle, like a great clock in the sky. In medieval Russia, China, and Korea, monks and court astronomers recorded the appearance of these dark shapes, interpreting them as omens of things to come. In Western Europe, by contrast, where a cosmology originating with Aristotle prevailed, the Sun was regarded as part of the unchanging celestial realm, and it took observations through telescopes by Galileo and others to establish the reality of solar imperfections. In the nineteenth century, amateur astronomers discovered that sunspots ebb and flow about every eleven years—spurring speculation about their influence on the weather and even the stock market.</p><p>Exploring these and many other crucial developments, Pierre Sokolsky provides a history of knowledge of the Sun through the lens of sunspots and the solar cycle. He ranges widely across cultures and throughout history, from the earliest recorded observations of sunspots in Chinese annals to satellites orbiting the Sun today, and from worship of the Sun as a deity in ancient times to present-day scientific understandings of stars and their magnetic fields. Considering how various thinkers sought to solve the puzzle of sunspots, Sokolsky sheds new light on key discoveries and the people who made them, as well as their historical and cultural contexts. Fast-paced, comprehensive, and learned, <a href="https://bookshop.org/a/12343/9780231202480"><em>Clock in the Sun: How We Came to Understand Our Nearest Star</em></a><em> </em>(Columbia UP, 2024) shows readers our closest star from many new angles.</p><p><a href="https://twitter.com/i/flow/login?redirect_after_login=/gar_i_ma"><em>Garima Garg</em></a> is a New Delhi based journalist and author.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1743</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Siobhan Angus, "Camera Geologica: An Elemental History of Photography" (Duke UP, 2024)</title>
      <description>In Camera Geologica: An Elemental History of Photography (Duke UP, 2024) Siobhan Angus tells the history of photography through the minerals upon which the medium depends. Challenging the emphasis on immateriality in discourses on photography, Angus focuses on the inextricable links between image-making and resource extraction, revealing how the mining of bitumen, silver, platinum, iron, uranium, and rare earth elements is a precondition of photography. Through a materials-driven analysis of visual culture, she illustrates histories of colonization, labor, and environmental degradation to expose the ways in which photography is enmeshed within and enables global extractive capitalism. 
This conversation discusses the meta-narrative and performative aspects of some of the photographs shown in the text, dives into some of the stories and examples from Ann Atkin's cyanotypes of the 1800s to Warren Cariou's contemporary bitumin prints, and asks what ethical photography looks like given the resource extraction required. 
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 21 Jun 2024 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>1449</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Siobhan Angus</itunes:subtitle>
      <itunes:summary>In Camera Geologica: An Elemental History of Photography (Duke UP, 2024) Siobhan Angus tells the history of photography through the minerals upon which the medium depends. Challenging the emphasis on immateriality in discourses on photography, Angus focuses on the inextricable links between image-making and resource extraction, revealing how the mining of bitumen, silver, platinum, iron, uranium, and rare earth elements is a precondition of photography. Through a materials-driven analysis of visual culture, she illustrates histories of colonization, labor, and environmental degradation to expose the ways in which photography is enmeshed within and enables global extractive capitalism. 
This conversation discusses the meta-narrative and performative aspects of some of the photographs shown in the text, dives into some of the stories and examples from Ann Atkin's cyanotypes of the 1800s to Warren Cariou's contemporary bitumin prints, and asks what ethical photography looks like given the resource extraction required. 
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="https://bookshop.org/a/12343/9781478025931"><em>Camera Geologica: An Elemental History of Photography</em></a> (Duke UP, 2024) Siobhan Angus tells the history of photography through the minerals upon which the medium depends. Challenging the emphasis on immateriality in discourses on photography, Angus focuses on the inextricable links between image-making and resource extraction, revealing how the mining of bitumen, silver, platinum, iron, uranium, and rare earth elements is a precondition of photography. Through a materials-driven analysis of visual culture, she illustrates histories of colonization, labor, and environmental degradation to expose the ways in which photography is enmeshed within and enables global extractive capitalism. </p><p>This conversation discusses the meta-narrative and performative aspects of some of the photographs shown in the text, dives into some of the stories and examples from Ann Atkin's cyanotypes of the 1800s to Warren Cariou's contemporary bitumin prints, and asks what ethical photography looks like given the resource extraction required. </p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3116</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[5d86a76c-2d99-11ef-8b13-eb1a99ff6f0d]]></guid>
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    <item>
      <title>Bernardo Kastrup, "Analytic Idealism in a Nutshell: A Straightforward Summary of the 21st Century's Only Plausible Metaphysics" (Iff Books, 2024)</title>
      <description>Is reality more than the material? Raj Balkaran holds a fascinating interview with philosopher Bernardo Kastrup on this topic. At the vanguard of the modern renaissance of metaphysical idealism, Bernardo presents cogent argumentation that reality is essentially mental, and examines the proper place of the scientific method in this deliberation. Bernardo’s research exhibits some astonishing parallels with ancient Indic thought. 
Bernardo Kastrup is the author of Analytic Idealism in a Nutshell: A Straightforward Summary of the 21st Century's Only Plausible Metaphysics" (Iff Books, 2024). About the book:
As the failures of physicalism begin to shake the confidence of even the most biased of its supporters, a new view on the nature of reality is establishing itself as the only tenable alternative: Analytic Idealism. According to it, there is a world out there independent of our individual minds, but such world is - just like ourselves - also mental or experiential. While being a realist, naturalist, rationalist, and even reductionist view, Analytic Idealism flips our culture-bound intuitions on their head, revealing that only through understanding our own inner nature can we understand the nature of the world. This book embodies its author's years-long experience on how best to explain Analytic Idealism to someone who has never studied it before, and has no background in the technical fields involved. It meets the readers where they are, holding their hand as they are shown - through a series of evocative metaphors - how to see through their own unexamined assumptions, so to realize how the impossible dilemas of physicalism disappear when nature is regarded from a slightly different slant. The conclusions have tremendous implications for our values and way of life, as well as our understanding of purpose, self, identity, and death.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 24 May 2024 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>40</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Bernardo Kastrup</itunes:subtitle>
      <itunes:summary>Is reality more than the material? Raj Balkaran holds a fascinating interview with philosopher Bernardo Kastrup on this topic. At the vanguard of the modern renaissance of metaphysical idealism, Bernardo presents cogent argumentation that reality is essentially mental, and examines the proper place of the scientific method in this deliberation. Bernardo’s research exhibits some astonishing parallels with ancient Indic thought. 
Bernardo Kastrup is the author of Analytic Idealism in a Nutshell: A Straightforward Summary of the 21st Century's Only Plausible Metaphysics" (Iff Books, 2024). About the book:
As the failures of physicalism begin to shake the confidence of even the most biased of its supporters, a new view on the nature of reality is establishing itself as the only tenable alternative: Analytic Idealism. According to it, there is a world out there independent of our individual minds, but such world is - just like ourselves - also mental or experiential. While being a realist, naturalist, rationalist, and even reductionist view, Analytic Idealism flips our culture-bound intuitions on their head, revealing that only through understanding our own inner nature can we understand the nature of the world. This book embodies its author's years-long experience on how best to explain Analytic Idealism to someone who has never studied it before, and has no background in the technical fields involved. It meets the readers where they are, holding their hand as they are shown - through a series of evocative metaphors - how to see through their own unexamined assumptions, so to realize how the impossible dilemas of physicalism disappear when nature is regarded from a slightly different slant. The conclusions have tremendous implications for our values and way of life, as well as our understanding of purpose, self, identity, and death.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Is reality more than the material? Raj Balkaran holds a fascinating interview with philosopher <a href="https://www.bernardokastrup.com/">Bernardo Kastrup</a> on this topic. At the vanguard of the modern renaissance of metaphysical idealism, Bernardo presents cogent argumentation that reality is essentially mental, and examines the proper place of the scientific method in this deliberation. Bernardo’s research exhibits some astonishing parallels with ancient Indic thought. </p><p>Bernardo Kastrup is the author of <a href="https://bookshop.org/a/12343/9781803416694"><em>Analytic Idealism in a Nutshell: A Straightforward Summary of the 21st Century's Only Plausible Metaphysics</em></a>" (Iff Books, 2024). About the book:</p><p>As the failures of physicalism begin to shake the confidence of even the most biased of its supporters, a new view on the nature of reality is establishing itself as the only tenable alternative: Analytic Idealism. According to it, there is a world out there independent of our individual minds, but such world is - just like ourselves - also mental or experiential. While being a realist, naturalist, rationalist, and even reductionist view, Analytic Idealism flips our culture-bound intuitions on their head, revealing that only through understanding our own inner nature can we understand the nature of the world. This book embodies its author's years-long experience on how best to explain Analytic Idealism to someone who has never studied it before, and has no background in the technical fields involved. It meets the readers where they are, holding their hand as they are shown - through a series of evocative metaphors - how to see through their own unexamined assumptions, so to realize how the impossible dilemas of physicalism disappear when nature is regarded from a slightly different slant. The conclusions have tremendous implications for our values and way of life, as well as our understanding of purpose, self, identity, and death.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>6795</itunes:duration>
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      <title>Kevin Lambert, "Symbols and Things: Material Mathematics in the Eighteenth and Nineteenth Centuries" (U Pittsburgh Press, 2021)</title>
      <description>The stereotype of the solitary mathematician is widespread, but practicing users and producers of mathematics know well that our work depends heavily on our historical and contemporary fellow travelers. Yet we may not appreciate how our work also extends beyond us into our physical and societal environments.
Kevin Lambert takes what might be a first crack at this perspective in his book Symbols and Things: Material Mathematics in the Eighteenth and Nineteenth Centuries (University of Pittsburgh Press, 2021). An historian of science, Dr. Lambert has shifted in his view of mathematics as a language of science to one as a material practice. Expanding on ideas from historians, archeologists, philosophers, and other scholars of human activity, and through several interweaving vignettes of mathematical work during a technologically dynamic period in British history, he argues that mathematical practice, communication, and even thought occur to a large degree outside the bodies of the persons performing them.
In this interview, we explore Kevin's journal to and through this book project. We discuss how such ideas as Andy Clark's extended mind informed his approach, and we review several of the lively stories—the co-creation of the long-distance mathematical community with the research journal, Peacock's museological argument for the adoption of symbolic algebra, and the foundational entanglement of electromagnetism, quaternions, and the philosophy of space, among others—he drew out of historical and archival sources. (Here i cannot resist mentioning Tait's collection of his intensive correspondence with Hamilton that transformed how quaternions were applied in physics and even conceptualized as mathematical objects.) We close with some thoughts on our own materially extended cognitive work and where Kevin's interests are currently driving him.
Suggested companion works:
• ChatGPT, as a cutting-edge extension of human thought
• work by Courtney Ann Roby, including the forthcoming The Mechanical Tradition of Hero of Alexandria: Strategies of Reading from Antiquity to the Early Modern Period
• Algorithmic Modernity: Mechanizing Thought and Action, 1500-2000, edited by Morgan G. Ames and Massimo Mazzotti
• work by Emily Miller Bonney, for example "A Reconsideration of Depositional Practices in Early Bronze Age Crete"
Kevin Lambert is a historian of science and mathematics in the early modern and modern periods and professor in the liberal studies department at California State University, Fullerton. His recent book Symbols and Things explores mathematics as a way of thinking outside the body and through the material environment. He also recently published a chapter in the volume Algorithmic Modernity that traces the genealogy of algorithmic practices. He is now working on the problem of writing longue durée histories of science. He is close to completing a paper called “Malthus in the Landscape” that investigates the temporalities of global histories. He is also exploring the problem of writing a global history of the early modern sciences without the prism of the so called “Scientific Revolution.” His work can be found on ResearchGate.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 15 Apr 2024 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>85</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Kevin Lambert</itunes:subtitle>
      <itunes:summary>The stereotype of the solitary mathematician is widespread, but practicing users and producers of mathematics know well that our work depends heavily on our historical and contemporary fellow travelers. Yet we may not appreciate how our work also extends beyond us into our physical and societal environments.
Kevin Lambert takes what might be a first crack at this perspective in his book Symbols and Things: Material Mathematics in the Eighteenth and Nineteenth Centuries (University of Pittsburgh Press, 2021). An historian of science, Dr. Lambert has shifted in his view of mathematics as a language of science to one as a material practice. Expanding on ideas from historians, archeologists, philosophers, and other scholars of human activity, and through several interweaving vignettes of mathematical work during a technologically dynamic period in British history, he argues that mathematical practice, communication, and even thought occur to a large degree outside the bodies of the persons performing them.
In this interview, we explore Kevin's journal to and through this book project. We discuss how such ideas as Andy Clark's extended mind informed his approach, and we review several of the lively stories—the co-creation of the long-distance mathematical community with the research journal, Peacock's museological argument for the adoption of symbolic algebra, and the foundational entanglement of electromagnetism, quaternions, and the philosophy of space, among others—he drew out of historical and archival sources. (Here i cannot resist mentioning Tait's collection of his intensive correspondence with Hamilton that transformed how quaternions were applied in physics and even conceptualized as mathematical objects.) We close with some thoughts on our own materially extended cognitive work and where Kevin's interests are currently driving him.
Suggested companion works:
• ChatGPT, as a cutting-edge extension of human thought
• work by Courtney Ann Roby, including the forthcoming The Mechanical Tradition of Hero of Alexandria: Strategies of Reading from Antiquity to the Early Modern Period
• Algorithmic Modernity: Mechanizing Thought and Action, 1500-2000, edited by Morgan G. Ames and Massimo Mazzotti
• work by Emily Miller Bonney, for example "A Reconsideration of Depositional Practices in Early Bronze Age Crete"
Kevin Lambert is a historian of science and mathematics in the early modern and modern periods and professor in the liberal studies department at California State University, Fullerton. His recent book Symbols and Things explores mathematics as a way of thinking outside the body and through the material environment. He also recently published a chapter in the volume Algorithmic Modernity that traces the genealogy of algorithmic practices. He is now working on the problem of writing longue durée histories of science. He is close to completing a paper called “Malthus in the Landscape” that investigates the temporalities of global histories. He is also exploring the problem of writing a global history of the early modern sciences without the prism of the so called “Scientific Revolution.” His work can be found on ResearchGate.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The stereotype of the solitary mathematician is widespread, but practicing users and producers of mathematics know well that our work depends heavily on our historical and contemporary fellow travelers. Yet we may not appreciate how our work also extends beyond us into our physical and societal environments.</p><p>Kevin Lambert takes what might be a first crack at this perspective in his book <a href="https://bookshop.org/a/12343/9780822946830"><em>Symbols and Things: Material Mathematics in the Eighteenth and Nineteenth Centuries</em></a> (University of Pittsburgh Press, 2021). An historian of science, Dr. Lambert has shifted in his view of mathematics as a language of science to one as a material practice. Expanding on ideas from historians, archeologists, philosophers, and other scholars of human activity, and through several interweaving vignettes of mathematical work during a technologically dynamic period in British history, he argues that mathematical practice, communication, and even thought occur to a large degree outside the bodies of the persons performing them.</p><p>In this interview, we explore Kevin's journal to and through this book project. We discuss how such ideas as Andy Clark's extended mind informed his approach, and we review several of the lively stories—the co-creation of the long-distance mathematical community with the research journal, Peacock's museological argument for the adoption of symbolic algebra, and the foundational entanglement of electromagnetism, quaternions, and the philosophy of space, among others—he drew out of historical and archival sources. (Here i cannot resist mentioning Tait's collection of his intensive correspondence with Hamilton that transformed how quaternions were applied in physics and even conceptualized as mathematical objects.) We close with some thoughts on our own materially extended cognitive work and where Kevin's interests are currently driving him.</p><p>Suggested companion works:</p><p>• <a href="https://chat.openai.com/">ChatGPT</a>, as a cutting-edge extension of human thought</p><p>• work by <a href="https://classics.cornell.edu/courtney-ann-roby">Courtney Ann Roby</a>, including the forthcoming <em>The Mechanical Tradition of Hero of Alexandria: Strategies of Reading from Antiquity to the Early Modern Period</em></p><p>• <a href="https://academic.oup.com/book/45699"><em>Algorithmic Modernity: Mechanizing Thought and Action, 1500-2000</em></a>, edited by Morgan G. Ames and Massimo Mazzotti</p><p>• work by <a href="https://lbst.fullerton.edu/faculty/profile/e_bonney.aspx">Emily Miller Bonney</a>, for example "A Reconsideration of Depositional Practices in Early Bronze Age Crete"</p><p><a href="https://lbst.fullerton.edu/faculty/profile/k_lambert.aspx">Kevin Lambert</a> is a historian of science and mathematics in the early modern and modern periods and professor in the liberal studies department at California State University, Fullerton. His recent book <em>Symbols and Things</em> explores mathematics as a way of thinking outside the body and through the material environment. He also recently published a chapter in the volume <em>Algorithmic Modernity</em> that traces the genealogy of algorithmic practices. He is now working on the problem of writing <em>longue durée</em> histories of science. He is close to completing a paper called “Malthus in the Landscape” that investigates the temporalities of global histories. He is also exploring the problem of writing a global history of the early modern sciences without the prism of the so called “Scientific Revolution.” His work can be found <a href="https://www.researchgate.net/profile/Kevin-Lambert">on ResearchGate</a>.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4803</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Claudia de Rham, "The Beauty of Falling: A Life in Pursuit of Gravity" (Princeton UP, 2024)</title>
      <description>Claudia de Rham has been playing with gravity her entire life. As a diver, experimenting with her body's buoyancy in the Indian Ocean. As a pilot, soaring over Canadian waterfalls on dark mornings before beginning her daily scientific research. As an astronaut candidate, dreaming of the experience of flying free from Earth's pull. And as a physicist, discovering new sides to gravity's irresistible personality by exploring the limits of Einstein's general theory of relativity. 
In The Beauty of Falling: A Life in Pursuit of Gravity (Princeton UP, 2024), de Rham shares captivating stories about her quest to gain intimacy with gravity, to understand both its feeling and fundamental nature. Her life's pursuit led her from a twist of fate that snatched away her dream of becoming an astronaut to an exhilarating breakthrough at the very frontiers of gravitational physics.
While many of us presume to know gravity quite well, the brightest scientists in history have yet to fully answer the simple question: what exactly is gravity? De Rham reveals how great minds--from Newton and Einstein to Stephen Hawking, Andrea Ghez, and Roger Penrose--led her to the edge of knowledge about this fundamental force. She found hints of a hidden side to gravity at the particle level where Einstein's theory breaks down, leading her to develop a new theory of "massive gravity." De Rham shares how her life's path turned from a precipitous fall to an exquisite flight toward the discovery of something entirely new about our surprising, gravity-driven universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 01 Apr 2024 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>94</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Claudia de Rham</itunes:subtitle>
      <itunes:summary>Claudia de Rham has been playing with gravity her entire life. As a diver, experimenting with her body's buoyancy in the Indian Ocean. As a pilot, soaring over Canadian waterfalls on dark mornings before beginning her daily scientific research. As an astronaut candidate, dreaming of the experience of flying free from Earth's pull. And as a physicist, discovering new sides to gravity's irresistible personality by exploring the limits of Einstein's general theory of relativity. 
In The Beauty of Falling: A Life in Pursuit of Gravity (Princeton UP, 2024), de Rham shares captivating stories about her quest to gain intimacy with gravity, to understand both its feeling and fundamental nature. Her life's pursuit led her from a twist of fate that snatched away her dream of becoming an astronaut to an exhilarating breakthrough at the very frontiers of gravitational physics.
While many of us presume to know gravity quite well, the brightest scientists in history have yet to fully answer the simple question: what exactly is gravity? De Rham reveals how great minds--from Newton and Einstein to Stephen Hawking, Andrea Ghez, and Roger Penrose--led her to the edge of knowledge about this fundamental force. She found hints of a hidden side to gravity at the particle level where Einstein's theory breaks down, leading her to develop a new theory of "massive gravity." De Rham shares how her life's path turned from a precipitous fall to an exquisite flight toward the discovery of something entirely new about our surprising, gravity-driven universe.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Claudia de Rham has been playing with gravity her entire life. As a diver, experimenting with her body's buoyancy in the Indian Ocean. As a pilot, soaring over Canadian waterfalls on dark mornings before beginning her daily scientific research. As an astronaut candidate, dreaming of the experience of flying free from Earth's pull. And as a physicist, discovering new sides to gravity's irresistible personality by exploring the limits of Einstein's general theory of relativity. </p><p>In <a href="https://bookshop.org/a/12343/9780691237480"><em>The Beauty of Falling: A Life in Pursuit of Gravity</em></a><em> </em>(Princeton UP, 2024), de Rham shares captivating stories about her quest to gain intimacy with gravity, to understand both its feeling and fundamental nature. Her life's pursuit led her from a twist of fate that snatched away her dream of becoming an astronaut to an exhilarating breakthrough at the very frontiers of gravitational physics.</p><p>While many of us presume to know gravity quite well, the brightest scientists in history have yet to fully answer the simple question: what exactly is gravity? De Rham reveals how great minds--from Newton and Einstein to Stephen Hawking, Andrea Ghez, and Roger Penrose--led her to the edge of knowledge about this fundamental force. She found hints of a hidden side to gravity at the particle level where Einstein's theory breaks down, leading her to develop a new theory of "massive gravity." De Rham shares how her life's path turned from a precipitous fall to an exquisite flight toward the discovery of something entirely new about our surprising, gravity-driven universe.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3036</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[914325a8-e852-11ee-920e-ab5785343b64]]></guid>
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      <title>Philip Goff, "Why? The Purpose of the Universe" (Oxford UP, 2023)</title>
      <description>Does the universe have a purpose? If it does, how is this connected to the meaningfulness that we seek in our lives? In Why? The Purpose of the Universe (Oxford University Press, 2023), Philip Goff argues for cosmic purposivism, the idea that the universe does have a purpose – although this is not because there is an all-powerful God who provides it with one. Instead, Goff argues, fundamental physics provides us with reason to think it is probable there is a cosmic purpose – and, moreover, the best explanation of these reasons is to posit cosmopsychism: the idea that there are fundamental forms of consciousness such that the universe itself is a conscious mind. Goff, who is professor of philosophy at Durham University, argues that these claims are not as extravagant as they may initially seem, and that his view provides a way for understanding human purposes that lies between secular humanism and religious or spiritual perspectives.
Carrie Figdor is professor of philosophy at the University of Iowa.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sun, 10 Dec 2023 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>328</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Does the universe have a purpose? If it does, how is this connected to the meaningfulness that we seek in our lives? In Why? The Purpose of the Universe (Oxford University Press, 2023), Philip Goff argues for cosmic purposivism, the idea that the universe does have a purpose – although this is not because there is an all-powerful God who provides it with one. Instead, Goff argues, fundamental physics provides us with reason to think it is probable there is a cosmic purpose – and, moreover, the best explanation of these reasons is to posit cosmopsychism: the idea that there are fundamental forms of consciousness such that the universe itself is a conscious mind. Goff, who is professor of philosophy at Durham University, argues that these claims are not as extravagant as they may initially seem, and that his view provides a way for understanding human purposes that lies between secular humanism and religious or spiritual perspectives.
Carrie Figdor is professor of philosophy at the University of Iowa.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Does the universe have a purpose? If it does, how is this connected to the meaningfulness that we seek in our lives? In <a href="https://bookshop.org/a/12343/9780198883760"><em>Why? The Purpose of the Universe</em></a> (Oxford University Press, 2023), Philip Goff argues for cosmic purposivism, the idea that the universe does have a purpose – although this is not because there is an all-powerful God who provides it with one. Instead, Goff argues, fundamental physics provides us with reason to think it is probable there is a cosmic purpose – and, moreover, the best explanation of these reasons is to posit cosmopsychism: the idea that there are fundamental forms of consciousness such that the universe itself is a conscious mind. Goff, who is professor of philosophy at Durham University, argues that these claims are not as extravagant as they may initially seem, and that his view provides a way for understanding human purposes that lies between secular humanism and religious or spiritual perspectives.</p><p><a href="https://clas.uiowa.edu/philosophy/people/carrie-figdor"><em>Carrie Figdor</em></a><em> is professor of philosophy at the University of Iowa.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4013</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Kai Bird and Martin J. Sherwin, "American Prometheus: The Triumph and Tragedy of J. Robert Oppenheimer" (Vintage, 2006)</title>
      <description>The inspiration for Christopher Nolan’s major motion picture, Oppenheimer, this Pulitzer Prize-winning biography explores the life and times of J. Robert Oppenheimer – the “Father of the Atomic Bomb” – who, like the mythological Prometheus, brought atomic fire to mankind. In deep detail, Kai Bird and Martin J. Sherwin's American Prometheus: The Triumph and Tragedy of J. Robert Oppenheimer (Vintage, 2006) explores Oppenheimer’s early career at the forefront of quantum physics, his associations with left-wing politics and the Communist Party, his leadership of the Manhattan Project, and his confrontations with the moral and political consequences of scientific progress during the Cold War. Twenty-five years in the making, this definitive biography charts the rise and fall of one of the twentieth century’s most iconic and paradoxical characters and restores Oppenheimer’s legacy and his humanity.
﻿Andrew O. Pace is a historian of moral dilemmas of US foreign relations and an adjunct professor of history at Salt Lake Community College.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 21 Oct 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>30</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Kai Bird</itunes:subtitle>
      <itunes:summary>The inspiration for Christopher Nolan’s major motion picture, Oppenheimer, this Pulitzer Prize-winning biography explores the life and times of J. Robert Oppenheimer – the “Father of the Atomic Bomb” – who, like the mythological Prometheus, brought atomic fire to mankind. In deep detail, Kai Bird and Martin J. Sherwin's American Prometheus: The Triumph and Tragedy of J. Robert Oppenheimer (Vintage, 2006) explores Oppenheimer’s early career at the forefront of quantum physics, his associations with left-wing politics and the Communist Party, his leadership of the Manhattan Project, and his confrontations with the moral and political consequences of scientific progress during the Cold War. Twenty-five years in the making, this definitive biography charts the rise and fall of one of the twentieth century’s most iconic and paradoxical characters and restores Oppenheimer’s legacy and his humanity.
﻿Andrew O. Pace is a historian of moral dilemmas of US foreign relations and an adjunct professor of history at Salt Lake Community College.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The inspiration for Christopher Nolan’s major motion picture, <em>Oppenheimer</em>, this Pulitzer Prize-winning biography explores the life and times of J. Robert Oppenheimer – the “Father of the Atomic Bomb” – who, like the mythological Prometheus, brought atomic fire to mankind. In deep detail, Kai Bird and Martin J. Sherwin's <a href="https://bookshop.org/a/12343/9780375726262"><em>American Prometheus: The Triumph and Tragedy of J. Robert Oppenheimer</em></a> (Vintage, 2006) explores Oppenheimer’s early career at the forefront of quantum physics, his associations with left-wing politics and the Communist Party, his leadership of the Manhattan Project, and his confrontations with the moral and political consequences of scientific progress during the Cold War. Twenty-five years in the making, this definitive biography charts the rise and fall of one of the twentieth century’s most iconic and paradoxical characters and restores Oppenheimer’s legacy and his humanity.</p><p><em>﻿</em><a href="https://andrewopace.super.site/"><em>Andrew O. Pace</em></a><em> is a historian of moral dilemmas of US foreign relations and an adjunct professor of history at Salt Lake Community College.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4235</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NSR6314046107.mp3?updated=1697737256" length="0" type="audio/mpeg"/>
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    <item>
      <title>A Better Way to Buy Books</title>
      <description>Bookshop.org is an online book retailer that donates more than 80% of its profits to independent bookstores. Launched in 2020, Bookshop.org has already raised more than $27,000,000. In this interview, Andy Hunter, founder and CEO discusses his journey to creating one of the most revolutionary new organizations in the book world. Bookshop has found a way to retain the convenience of online book shopping while also supporting independent bookstores that are the backbones of many local communities. 
Andy Hunter is CEO and Founder of Bookshop.org. He also co-created Literary Hub.
Caleb Zakarin is the Assistant Editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 12 Sep 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>109</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>A Conversation with Andy Hunter, Founder and CEO, Bookshop.org</itunes:subtitle>
      <itunes:summary>Bookshop.org is an online book retailer that donates more than 80% of its profits to independent bookstores. Launched in 2020, Bookshop.org has already raised more than $27,000,000. In this interview, Andy Hunter, founder and CEO discusses his journey to creating one of the most revolutionary new organizations in the book world. Bookshop has found a way to retain the convenience of online book shopping while also supporting independent bookstores that are the backbones of many local communities. 
Andy Hunter is CEO and Founder of Bookshop.org. He also co-created Literary Hub.
Caleb Zakarin is the Assistant Editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Bookshop.org is an online book retailer that donates more than 80% of its profits to independent bookstores. Launched in 2020, <a href="https://bookshop.org/">Bookshop.org</a> has already raised more than $27,000,000. In this interview, <a href="https://www.linkedin.com/in/andy-hunter-64484224/">Andy Hunter</a>, founder and CEO discusses his journey to creating one of the most revolutionary new organizations in the book world. Bookshop has found a way to retain the convenience of online book shopping while also supporting independent bookstores that are the backbones of many local communities. </p><p>Andy Hunter is CEO and Founder of Bookshop.org. He also co-created <a href="https://lithub.com/">Literary Hub</a>.</p><p><em>Caleb Zakarin is the Assistant Editor of the New Books Network.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1964</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[55d088e0-50b7-11ee-b98e-7f8d5d2305c4]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NSR6674176145.mp3?updated=1694441399" length="0" type="audio/mpeg"/>
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    <item>
      <title>Herlinde Koelbl, "Fascination of Science: 60 Encounters with Pioneering Researchers of Our Time" (MIT Press, 2023)</title>
      <description>An intimate collection of portraits of internationally renowned scientists and Nobel Prize winners, paired with interviews and personal stories. What makes a brilliant scientist? Who are the people behind the greatest discoveries of our time? Connecting art and science, photographer Herlinde Koelbl seeks the answers in this English translation of the German book Fascination of Science: 60 Encounters with Pioneering Researchers of Our Time (MIT Press, 2023), an indelible collection of portraits of and interviews with sixty pioneering scientists of the twenty-first century. Koelbl’s approach is intimate and accessible, and her highly personal interviews with her subjects reveal the forces (as well as the personal quirks) that motivate the scientists’ work; for example, one wakes up at 3 am because her mind is calm then, another says his best ideas come to him in the shower. These glimpses into the scientists’ lives and thinking add untold texture in this up-to-the-minute survey of the activities and progress that are currently taking place in the broad field of the natural sciences. Koelbl’s interview subjects include Nobel Prize winners Dan Shechtman, Frances Arnold, Carolyn Bertozzi, and cover scientific fields from astronomy, biochemistry, and quantum physics to stem-cell research and AI. Beautifully bringing together art, science, and the written word, Fascination of Science is an inspiring read that shows how creativity, obsession, persistence, and passion drive the pioneering researchers of our time.
Herlinde Koelbl is a German photographic artist, author, and documentary filmmaker.
Caleb Zakarin is the Assistant Editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 06 Sep 2023 04:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>133</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Herlinde Koelbl</itunes:subtitle>
      <itunes:summary>An intimate collection of portraits of internationally renowned scientists and Nobel Prize winners, paired with interviews and personal stories. What makes a brilliant scientist? Who are the people behind the greatest discoveries of our time? Connecting art and science, photographer Herlinde Koelbl seeks the answers in this English translation of the German book Fascination of Science: 60 Encounters with Pioneering Researchers of Our Time (MIT Press, 2023), an indelible collection of portraits of and interviews with sixty pioneering scientists of the twenty-first century. Koelbl’s approach is intimate and accessible, and her highly personal interviews with her subjects reveal the forces (as well as the personal quirks) that motivate the scientists’ work; for example, one wakes up at 3 am because her mind is calm then, another says his best ideas come to him in the shower. These glimpses into the scientists’ lives and thinking add untold texture in this up-to-the-minute survey of the activities and progress that are currently taking place in the broad field of the natural sciences. Koelbl’s interview subjects include Nobel Prize winners Dan Shechtman, Frances Arnold, Carolyn Bertozzi, and cover scientific fields from astronomy, biochemistry, and quantum physics to stem-cell research and AI. Beautifully bringing together art, science, and the written word, Fascination of Science is an inspiring read that shows how creativity, obsession, persistence, and passion drive the pioneering researchers of our time.
Herlinde Koelbl is a German photographic artist, author, and documentary filmmaker.
Caleb Zakarin is the Assistant Editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>An intimate collection of portraits of internationally renowned scientists and Nobel Prize winners, paired with interviews and personal stories. What makes a brilliant scientist? Who are the people behind the greatest discoveries of our time? Connecting art and science, photographer Herlinde Koelbl seeks the answers in this English translation of the German book <a href="https://bookshop.org/a/12343/9780262545570"><em>Fascination of Science: 60 Encounters with Pioneering Researchers of Our Time</em></a><em> </em>(MIT Press, 2023), an indelible collection of portraits of and interviews with sixty pioneering scientists of the twenty-first century. Koelbl’s approach is intimate and accessible, and her highly personal interviews with her subjects reveal the forces (as well as the personal quirks) that motivate the scientists’ work; for example, one wakes up at 3 am because her mind is calm then, another says his best ideas come to him in the shower. These glimpses into the scientists’ lives and thinking add untold texture in this up-to-the-minute survey of the activities and progress that are currently taking place in the broad field of the natural sciences. Koelbl’s interview subjects include Nobel Prize winners Dan Shechtman, Frances Arnold, Carolyn Bertozzi, and cover scientific fields from astronomy, biochemistry, and quantum physics to stem-cell research and AI. Beautifully bringing together art, science, and the written word, Fascination of Science is an inspiring read that shows how creativity, obsession, persistence, and passion drive the pioneering researchers of our time.</p><p>Herlinde Koelbl is a German photographic artist, author, and documentary filmmaker.</p><p><em>Caleb Zakarin is the Assistant Editor of the New Books Network.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1717</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Barbara Sattler, "The Concept of Motion in Ancient Greek Thought: Foundations in Logic, Method, and Mathematics" (Cambridge UP, 2020)</title>
      <description>Barbara M. Sattler's book The Concept of Motion in Ancient Greek Thought: Foundations in Logic, Method, and Mathematics (Cambridge UP, 2020) examines the birth of the scientific understanding of motion. It investigates which logical tools and methodological principles had to be in place to give a consistent account of motion, and which mathematical notions were introduced to gain control over conceptual problems of motion. It shows how the idea of motion raised two fundamental problems in the 5th and 4th century BCE: bringing together being and non-being, and bringing together time and space. The first problem leads to the exclusion of motion from the realm of rational investigation in Parmenides, the second to Zeno's paradoxes of motion. Methodological and logical developments reacting to these puzzles are shown to be present implicitly in the atomists, and explicitly in Plato who also employs mathematical structures to make motion intelligible. With Aristotle we finally see the first outline of the fundamental framework with which we conceptualise motion today.
Professor Barbara Sattler is Chair in Ancient and Medieval Philosophy at the Ruhr University Bochum. The main area of her research is metaphysics and natural philosophy in the ancient Greek world.
Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube channel.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sun, 27 Aug 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>17</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Barbara Sattler</itunes:subtitle>
      <itunes:summary>Barbara M. Sattler's book The Concept of Motion in Ancient Greek Thought: Foundations in Logic, Method, and Mathematics (Cambridge UP, 2020) examines the birth of the scientific understanding of motion. It investigates which logical tools and methodological principles had to be in place to give a consistent account of motion, and which mathematical notions were introduced to gain control over conceptual problems of motion. It shows how the idea of motion raised two fundamental problems in the 5th and 4th century BCE: bringing together being and non-being, and bringing together time and space. The first problem leads to the exclusion of motion from the realm of rational investigation in Parmenides, the second to Zeno's paradoxes of motion. Methodological and logical developments reacting to these puzzles are shown to be present implicitly in the atomists, and explicitly in Plato who also employs mathematical structures to make motion intelligible. With Aristotle we finally see the first outline of the fundamental framework with which we conceptualise motion today.
Professor Barbara Sattler is Chair in Ancient and Medieval Philosophy at the Ruhr University Bochum. The main area of her research is metaphysics and natural philosophy in the ancient Greek world.
Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube channel.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Barbara M. Sattler's book <a href="https://bookshop.org/a/12343/9781108477901"><em>The Concept of Motion in Ancient Greek Thought: Foundations in Logic, Method, and Mathematics</em></a> (Cambridge UP, 2020) examines the birth of the scientific understanding of motion. It investigates which logical tools and methodological principles had to be in place to give a consistent account of motion, and which mathematical notions were introduced to gain control over conceptual problems of motion. It shows how the idea of motion raised two fundamental problems in the 5th and 4th century BCE: bringing together being and non-being, and bringing together time and space. The first problem leads to the exclusion of motion from the realm of rational investigation in Parmenides, the second to Zeno's paradoxes of motion. Methodological and logical developments reacting to these puzzles are shown to be present implicitly in the atomists, and explicitly in Plato who also employs mathematical structures to make motion intelligible. With Aristotle we finally see the first outline of the fundamental framework with which we conceptualise motion today.</p><p>Professor Barbara Sattler is Chair in Ancient and Medieval Philosophy at the Ruhr University Bochum. The main area of her research is metaphysics and natural philosophy in the ancient Greek world.</p><p><a href="https://www.youtube.com/user/a48266/videos"><em>Morteza Hajizadeh</em></a><em> is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. </em><a href="https://www.youtube.com/user/a48266/videos"><em>YouTube channel</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4398</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Working on Mars: Voyages of Scientific Discovery with the Mars Exploration Rovers</title>
      <description>Geologists in the field climb hills and hang onto craggy outcrops; they put their fingers in sand and scratch, smell, and even taste rocks. Beginning in 2004, however, a team of geologists and other planetary scientists did field science in a dark room in Pasadena, exploring Mars from NASA's Jet Propulsion Laboratory (JPL) by means of the remotely operated Mars Exploration Rovers (MER). Clustered around monitors, living on Mars time, painstakingly plotting each movement of the rovers and their tools, sensors, and cameras, these scientists reported that they felt as if they were on Mars themselves, doing field science. The MER created a virtual experience of being on Mars. In Working on Mars, William Clancey examines how the MER has changed the nature of planetary field science.
Drawing on his extensive observations of scientists in the field and at the JPL, Clancey investigates how the design of the rover mission enables field science on Mars, explaining how the scientists and rover engineers manipulate the vehicle and why the programmable tools and analytic instruments work so well for them. He shows how the scientists felt not as if they were issuing commands to a machine but rather as if they were working on the red planet, riding together in the rover on a voyage of discovery.
William J. Clancey is Chief Scientist of Human-Centered Computing in the Intelligent Systems Division at NASA Ames Research Center, and Senior Research Scientist at the Florida Institute for Human and Machine Cognition.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 14 Aug 2023 15:21:47 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>139</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with William J. Clancey</itunes:subtitle>
      <itunes:summary>Geologists in the field climb hills and hang onto craggy outcrops; they put their fingers in sand and scratch, smell, and even taste rocks. Beginning in 2004, however, a team of geologists and other planetary scientists did field science in a dark room in Pasadena, exploring Mars from NASA's Jet Propulsion Laboratory (JPL) by means of the remotely operated Mars Exploration Rovers (MER). Clustered around monitors, living on Mars time, painstakingly plotting each movement of the rovers and their tools, sensors, and cameras, these scientists reported that they felt as if they were on Mars themselves, doing field science. The MER created a virtual experience of being on Mars. In Working on Mars, William Clancey examines how the MER has changed the nature of planetary field science.
Drawing on his extensive observations of scientists in the field and at the JPL, Clancey investigates how the design of the rover mission enables field science on Mars, explaining how the scientists and rover engineers manipulate the vehicle and why the programmable tools and analytic instruments work so well for them. He shows how the scientists felt not as if they were issuing commands to a machine but rather as if they were working on the red planet, riding together in the rover on a voyage of discovery.
William J. Clancey is Chief Scientist of Human-Centered Computing in the Intelligent Systems Division at NASA Ames Research Center, and Senior Research Scientist at the Florida Institute for Human and Machine Cognition.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Geologists in the field climb hills and hang onto craggy outcrops; they put their fingers in sand and scratch, smell, and even taste rocks. Beginning in 2004, however, a team of geologists and other planetary scientists did field science in a dark room in Pasadena, exploring Mars from NASA's Jet Propulsion Laboratory (JPL) by means of the remotely operated Mars Exploration Rovers (MER). Clustered around monitors, living on Mars time, painstakingly plotting each movement of the rovers and their tools, sensors, and cameras, these scientists reported that they felt as if they were on Mars themselves, doing field science. The MER created a virtual experience of being on Mars. In <a href="https://mitpress.mit.edu/9780262526807/working-on-mars/">Working on Mars</a>, William Clancey examines how the MER has changed the nature of planetary field science.</p><p>Drawing on his extensive observations of scientists in the field and at the JPL, Clancey investigates how the design of the rover mission enables field science on Mars, explaining how the scientists and rover engineers manipulate the vehicle and why the programmable tools and analytic instruments work so well for them. He shows how the scientists felt not as if they were issuing commands to a machine but rather as if they were working on the red planet, riding together in the rover on a voyage of discovery.</p><p>William J. Clancey is Chief Scientist of Human-Centered Computing in the Intelligent Systems Division at NASA Ames Research Center, and Senior Research Scientist at the Florida Institute for Human and Machine Cognition.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1179</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Vincanne Adams, "Glyphosate and the Swirl: An Agroindustrial Chemical on the Move" (Duke UP, 2023)</title>
      <description>Vincanne Adams's book Glyphosate and the Swirl: An Agroindustrial Chemical on the Move (Duke UP, 2023) is part of a broader trend in anthropology that is developing new methods and techniques to study our increasingly polluted and toxic world. Adams takes Glyphosate as a case study and follows this chemical as it moves from the past to the present, from the lab to the dinner table, from outside our bodies, to within our cells to grapple with what it is to live in such an entangled world.  
Adams explores the chemical glyphosate—the active ingredient in Roundup and a pervasive agricultural herbicide—as a predicament of contested science and chemically saturated life. Adams traces the history of glyphosate’s invention and its multiple uses as activists, regulators, scientists, clinicians, consumers, and sick people try to determine its safety and harm. Scientific and political debates over glyphosate’s toxicity are agitated into a swirl—a condition in which certainty is continually contested, divided, and multiplied. This movement replicates the chemical’s movement in soils, foods, bodies, archives, labs, and legislative bodies, settling in some places here and in other places there, its potencies changing and altering what it touches with different scales and kinds of impact. The swirl is both an artifact of academic capitalism, activist tactics, and contested scientific facts and a way to capture the complexity of contemporary life with chemicals. Prof. Vincanne Adams, is professor Anthropology, History and Social Medicine at the University of California, San Francisco.
Elliott M. Reichardt, MPhil, is a PhD Candidate in Socio-Cultural Anthropology at Stanford University. Elliott's research interests are in capitalism, colonialism, and socio-ecological health in North America. Elliott also has long standing interests in medical anthropology and the history of science and medicine.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 25 Jul 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>242</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Vincanne Adams</itunes:subtitle>
      <itunes:summary>Vincanne Adams's book Glyphosate and the Swirl: An Agroindustrial Chemical on the Move (Duke UP, 2023) is part of a broader trend in anthropology that is developing new methods and techniques to study our increasingly polluted and toxic world. Adams takes Glyphosate as a case study and follows this chemical as it moves from the past to the present, from the lab to the dinner table, from outside our bodies, to within our cells to grapple with what it is to live in such an entangled world.  
Adams explores the chemical glyphosate—the active ingredient in Roundup and a pervasive agricultural herbicide—as a predicament of contested science and chemically saturated life. Adams traces the history of glyphosate’s invention and its multiple uses as activists, regulators, scientists, clinicians, consumers, and sick people try to determine its safety and harm. Scientific and political debates over glyphosate’s toxicity are agitated into a swirl—a condition in which certainty is continually contested, divided, and multiplied. This movement replicates the chemical’s movement in soils, foods, bodies, archives, labs, and legislative bodies, settling in some places here and in other places there, its potencies changing and altering what it touches with different scales and kinds of impact. The swirl is both an artifact of academic capitalism, activist tactics, and contested scientific facts and a way to capture the complexity of contemporary life with chemicals. Prof. Vincanne Adams, is professor Anthropology, History and Social Medicine at the University of California, San Francisco.
Elliott M. Reichardt, MPhil, is a PhD Candidate in Socio-Cultural Anthropology at Stanford University. Elliott's research interests are in capitalism, colonialism, and socio-ecological health in North America. Elliott also has long standing interests in medical anthropology and the history of science and medicine.
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      <content:encoded>
        <![CDATA[<p>Vincanne Adams's book <a href="https://bookshop.org/a/12343/9781478019411"><em>Glyphosate and the Swirl: An Agroindustrial Chemical on the Move</em></a> (Duke UP, 2023) is part of a broader trend in anthropology that is developing new methods and techniques to study our increasingly polluted and toxic world. Adams takes Glyphosate as a case study and follows this chemical as it moves from the past to the present, from the lab to the dinner table, from outside our bodies, to within our cells to grapple with what it is to live in such an entangled world.  </p><p>Adams explores the chemical glyphosate—the active ingredient in Roundup and a pervasive agricultural herbicide—as a predicament of contested science and chemically saturated life. Adams traces the history of glyphosate’s invention and its multiple uses as activists, regulators, scientists, clinicians, consumers, and sick people try to determine its safety and harm. Scientific and political debates over glyphosate’s toxicity are agitated into a swirl—a condition in which certainty is continually contested, divided, and multiplied. This movement replicates the chemical’s movement in soils, foods, bodies, archives, labs, and legislative bodies, settling in some places here and in other places there, its potencies changing and altering what it touches with different scales and kinds of impact. The swirl is both an artifact of academic capitalism, activist tactics, and contested scientific facts and a way to capture the complexity of contemporary life with chemicals. Prof. <a href="https://vincanneadams.com/">Vincanne Adams</a>, is professor Anthropology, History and Social Medicine at the University of California, San Francisco.</p><p><a href="https://anthropology.stanford.edu/people/elliott-reichardt"><em>Elliott M. Reichardt</em></a><em>, MPhil, is a PhD Candidate in Socio-Cultural Anthropology at Stanford University. Elliott's research interests are in capitalism, colonialism, and socio-ecological health in North America. Elliott also has long standing interests in medical anthropology and the history of science and medicine.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <itunes:duration>3448</itunes:duration>
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      <title>Janna Levin, "How the Universe Got Its Spots: Diary of a Finite Time in a Finite Space" (Princeton UP, 2023)</title>
      <description>Is the universe infinite or just really big? With this question, cosmologist Janna Levin announces the central theme of this book, which established her as one of the most direct, unorthodox, and creative voices in contemporary science. As Levin sets out to determine how big "really big" may be, she offers a rare intimate look at the daily life of an innovative physicist, complete with jet lag and the tensions between personal relationships and the extreme demands of scientific exploration. Nimbly explaining geometry, topology, chaos, and string theory, Levin shows how the pattern of hot and cold spots left over from the big bang may one day reveal the size of the cosmos. How the Universe Got Its Spots: Diary of a Finite Time in a Finite Space (Princeton UP, 2023) is a thrilling story of cosmology by one of its leading thinkers.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 15 Jul 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>67</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Janna Levin</itunes:subtitle>
      <itunes:summary>Is the universe infinite or just really big? With this question, cosmologist Janna Levin announces the central theme of this book, which established her as one of the most direct, unorthodox, and creative voices in contemporary science. As Levin sets out to determine how big "really big" may be, she offers a rare intimate look at the daily life of an innovative physicist, complete with jet lag and the tensions between personal relationships and the extreme demands of scientific exploration. Nimbly explaining geometry, topology, chaos, and string theory, Levin shows how the pattern of hot and cold spots left over from the big bang may one day reveal the size of the cosmos. How the Universe Got Its Spots: Diary of a Finite Time in a Finite Space (Princeton UP, 2023) is a thrilling story of cosmology by one of its leading thinkers.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Is the universe infinite or just really big? With this question, cosmologist Janna Levin announces the central theme of this book, which established her as one of the most direct, unorthodox, and creative voices in contemporary science. As Levin sets out to determine how big "really big" may be, she offers a rare intimate look at the daily life of an innovative physicist, complete with jet lag and the tensions between personal relationships and the extreme demands of scientific exploration. Nimbly explaining geometry, topology, chaos, and string theory, Levin shows how the pattern of hot and cold spots left over from the big bang may one day reveal the size of the cosmos. <a href="https://bookshop.org/a/12343/9780691232270"><em>How the Universe Got Its Spots: Diary of a Finite Time in a Finite Space</em></a><em> </em>(Princeton UP, 2023) is a thrilling story of cosmology by one of its leading thinkers.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1731</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Chris Impey, "Worlds Without End: Exoplanets, Habitability, and the Future of Humanity" (MIT Press, 2023)</title>
      <description>The science of finding habitable planets beyond our solar system and the prospects for establishing human civilization away from our ever-less-habitable planetary home. Planet Earth, it turns out, may not be the best of all possible worlds—and lately humanity has been carelessly depleting resources, decimating species, and degrading everything needed for life. Meanwhile, human ingenuity has opened up a vista of habitable worlds well beyond our wildest dreams of outposts on Mars. 
Worlds Without End: Exoplanets, Habitability, and the Future of Humanity (MIT Press, 2023) is an expertly guided tour of this thrilling frontier in astronomy: the search for planets with the potential to host life. With the approachable style that has made him a leading interpreter of astronomy and space science, Chris Impey conducts readers across the vast, fast-developing field of astrobiology, surveying the dizzying advances carrying us ever closer to the discovery of life beyond Earth—and the prospect of humans living on another planet. Since the first exoplanet, or planet beyond our solar system, was discovered in 1995, over 4,000 more have been pinpointed, including hundreds of Earth-like planets, many of them habitable, detected by the Kepler satellite. With a view spanning astronomy, planetary science, geology, chemistry, and biology, Impey provides a state-of-the-art account of what’s behind this accelerating progress, what’s next, and what it might mean for humanity’s future. The existential threats that we face here on Earth lend urgency to this search, raising the question: Could space be our salvation? From the definition of habitability to the changing shape of space exploration—as it expands beyond the interests of government to the pursuits of private industry—Worlds without End shows us the science, on horizons near and far, that may hold the answers.
Chris Impey is University Distinguished Professor of Astronomy at the University of Arizona.
Caleb Zakarin is the Assistant Editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 16 Jun 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>128</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Chris Impey</itunes:subtitle>
      <itunes:summary>The science of finding habitable planets beyond our solar system and the prospects for establishing human civilization away from our ever-less-habitable planetary home. Planet Earth, it turns out, may not be the best of all possible worlds—and lately humanity has been carelessly depleting resources, decimating species, and degrading everything needed for life. Meanwhile, human ingenuity has opened up a vista of habitable worlds well beyond our wildest dreams of outposts on Mars. 
Worlds Without End: Exoplanets, Habitability, and the Future of Humanity (MIT Press, 2023) is an expertly guided tour of this thrilling frontier in astronomy: the search for planets with the potential to host life. With the approachable style that has made him a leading interpreter of astronomy and space science, Chris Impey conducts readers across the vast, fast-developing field of astrobiology, surveying the dizzying advances carrying us ever closer to the discovery of life beyond Earth—and the prospect of humans living on another planet. Since the first exoplanet, or planet beyond our solar system, was discovered in 1995, over 4,000 more have been pinpointed, including hundreds of Earth-like planets, many of them habitable, detected by the Kepler satellite. With a view spanning astronomy, planetary science, geology, chemistry, and biology, Impey provides a state-of-the-art account of what’s behind this accelerating progress, what’s next, and what it might mean for humanity’s future. The existential threats that we face here on Earth lend urgency to this search, raising the question: Could space be our salvation? From the definition of habitability to the changing shape of space exploration—as it expands beyond the interests of government to the pursuits of private industry—Worlds without End shows us the science, on horizons near and far, that may hold the answers.
Chris Impey is University Distinguished Professor of Astronomy at the University of Arizona.
Caleb Zakarin is the Assistant Editor of the New Books Network.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The science of finding habitable planets beyond our solar system and the prospects for establishing human civilization away from our ever-less-habitable planetary home. Planet Earth, it turns out, may not be the best of all possible worlds—and lately humanity has been carelessly depleting resources, decimating species, and degrading everything needed for life. Meanwhile, human ingenuity has opened up a vista of habitable worlds well beyond our wildest dreams of outposts on Mars. </p><p><a href="https://bookshop.org/a/12343/9780262047661"><em>Worlds Without End: Exoplanets, Habitability, and the Future of Humanity</em></a> (MIT Press, 2023) is an expertly guided tour of this thrilling frontier in astronomy: the search for planets with the potential to host life. With the approachable style that has made him a leading interpreter of astronomy and space science, Chris Impey conducts readers across the vast, fast-developing field of astrobiology, surveying the dizzying advances carrying us ever closer to the discovery of life beyond Earth—and the prospect of humans living on another planet. Since the first exoplanet, or planet beyond our solar system, was discovered in 1995, over 4,000 more have been pinpointed, including hundreds of Earth-like planets, many of them habitable, detected by the Kepler satellite. With a view spanning astronomy, planetary science, geology, chemistry, and biology, Impey provides a state-of-the-art account of what’s behind this accelerating progress, what’s next, and what it might mean for humanity’s future. The existential threats that we face here on Earth lend urgency to this search, raising the question: Could space be our salvation? From the definition of habitability to the changing shape of space exploration—as it expands beyond the interests of government to the pursuits of private industry—Worlds without End shows us the science, on horizons near and far, that may hold the answers.</p><p>Chris Impey is University Distinguished Professor of Astronomy at the University of Arizona.</p><p><em>Caleb Zakarin is the Assistant Editor of the New Books Network.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <itunes:duration>1976</itunes:duration>
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      <title>Athene Donald, "Not Just for the Boys: Why We Need More Women in Science" (Oxford UP, 2023)</title>
      <description>Why are girls discouraged from doing science? Why do so many promising women leave science in early and mid-career? Why do women not prosper in the scientific workforce?
Not Just for the Boys: Why We Need More Women in Science (Oxford UP, 2023) looks back at how society has historically excluded women from the scientific sphere and discourse, what progress has been made, and how more is still needed. Athene Donald, herself a distinguished physicist, explores societal expectations during both childhood and working life using evidence of the systemic disadvantages women operate under, from the developing science of how our brains are―and more importantly aren't―gendered, to social science evidence around attitudes towards girls and women doing science.
It also discusses how science is done in practice, in order to dispel common myths: for example, the perception that science is not creative, or that it is carried out by a lone genius in an ivory tower, myths that can be very off-putting to many sections of the population. A better appreciation of the collaborative, creative, and multi-disciplinary nature of science is likely to lead to its appeal to a far wider swathe of people, especially women. This book examines the modern way of working in scientific research, and how gender bias operates in various ways within it, drawing on the voices of leading women in science describing their feelings and experiences. It argues the moral and business case for greater diversity in modern research, the better to improve science and tackle the great challenges we face today.
Athene Donald is Professor Emerita in Experimental Physics and Master of Churchill College, University of Cambridge. Other than four years postdoctoral research in the USA, she has spent her career in Cambridge, specializing in soft matter physics and physics at the interface with biology. She was the University of Cambridge's first Gender Equality Champion, and has been involved in numerous initiatives concerning women in science. She was elected Fellow of the Royal Society in 1999 and appointed DBE for services to Physics in 2010.

Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube channel.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 07 Jun 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>127</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Athene Donald</itunes:subtitle>
      <itunes:summary>Why are girls discouraged from doing science? Why do so many promising women leave science in early and mid-career? Why do women not prosper in the scientific workforce?
Not Just for the Boys: Why We Need More Women in Science (Oxford UP, 2023) looks back at how society has historically excluded women from the scientific sphere and discourse, what progress has been made, and how more is still needed. Athene Donald, herself a distinguished physicist, explores societal expectations during both childhood and working life using evidence of the systemic disadvantages women operate under, from the developing science of how our brains are―and more importantly aren't―gendered, to social science evidence around attitudes towards girls and women doing science.
It also discusses how science is done in practice, in order to dispel common myths: for example, the perception that science is not creative, or that it is carried out by a lone genius in an ivory tower, myths that can be very off-putting to many sections of the population. A better appreciation of the collaborative, creative, and multi-disciplinary nature of science is likely to lead to its appeal to a far wider swathe of people, especially women. This book examines the modern way of working in scientific research, and how gender bias operates in various ways within it, drawing on the voices of leading women in science describing their feelings and experiences. It argues the moral and business case for greater diversity in modern research, the better to improve science and tackle the great challenges we face today.
Athene Donald is Professor Emerita in Experimental Physics and Master of Churchill College, University of Cambridge. Other than four years postdoctoral research in the USA, she has spent her career in Cambridge, specializing in soft matter physics and physics at the interface with biology. She was the University of Cambridge's first Gender Equality Champion, and has been involved in numerous initiatives concerning women in science. She was elected Fellow of the Royal Society in 1999 and appointed DBE for services to Physics in 2010.

Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube channel.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Why are girls discouraged from doing science? Why do so many promising women leave science in early and mid-career? Why do women not prosper in the scientific workforce?</p><p><a href="https://bookshop.org/a/12343/9780192893406"><em>Not Just for the Boys: Why We Need More Women in Science</em></a> (Oxford UP, 2023) looks back at how society has historically excluded women from the scientific sphere and discourse, what progress has been made, and how more is still needed. Athene Donald, herself a distinguished physicist, explores societal expectations during both childhood and working life using evidence of the systemic disadvantages women operate under, from the developing science of how our brains are―and more importantly aren't―gendered, to social science evidence around attitudes towards girls and women doing science.</p><p>It also discusses how science is done in practice, in order to dispel common myths: for example, the perception that science is not creative, or that it is carried out by a lone genius in an ivory tower, myths that can be very off-putting to many sections of the population. A better appreciation of the collaborative, creative, and multi-disciplinary nature of science is likely to lead to its appeal to a far wider swathe of people, especially women. This book examines the modern way of working in scientific research, and how gender bias operates in various ways within it, drawing on the voices of leading women in science describing their feelings and experiences. It argues the moral and business case for greater diversity in modern research, the better to improve science and tackle the great challenges we face today.</p><p>Athene Donald is Professor Emerita in Experimental Physics and Master of Churchill College, University of Cambridge. Other than four years postdoctoral research in the USA, she has spent her career in Cambridge, specializing in soft matter physics and physics at the interface with biology. She was the University of Cambridge's first Gender Equality Champion, and has been involved in numerous initiatives concerning women in science. She was elected Fellow of the Royal Society in 1999 and appointed DBE for services to Physics in 2010.</p><p><br></p><p><a href="https://www.youtube.com/user/a48266/videos"><em>Morteza Hajizadeh</em></a><em> is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. </em><a href="https://www.youtube.com/user/a48266/videos"><em>YouTube channel</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <title>Hans-Jörg Rheinberger, "Split and Splice: A Phenomenology of Experimentation" (U Chicago Press, 2023)</title>
      <description>In Split &amp; Splice: A Phenomenology of Experimentation (University of Chicago Press, 2023), Hans-Jörg Rheinberger, director emeritus at the Max Planck Institute for the History of Science in Berlin, investigates the “underworld” of experimentation and suggests new avenues for telling the history of experimental sciences.
Divided in two parts, respectively titled “Infra-Experimentality” and “Supra-Experimentality,” Split &amp; Splice is an attempt at defining the phenomenological and historical contours of “experimentation as a knowledge-generating procedure.” The first part explores how researchers mix and match a variety of mediums, technological tools, and visualization techniques to produce new opportunities of knowledge-making. From nucleic acid sequence gels to structural models and experiment sheets, the reader is introduced to the contingency of the experimentation process and the series of fragmentation and mediation it requires. It is this realization that motivates the author’s historiographical considerations in the second part of the book. If the experimental process consists in a complex and changing interplay between various mediums, trace-generating techniques, and modes of visualization, then the narratives of the history of experimental sciences ought to be built around more or less extensive ensembles of experimental apparatus, rather than around retrospectively or abstractly-defined “objects” and “fields.”
In this new book, Rheinberger describes and makes visible the different layers and moving parts of the experimentation process in order to provide historians with new threads to follow and new ways of weaving their stories together.
﻿Victor Monnin, Ph.D. is an historian of science specialized in the history of Earth sciences. He is also teaching French language and literature to undergraduates.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 20 May 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>19</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Hans-Jörg Rheinberger</itunes:subtitle>
      <itunes:summary>In Split &amp; Splice: A Phenomenology of Experimentation (University of Chicago Press, 2023), Hans-Jörg Rheinberger, director emeritus at the Max Planck Institute for the History of Science in Berlin, investigates the “underworld” of experimentation and suggests new avenues for telling the history of experimental sciences.
Divided in two parts, respectively titled “Infra-Experimentality” and “Supra-Experimentality,” Split &amp; Splice is an attempt at defining the phenomenological and historical contours of “experimentation as a knowledge-generating procedure.” The first part explores how researchers mix and match a variety of mediums, technological tools, and visualization techniques to produce new opportunities of knowledge-making. From nucleic acid sequence gels to structural models and experiment sheets, the reader is introduced to the contingency of the experimentation process and the series of fragmentation and mediation it requires. It is this realization that motivates the author’s historiographical considerations in the second part of the book. If the experimental process consists in a complex and changing interplay between various mediums, trace-generating techniques, and modes of visualization, then the narratives of the history of experimental sciences ought to be built around more or less extensive ensembles of experimental apparatus, rather than around retrospectively or abstractly-defined “objects” and “fields.”
In this new book, Rheinberger describes and makes visible the different layers and moving parts of the experimentation process in order to provide historians with new threads to follow and new ways of weaving their stories together.
﻿Victor Monnin, Ph.D. is an historian of science specialized in the history of Earth sciences. He is also teaching French language and literature to undergraduates.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="https://bookshop.org/a/12343/9780226825328"><em>Split &amp; Splice: A Phenomenology of Experimentation</em></a> (University of Chicago Press, 2023), Hans-Jörg Rheinberger, director emeritus at the Max Planck Institute for the History of Science in Berlin, investigates the “underworld” of experimentation and suggests new avenues for telling the history of experimental sciences.</p><p>Divided in two parts, respectively titled “Infra-Experimentality” and “Supra-Experimentality,” <em>Split &amp; Splice</em> is an attempt at defining the phenomenological and historical contours of “experimentation as a knowledge-generating procedure.” The first part explores how researchers mix and match a variety of mediums, technological tools, and visualization techniques to produce new opportunities of knowledge-making. From nucleic acid sequence gels to structural models and experiment sheets, the reader is introduced to the contingency of the experimentation process and the series of fragmentation and mediation it requires. It is this realization that motivates the author’s historiographical considerations in the second part of the book. If the experimental process consists in a complex and changing interplay between various mediums, trace-generating techniques, and modes of visualization, then the narratives of the history of experimental sciences ought to be built around more or less extensive ensembles of experimental apparatus, rather than around retrospectively or abstractly-defined “objects” and “fields.”</p><p>In this new book, Rheinberger describes and makes visible the different layers and moving parts of the experimentation process in order to provide historians with new threads to follow and new ways of weaving their stories together.</p><p><em>﻿</em><a href="https://www.linkedin.com/in/victor-monnin-281941160/"><em>Victor Monnin</em></a><em>, Ph.D. is an historian of science specialized in the history of Earth sciences. He is also teaching French language and literature to undergraduates.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <itunes:duration>2749</itunes:duration>
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      <title>Felix Flicker, "The Magick of Physics: Uncovering the Fantastical Phenomena in Everyday Life" (Simon and Schuster, 2023)</title>
      <description>If you were to present the feats of modern science to someone from the past, those feats would surely be considered magic. In The Magick of Physics: Uncovering the Fantastical Phenomena in Everyday Life (Simon &amp; Schuster, 2023) theoretical physicist Dr. Felix Flicker proves that they are indeed magic—just familiar magic. The name for this magic is “condensed matter physics.” Most people haven’t heard of the field, yet more than a third of physicists identify as condensed matter researchers, making it the most active area in the subject—with good reason. Condensed matter is the solids, liquids, and gasses that surround us—and the more exotic matters—which dictate every aspect of our present existence, and hold the keys to a brighter future, from quantum computing to real-life invisibility cloaks.
Dr. Flicker teases out the magical threads that run through our daily lives. Condensed matter physics allows you to create anything abiding by the laws of reality—and often, we find that those laws can be bent. Dr. Flicker explains how to create new particles which never existed before, how to make crystals shoot out such intense light they can cut through metal, how to separate the poles of a magnet. And more.
The book’s endearing conceit is that you, the reader, are an aspiring wizard whose ability to cast spells (i.e. to do science) is dependent on your grasp of the fundamentals of our universe. This book contains no equations or charts—instead, it’s full of owls and mountains and infinite libraries, and staffs and wands, and martial arts and mythical islands ruled by sage knot-makers. Part of the book’s magic is that, for all these fanciful trappings, it still feels practical and applicable. The Magick of Physics will open your eyes to the miracles that surround us.
This interview was conducted by Dr. Miranda Melcher whose doctoral work focused on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars.
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      <pubDate>Tue, 02 May 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>3</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Felix Flicker</itunes:subtitle>
      <itunes:summary>If you were to present the feats of modern science to someone from the past, those feats would surely be considered magic. In The Magick of Physics: Uncovering the Fantastical Phenomena in Everyday Life (Simon &amp; Schuster, 2023) theoretical physicist Dr. Felix Flicker proves that they are indeed magic—just familiar magic. The name for this magic is “condensed matter physics.” Most people haven’t heard of the field, yet more than a third of physicists identify as condensed matter researchers, making it the most active area in the subject—with good reason. Condensed matter is the solids, liquids, and gasses that surround us—and the more exotic matters—which dictate every aspect of our present existence, and hold the keys to a brighter future, from quantum computing to real-life invisibility cloaks.
Dr. Flicker teases out the magical threads that run through our daily lives. Condensed matter physics allows you to create anything abiding by the laws of reality—and often, we find that those laws can be bent. Dr. Flicker explains how to create new particles which never existed before, how to make crystals shoot out such intense light they can cut through metal, how to separate the poles of a magnet. And more.
The book’s endearing conceit is that you, the reader, are an aspiring wizard whose ability to cast spells (i.e. to do science) is dependent on your grasp of the fundamentals of our universe. This book contains no equations or charts—instead, it’s full of owls and mountains and infinite libraries, and staffs and wands, and martial arts and mythical islands ruled by sage knot-makers. Part of the book’s magic is that, for all these fanciful trappings, it still feels practical and applicable. The Magick of Physics will open your eyes to the miracles that surround us.
This interview was conducted by Dr. Miranda Melcher whose doctoral work focused on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>If you were to present the feats of modern science to someone from the past, those feats would surely be considered magic. In <a href="https://bookshop.org/a/12343/9781982170608"><em>The Magick of Physics: Uncovering the Fantastical Phenomena in Everyday Life</em></a> (Simon &amp; Schuster, 2023) theoretical physicist Dr. Felix Flicker proves that they are indeed magic—just familiar magic. The name for this magic is “condensed matter physics.” Most people haven’t heard of the field, yet more than a third of physicists identify as condensed matter researchers, making it the most active area in the subject—with good reason. Condensed matter is the solids, liquids, and gasses that surround us—and the more exotic matters—which dictate every aspect of our present existence, and hold the keys to a brighter future, from quantum computing to real-life invisibility cloaks.</p><p>Dr. Flicker teases out the magical threads that run through our daily lives. Condensed matter physics allows you to create anything abiding by the laws of reality—and often, we find that those laws can be bent. Dr. Flicker explains how to create new particles which never existed before, how to make crystals shoot out such intense light they can cut through metal, how to separate the poles of a magnet. And more.</p><p>The book’s endearing conceit is that you, the reader, are an aspiring wizard whose ability to cast spells (i.e. to do science) is dependent on your grasp of the fundamentals of our universe. This book contains no equations or charts—instead, it’s full of owls and mountains and infinite libraries, and staffs and wands, and martial arts and mythical islands ruled by sage knot-makers. Part of the book’s magic is that, for all these fanciful trappings, it still feels practical and applicable. The Magick of Physics will open your eyes to the miracles that surround us.</p><p>This interview was conducted by Dr. Miranda Melcher whose doctoral work focused on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3357</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[807e3176-e534-11ed-b949-ef56ed3f80bf]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3757909611.mp3?updated=1682625638" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Seeing Truth in Physics</title>
      <description>Stephon Alexander talks about a better way of thinking about the interconnections between music, physics, and creativity and how as someone often seen as “outside” the field, he has found freedom to think harder, pursue ideas, and carve a place for himself in the story of science. Alexander and Alexis Boylan discuss how we should be thinking about physics, art, and the meaning of life all together, all the time.
Learn more about the Seeing Truth exhibition at our website.
Follow us on Twitter @WhyArguePod and on Instagram @WhyWeArguePod
Alexis L. Boylan is the director of academic affairs of the University of Connecticut Humanities Institute (UCHI) and an associate professor with a joint appointment in the Art and Art History Department and the Africana Studies Institute
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 06 Apr 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>62</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>A Conversation with Professor of Physics Stephon Alexander</itunes:subtitle>
      <itunes:summary>Stephon Alexander talks about a better way of thinking about the interconnections between music, physics, and creativity and how as someone often seen as “outside” the field, he has found freedom to think harder, pursue ideas, and carve a place for himself in the story of science. Alexander and Alexis Boylan discuss how we should be thinking about physics, art, and the meaning of life all together, all the time.
Learn more about the Seeing Truth exhibition at our website.
Follow us on Twitter @WhyArguePod and on Instagram @WhyWeArguePod
Alexis L. Boylan is the director of academic affairs of the University of Connecticut Humanities Institute (UCHI) and an associate professor with a joint appointment in the Art and Art History Department and the Africana Studies Institute
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Stephon Alexander talks about a better way of thinking about the interconnections between music, physics, and creativity and how as someone often seen as “outside” the field, he has found freedom to think harder, pursue ideas, and carve a place for himself in the story of science. Alexander and Alexis Boylan discuss how we should be thinking about physics, art, and the meaning of life all together, all the time.</p><p>Learn more about the Seeing Truth exhibition at <a href="https://futureoftruth.uconn.edu/seeing-truth">our website</a>.</p><p>Follow us on Twitter <a href="https://twitter.com/whyarguepod">@WhyArguePod</a> and on Instagram <a href="https://instagram.com/whywearguepod">@WhyWeArguePod</a></p><p><a href="https://art.uconn.edu/person/alexis-boylan/"><em>Alexis L. Boylan</em></a><em> is the director of academic affairs of the </em><a href="https://humanities.uconn.edu/"><em>University of Connecticut Humanities Institute</em></a><em> (UCHI) and an associate professor with a joint appointment in the Art and Art History Department and the Africana Studies Institute</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1874</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[9203bb9e-95b8-11ed-9562-6f2efb55971d]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9211692619.mp3?updated=1673885963" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Brian Villmoare, "The Evolution of Everything: The Patterns and Causes of Big History" (Cambridge UP, 2023)</title>
      <description>Big History seeks to retell the human story in light of scientific advances by such methods as radiocarbon dating and genetic analysis. Brian Villmoare's book The Evolution of Everything: The Patterns and Causes of Big History (Cambridge UP, 2023) provides a deep, causal view of the forces that have shaped the universe, the earth, and humanity. Starting with the Big Bang and the formation of the earth, it traces the evolutionary history of the world, focusing on humanity's origins. It also explores the many natural forces shaping humanity, especially the evolution of the brain and behaviour. Moving through time, the causes of such important transformations as agriculture, complex societies, the industrial revolution, the enlightenment, and modernity are placed in the context of underlying changes in demography, learning, and social organization. Humans are biological creatures, operating with instincts evolved millions of years ago, but in the context of a rapidly changing world, and as we try to adapt to new circumstances, we must regularly reckon with our deep past.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 03 Apr 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>2</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Brian Villmoare</itunes:subtitle>
      <itunes:summary>Big History seeks to retell the human story in light of scientific advances by such methods as radiocarbon dating and genetic analysis. Brian Villmoare's book The Evolution of Everything: The Patterns and Causes of Big History (Cambridge UP, 2023) provides a deep, causal view of the forces that have shaped the universe, the earth, and humanity. Starting with the Big Bang and the formation of the earth, it traces the evolutionary history of the world, focusing on humanity's origins. It also explores the many natural forces shaping humanity, especially the evolution of the brain and behaviour. Moving through time, the causes of such important transformations as agriculture, complex societies, the industrial revolution, the enlightenment, and modernity are placed in the context of underlying changes in demography, learning, and social organization. Humans are biological creatures, operating with instincts evolved millions of years ago, but in the context of a rapidly changing world, and as we try to adapt to new circumstances, we must regularly reckon with our deep past.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Big History seeks to retell the human story in light of scientific advances by such methods as radiocarbon dating and genetic analysis. Brian Villmoare's book <a href="https://www.cambridge.org/core/books/evolution-of-everything/6A2348ADF614F61FF1922E65F8B8F2BA"><em>The Evolution of Everything: The Patterns and Causes of Big History</em></a> (Cambridge UP, 2023) provides a deep, causal view of the forces that have shaped the universe, the earth, and humanity. Starting with the Big Bang and the formation of the earth, it traces the evolutionary history of the world, focusing on humanity's origins. It also explores the many natural forces shaping humanity, especially the evolution of the brain and behaviour. Moving through time, the causes of such important transformations as agriculture, complex societies, the industrial revolution, the enlightenment, and modernity are placed in the context of underlying changes in demography, learning, and social organization. Humans are biological creatures, operating with instincts evolved millions of years ago, but in the context of a rapidly changing world, and as we try to adapt to new circumstances, we must regularly reckon with our deep past.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3576</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN4319637994.mp3?updated=1680566035" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Water Is in the Air: Physics, Politics, and Poetics of Water in the Arts</title>
      <description>Our contributors discuss their work in the arts and sciences, which is showcased in the new article collection, Water Is in the Air: Physics, Politics, and Poetics of Water in the Arts. Water Is in the Air explores the ways that artists, from all over the world, working at the cutting edge of science and engineering, create work that addresses critical issues of water in culture and society. This conversation was recorded on March 19, 2014.


Jean-Marc Chomaz, CNRS research director at the École Polytechnique Hydrodynamics Laboratory (Ladhyx) and professor at École Polytechnique. He is a member of the artist group Labofactory.


Mikael Fernström and Sean Taylor, the art-science collaborators behind Softday. Fernström and Taylor teach at the University of Limerick. Listen to their sound art piece, "Hypoxia Hibernalis," a shortened version of "Marbh Chrios.”


Annick Bureaud, independent art critic, curator and event organizer, researcher and teacher in art and technosciences. She is the director of Leonardo/OLATS, European sister organization to Leonardo/ISAST.


Roger Malina, physicist, astronomer, editor-in-chief of Leonardo, and distinguished professor at the University of Texas, Dallas.


Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 30 Mar 2023 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>32</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/950a5548-cf40-11ed-858e-c3c0f13a4336/image/51SRIisFcGL.jpg?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Our contributors discuss their work in the arts and sciences, which is showcased in the new article collection, Water Is in the Air: Physics, Politics, and Poetics of Water in the Arts. Water Is in the Air explores the ways that artists, from all over the world, working at the cutting edge of science and engineering, create work that addresses critical issues of water in culture and society. This conversation was recorded on March 19, 2014.


Jean-Marc Chomaz, CNRS research director at the École Polytechnique Hydrodynamics Laboratory (Ladhyx) and professor at École Polytechnique. He is a member of the artist group Labofactory.


Mikael Fernström and Sean Taylor, the art-science collaborators behind Softday. Fernström and Taylor teach at the University of Limerick. Listen to their sound art piece, "Hypoxia Hibernalis," a shortened version of "Marbh Chrios.”


Annick Bureaud, independent art critic, curator and event organizer, researcher and teacher in art and technosciences. She is the director of Leonardo/OLATS, European sister organization to Leonardo/ISAST.


Roger Malina, physicist, astronomer, editor-in-chief of Leonardo, and distinguished professor at the University of Texas, Dallas.


Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Our contributors discuss their work in the arts and sciences, which is showcased in the new article collection, <a href="https://www.amazon.com/Water-Is-Air-Politics-Leonardo-ebook/dp/B00IFNMLKQ"><em>Water Is in the Air: Physics, Politics, and Poetics of Water in the Arts</em></a>. <em>Water Is in the Air</em> explores the ways that artists, from all over the world, working at the cutting edge of science and engineering, create work that addresses critical issues of water in culture and society. This conversation was recorded on March 19, 2014.</p><ul>
<li>
<a href="http://www.off-ladhyx.polytechnique.fr/people/jmarc/">Jean-Marc Chomaz</a>, <a href="http://www.cnrs.fr/accueil.php">CNRS</a> research director at the École Polytechnique Hydrodynamics Laboratory (Ladhyx) and professor at École Polytechnique. He is a member of the artist group <a href="http://www.labofactory.com/index.php">Labofactory</a>.</li>
<li>
<a href="http://www.idc.ul.ie/mikael/">Mikael Fernström</a> and <a href="http://www.seantaylor.ie/sean_taylor/Home.html">Sean Taylor</a>, the art-science collaborators behind <a href="http://www.softday.ie/">Softday</a>. Fernström and Taylor teach at the University of Limerick. <a href="https://www.mitpressjournals.org/userimages/ContentEditor/1397502705577/HypoxiaHibernalis.mp3">Listen</a> to their sound art piece, "Hypoxia Hibernalis," a shortened version of "Marbh Chrios.”</li>
<li>
<a href="http://www.annickbureaud.net/">Annick Bureaud</a>, independent art critic, curator and event organizer, researcher and teacher in art and technosciences. She is the director of <a href="http://www.olats.org/">Leonardo/OLATS</a>, European sister organization to <a href="http://www.leonardo.info/">Leonardo/ISAST</a>.</li>
<li>
<a href="http://www.utdallas.edu/atec/malina/">Roger Malina</a>, physicist, astronomer, editor-in-chief of <a href="https://www.mitpressjournals.org/page/loi/LEON"><em>Leonardo</em></a>, and distinguished professor at the University of Texas, Dallas.</li>
</ul><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1945</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Measure for Measure Episode 8: Star Ladder</title>
      <description>Scientists discovered that some stars have heartbeats and that some of them can be used to measure the longest distances that exist.
This episode was produced by Andrew Middleton  and Liya Rechtman.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 09 Mar 2023 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>67</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Scientists discovered that some stars have heartbeats and that some of them can be used to measure the longest distances that exist.
This episode was produced by Andrew Middleton  and Liya Rechtman.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Scientists discovered that some stars have heartbeats and that some of them can be used to measure the longest distances that exist.</p><p>This episode was produced by <a href="https://twitter.com/EcoAndrewTRC"><strong>Andrew Middleton </strong></a> and <a href="https://twitter.com/ConstantLiya"><strong>Liya Rechtman.</strong></a></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1035</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[cb434fdc-8942-11ed-97f7-e352aef91ad3]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8328029028.mp3?updated=1672418565" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Measure for Measure Episode 3: Mohs</title>
      <description>We’re hitting up against the very nature of measurement: How can we best describe the world around us, in its infinite complexity, with finite measures? In other words, how hard are rocks?
This episode was produced by Andrew Middleton and Liya Rechtman.
Measure for Measure is a limited series from Ministry of Ideas.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 04 Mar 2023 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>62</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>We’re hitting up against the very nature of measurement: How can we best describe the world around us, in its infinite complexity, with finite measures? In other words, how hard are rocks?
This episode was produced by Andrew Middleton and Liya Rechtman.
Measure for Measure is a limited series from Ministry of Ideas.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>We’re hitting up against the very nature of measurement: How can we best describe the world around us, in its infinite complexity, with finite measures? In other words, how hard are rocks?</p><p>This episode was produced by <a href="https://twitter.com/EcoAndrewTRC"><strong>Andrew Middleton</strong></a> and <a href="https://twitter.com/ConstantLiya"><strong>Liya Rechtman.</strong></a></p><p>Measure for Measure is a limited series from <a href="https://www.ministryofideas.org/"><strong>Ministry of Ideas</strong></a>.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>648</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[61a922b0-8940-11ed-9f73-9f760f863499]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9568146562.mp3?updated=1672418309" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Gravity's Kiss: The Detection of Gravitational Waves</title>
      <description>The detection of gravitational waves in 2015 rocked the science community. In this episode, Chris Gondek spoke with author Harry Collins, whose book Gravity's Kiss centers around the incredible discovery.
Scientists have been trying to confirm the existence of gravitational waves for fifty years. Then, in September 2015, came a "very interesting event" (as the cautious subject line in a physicist's email read) that proved to be the first detection of gravitational waves. In Gravity's Kiss, Harry Collins--who has been watching the science of gravitational wave detection for forty-three of those fifty years and has written three previous books about it--offers a final, fascinating account, written in real time, of the unfolding of one of the most remarkable scientific discoveries ever made.
Predicted by Einstein in his theory of general relativity, gravitational waves carry energy from the collision or explosion of stars. Dying binary stars, for example, rotate faster and faster around each other until they merge, emitting a burst of gravitational waves. It is only with the development of extraordinarily sensitive, highly sophisticated detectors that physicists can now confirm Einstein's prediction. This is the story that Collins tells.
Collins, a sociologist of science who has been embedded in the gravitational wave community since 1972, traces the detection, the analysis, the confirmation, and the public presentation and the reception of the discovery--from the first email to the final published paper and the response of professionals and the public. Collins shows that science today is collaborative, far-flung (with the physical location of the participants hardly mattering), and sometimes secretive, but still one of the few institutions that has integrity built into it.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 03 Mar 2023 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>5</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/a431333a-b9eb-11ed-89bf-2b8e4589c31d/image/gravitys-kiss-book-cover.jpg?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>An interview with Harry Collins</itunes:subtitle>
      <itunes:summary>The detection of gravitational waves in 2015 rocked the science community. In this episode, Chris Gondek spoke with author Harry Collins, whose book Gravity's Kiss centers around the incredible discovery.
Scientists have been trying to confirm the existence of gravitational waves for fifty years. Then, in September 2015, came a "very interesting event" (as the cautious subject line in a physicist's email read) that proved to be the first detection of gravitational waves. In Gravity's Kiss, Harry Collins--who has been watching the science of gravitational wave detection for forty-three of those fifty years and has written three previous books about it--offers a final, fascinating account, written in real time, of the unfolding of one of the most remarkable scientific discoveries ever made.
Predicted by Einstein in his theory of general relativity, gravitational waves carry energy from the collision or explosion of stars. Dying binary stars, for example, rotate faster and faster around each other until they merge, emitting a burst of gravitational waves. It is only with the development of extraordinarily sensitive, highly sophisticated detectors that physicists can now confirm Einstein's prediction. This is the story that Collins tells.
Collins, a sociologist of science who has been embedded in the gravitational wave community since 1972, traces the detection, the analysis, the confirmation, and the public presentation and the reception of the discovery--from the first email to the final published paper and the response of professionals and the public. Collins shows that science today is collaborative, far-flung (with the physical location of the participants hardly mattering), and sometimes secretive, but still one of the few institutions that has integrity built into it.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The detection of gravitational waves in 2015 rocked the science community. In this episode, Chris Gondek spoke with author Harry Collins, whose book <a href="https://bookshop.org/a/12343/9780262535120">Gravity's Kiss</a> centers around the incredible discovery.</p><p>Scientists have been trying to confirm the existence of gravitational waves for fifty years. Then, in September 2015, came a "very interesting event" (as the cautious subject line in a physicist's email read) that proved to be the first detection of gravitational waves. In <em>Gravity's Kiss, </em>Harry Collins--who has been watching the science of gravitational wave detection for forty-three of those fifty years and has written three previous books about it--offers a final, fascinating account, written in real time, of the unfolding of one of the most remarkable scientific discoveries ever made.</p><p>Predicted by Einstein in his theory of general relativity, gravitational waves carry energy from the collision or explosion of stars. Dying binary stars, for example, rotate faster and faster around each other until they merge, emitting a burst of gravitational waves. It is only with the development of extraordinarily sensitive, highly sophisticated detectors that physicists can now confirm Einstein's prediction. This is the story that Collins tells.</p><p>Collins, a sociologist of science who has been embedded in the gravitational wave community since 1972, traces the detection, the analysis, the confirmation, and the public presentation and the reception of the discovery--from the first email to the final published paper and the response of professionals and the public. Collins shows that science today is collaborative, far-flung (with the physical location of the participants hardly mattering), and sometimes secretive, but still one of the few institutions that has integrity built into it.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1234</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://mitpress.podbean.com/e/ripple-effect-1502108053/]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN7108692260.mp3?updated=1676929720" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>The Future of Nuclear Fusion: A Discussion with Sharon Ann Holgate</title>
      <description>How useful will nuclear fusion be? In a major breakthrough last year at the National Ignition Facility in California, 192 lasers achieved fusion – and created energy - for the first time. It was clearly an important moment. But might the development of fusion technology come too late? Owen Bennett Jones speaks with Sharon Ann Holgate, author of Nuclear Fusion: The Race to Build a Mini Sun on Earth (Icon Books, 2022).
﻿Owen Bennett-Jones is a freelance journalist and writer. A former BBC correspondent and presenter he has been a resident foreign correspondent in Bucharest, Geneva, Islamabad, Hanoi and Beirut. He is recently wrote a history of the Bhutto dynasty which was published by Yale University Press.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 04 Feb 2023 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>49</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>How useful will nuclear fusion be? In a major breakthrough last year at the National Ignition Facility in California, 192 lasers achieved fusion – and created energy - for the first time. It was clearly an important moment. But might the development of fusion technology come too late? Owen Bennett Jones speaks with Sharon Ann Holgate, author of Nuclear Fusion: The Race to Build a Mini Sun on Earth (Icon Books, 2022).
﻿Owen Bennett-Jones is a freelance journalist and writer. A former BBC correspondent and presenter he has been a resident foreign correspondent in Bucharest, Geneva, Islamabad, Hanoi and Beirut. He is recently wrote a history of the Bhutto dynasty which was published by Yale University Press.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>How useful will nuclear fusion be? In a major breakthrough last year at the National Ignition Facility in California, 192 lasers achieved fusion – and created energy - for the first time. It was clearly an important moment. But might the development of fusion technology come too late? Owen Bennett Jones speaks with Sharon Ann Holgate, author of <a href="https://bookshop.org/a/12343/9781785789229"><em>Nuclear Fusion: The Race to Build a Mini Sun on Earth</em></a> (Icon Books, 2022).</p><p><em>﻿</em><a href="https://owenbennettjones.com/about/"><em>Owen Bennett-Jones</em></a><em> is a freelance journalist and writer. A former BBC correspondent and presenter he has been a resident foreign correspondent in Bucharest, Geneva, Islamabad, Hanoi and Beirut. He is recently wrote a history of the Bhutto dynasty which was published by Yale University Press.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2061</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Tom McLeish, "The Poetry and Music of Science: Comparing Creativity in Science and Art" (Oxford UP, 2021)</title>
      <description>What human qualities are needed to make scientific discoveries, and which to make great art? Many would point to 'imagination' and 'creativity' in the second case but not the first. Tom McLeish's The Poetry and Music of Science: Comparing Creativity in Science and Art (Oxford UP, 2021) challenges the assumption that doing science is in any sense less creative than art, music or fictional writing and poetry, and treads a historical and contemporary path through common territories of the creative process. The methodological process called the 'scientific method' tells us how to test ideas when we have had them, but not how to arrive at hypotheses in the first place. Hearing the stories that scientists and artists tell about their projects reveals commonalities: the desire for a goal, the experience of frustration and failure, the incubation of the problem, moments of sudden insight, and the experience of the beautiful or sublime.
Selected themes weave the practice of science and art together: visual thinking and metaphor, the transcendence of music and mathematics, the contemporary rise of the English novel and experimental science, and the role of aesthetics and desire in the creative process. Artists and scientists make salient comparisons: Defoe and Boyle; Emmerson and Humboldt, Monet and Einstein, Schumann and Hadamard. The book draws on medieval philosophy at many points as the product of the last age that spent time in inner contemplation of the mystery of how something is mentally brought out from nothing. Taking the phenomenon of the rainbow as an example, the principles of creativity within constraint point to the scientific imagination as a parallel of poetry.
Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube Channel. Twitter.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 20 Dec 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>126</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Tom McLeish</itunes:subtitle>
      <itunes:summary>What human qualities are needed to make scientific discoveries, and which to make great art? Many would point to 'imagination' and 'creativity' in the second case but not the first. Tom McLeish's The Poetry and Music of Science: Comparing Creativity in Science and Art (Oxford UP, 2021) challenges the assumption that doing science is in any sense less creative than art, music or fictional writing and poetry, and treads a historical and contemporary path through common territories of the creative process. The methodological process called the 'scientific method' tells us how to test ideas when we have had them, but not how to arrive at hypotheses in the first place. Hearing the stories that scientists and artists tell about their projects reveals commonalities: the desire for a goal, the experience of frustration and failure, the incubation of the problem, moments of sudden insight, and the experience of the beautiful or sublime.
Selected themes weave the practice of science and art together: visual thinking and metaphor, the transcendence of music and mathematics, the contemporary rise of the English novel and experimental science, and the role of aesthetics and desire in the creative process. Artists and scientists make salient comparisons: Defoe and Boyle; Emmerson and Humboldt, Monet and Einstein, Schumann and Hadamard. The book draws on medieval philosophy at many points as the product of the last age that spent time in inner contemplation of the mystery of how something is mentally brought out from nothing. Taking the phenomenon of the rainbow as an example, the principles of creativity within constraint point to the scientific imagination as a parallel of poetry.
Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube Channel. Twitter.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>What human qualities are needed to make scientific discoveries, and which to make great art? Many would point to 'imagination' and 'creativity' in the second case but not the first. Tom McLeish's <a href="https://bookshop.org/a/12343/9780192845375"><em>The Poetry and Music of Science: Comparing Creativity in Science and Art</em></a> (Oxford UP, 2021) challenges the assumption that doing science is in any sense less creative than art, music or fictional writing and poetry, and treads a historical and contemporary path through common territories of the creative process. The methodological process called the 'scientific method' tells us how to test ideas when we have had them, but not how to arrive at hypotheses in the first place. Hearing the stories that scientists and artists tell about their projects reveals commonalities: the desire for a goal, the experience of frustration and failure, the incubation of the problem, moments of sudden insight, and the experience of the beautiful or sublime.</p><p>Selected themes weave the practice of science and art together: visual thinking and metaphor, the transcendence of music and mathematics, the contemporary rise of the English novel and experimental science, and the role of aesthetics and desire in the creative process. Artists and scientists make salient comparisons: Defoe and Boyle; Emmerson and Humboldt, Monet and Einstein, Schumann and Hadamard. The book draws on medieval philosophy at many points as the product of the last age that spent time in inner contemplation of the mystery of how something is mentally brought out from nothing. Taking the phenomenon of the rainbow as an example, the principles of creativity within constraint point to the scientific imagination as a parallel of poetry.</p><p><em>Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. </em><a href="https://www.youtube.com/user/a48266/videos"><em>YouTube Channel</em></a><em>. </em><a href="https://twitter.com/TalkArtCulture"><em>Twitter</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2067</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>David Lindsay, "Scientific Writing = Thinking in Words" (CSIRO Publishing, 2020)</title>
      <description>Listen to this interview of David Lindsay, emeritus professor of the University of Western Australia. We talk about his book Scientific Writing = Thinking in Words (CSIRO Publishing, 2020) and how your hypothesis can save the communication of your research.
David Lindsay : "It's quite unfortunate that we're training our undergraduates in science this way. I mean, undergraduates know that when they write something, for example, a protocol to be graded—undergraduates know that their professors are seeking to find out whether the student knows something about the subject. So, as long as there's any semblance at all in the text that the student knows something about the subject, well, then the professor ticks a box and marks the student accordingly. This just encourages undergraduates to dump knowledge, to be writing any sort of rubbish just so long as something substantial-like bubbles out of it that seems to suggest that they have a reasonable understanding of the subject. But when these same undergrads get to the point of writing this way for scientific publication, well, then it all comes crashing down, because they can't just throw information together and hope that reviewers or editors will say, 'Oh, yeah, I think I can see what you mean. You know stuff.'"
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 07 Dec 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>88</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with David Lindsay</itunes:subtitle>
      <itunes:summary>Listen to this interview of David Lindsay, emeritus professor of the University of Western Australia. We talk about his book Scientific Writing = Thinking in Words (CSIRO Publishing, 2020) and how your hypothesis can save the communication of your research.
David Lindsay : "It's quite unfortunate that we're training our undergraduates in science this way. I mean, undergraduates know that when they write something, for example, a protocol to be graded—undergraduates know that their professors are seeking to find out whether the student knows something about the subject. So, as long as there's any semblance at all in the text that the student knows something about the subject, well, then the professor ticks a box and marks the student accordingly. This just encourages undergraduates to dump knowledge, to be writing any sort of rubbish just so long as something substantial-like bubbles out of it that seems to suggest that they have a reasonable understanding of the subject. But when these same undergrads get to the point of writing this way for scientific publication, well, then it all comes crashing down, because they can't just throw information together and hope that reviewers or editors will say, 'Oh, yeah, I think I can see what you mean. You know stuff.'"
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Listen to this interview of David Lindsay, emeritus professor of the University of Western Australia. We talk about his book <a href="https://bookshop.org/a/12343/9781486311477"><em>Scientific Writing = Thinking in Words</em></a> (CSIRO Publishing, 2020) and how your hypothesis can save the communication of your research.</p><p>David Lindsay : "It's quite unfortunate that we're training our undergraduates in science this way. I mean, undergraduates know that when they write something, for example, a protocol to be graded—undergraduates know that their professors are seeking to find out whether the student knows something about the subject. So, as long as there's any semblance at all in the text that the student knows something about the subject, well, then the professor ticks a box and marks the student accordingly. This just encourages undergraduates to dump knowledge, to be writing any sort of rubbish just so long as something substantial-like bubbles out of it that seems to suggest that they have a reasonable understanding of the subject. But when these same undergrads get to the point of writing this way for scientific publication, well, then it all comes crashing down, because they can't just throw information together and hope that reviewers or editors will say, 'Oh, yeah, I <em>think</em> I can see what you mean. You know stuff.'"</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4394</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Joseph Silk, "Back to the Moon: The Next Giant Leap for Humankind" (Princeton UP, 2022)</title>
      <description>Just over half a century since Neil Armstrong first stepped foot on the lunar surface, a new space race to the Moon is well underway and rapidly gaining momentum. Laying out a vision for the next fifty years, Back to the Moon: The Next Giant Leap for Humankind (Princeton UP, 2022) is astrophysicist Joseph Silk's persuasive and impassioned case for putting scientific discovery at the forefront of lunar exploration.
The Moon offers opportunities beyond our wildest imaginings, and plans to return are rapidly gaining momentum around the world. NASA aims to build a habitable orbiting space station to coordinate lunar development and exploration, while European and Chinese space agencies are planning lunar villages and the mining of precious resources dwindling here on Earth. Powerful international and commercial interests are driving the race to revisit the Moon, but lunar infrastructures could also open breathtaking vistas onto the cosmos. Silk describes how the colonization of the Moon could usher in a thrilling new age of scientific exploration, and lays out what the next fifty years of lunar science might look like. With lunar telescopes of unprecedented size situated in permanently dark polar craters and on the far side of the Moon, we could finally be poised to answer some of the most profound questions confronting humankind, including whether we are alone in the Universe and what our cosmic origins are.
Addressing both the daunting challenges and the immense promise of lunar exploration and exploitation, Back to the Moon reveals how prioritizing science, and in particular lunar astronomy, will enable us to address the deepest cosmic mysteries.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 28 Nov 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>52</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Joseph Silk</itunes:subtitle>
      <itunes:summary>Just over half a century since Neil Armstrong first stepped foot on the lunar surface, a new space race to the Moon is well underway and rapidly gaining momentum. Laying out a vision for the next fifty years, Back to the Moon: The Next Giant Leap for Humankind (Princeton UP, 2022) is astrophysicist Joseph Silk's persuasive and impassioned case for putting scientific discovery at the forefront of lunar exploration.
The Moon offers opportunities beyond our wildest imaginings, and plans to return are rapidly gaining momentum around the world. NASA aims to build a habitable orbiting space station to coordinate lunar development and exploration, while European and Chinese space agencies are planning lunar villages and the mining of precious resources dwindling here on Earth. Powerful international and commercial interests are driving the race to revisit the Moon, but lunar infrastructures could also open breathtaking vistas onto the cosmos. Silk describes how the colonization of the Moon could usher in a thrilling new age of scientific exploration, and lays out what the next fifty years of lunar science might look like. With lunar telescopes of unprecedented size situated in permanently dark polar craters and on the far side of the Moon, we could finally be poised to answer some of the most profound questions confronting humankind, including whether we are alone in the Universe and what our cosmic origins are.
Addressing both the daunting challenges and the immense promise of lunar exploration and exploitation, Back to the Moon reveals how prioritizing science, and in particular lunar astronomy, will enable us to address the deepest cosmic mysteries.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Just over half a century since Neil Armstrong first stepped foot on the lunar surface, a new space race to the Moon is well underway and rapidly gaining momentum. Laying out a vision for the next fifty years, <a href="https://press.princeton.edu/books/hardcover/9780691215235/back-to-the-moon"><em>Back to the Moon: The Next Giant Leap for Humankind</em></a><em> </em>(Princeton UP, 2022) is astrophysicist Joseph Silk's persuasive and impassioned case for putting scientific discovery at the forefront of lunar exploration.</p><p>The Moon offers opportunities beyond our wildest imaginings, and plans to return are rapidly gaining momentum around the world. NASA aims to build a habitable orbiting space station to coordinate lunar development and exploration, while European and Chinese space agencies are planning lunar villages and the mining of precious resources dwindling here on Earth. Powerful international and commercial interests are driving the race to revisit the Moon, but lunar infrastructures could also open breathtaking vistas onto the cosmos. Silk describes how the colonization of the Moon could usher in a thrilling new age of scientific exploration, and lays out what the next fifty years of lunar science might look like. With lunar telescopes of unprecedented size situated in permanently dark polar craters and on the far side of the Moon, we could finally be poised to answer some of the most profound questions confronting humankind, including whether we are alone in the Universe and what our cosmic origins are.</p><p>Addressing both the daunting challenges and the immense promise of lunar exploration and exploitation, <em>Back to the Moon</em> reveals how prioritizing science, and in particular lunar astronomy, will enable us to address the deepest cosmic mysteries.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2138</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    </item>
    <item>
      <title>David Kaiser, "Well, Doc, You're In: Freeman Dyson’s Journey through the Universe" (MIT Press, 2022)</title>
      <description>Freeman Dyson (1923–2020)—renowned scientist, visionary, and iconoclast—helped invent modern physics. Not bound by disciplinary divisions, he went on to explore foundational topics in mathematics, astrophysics, and the origin of life. General readers were introduced to Dyson’s roving mind and heterodox approach in his 1979 book Disturbing the Universe, a poignant autobiographical reflection on life and science. 
"Well, Doc, You're In": Freeman Dyson’s Journey through the Universe (MIT Press, 2022) (the title quotes Richard Feynman’s remark to Dyson at a physics conference) offers a fresh examination of Dyson’s life and work, exploring his particular way of thinking about deep questions that range from the nature of matter to the ultimate fate of the universe. The chapters—written by leading scientists, historians, and science journalists, including some of Dyson’s colleagues—trace Dyson’s formative years, his budding interests and curiosities, and his wide-ranging work across the natural sciences, technology, and public policy. They describe Dyson’s innovations at the intersection of quantum theory and relativity, his novel nuclear reactor design (and his never-realized idea of a spacecraft powered by nuclear weapons), his years at the Institute for Advanced Study, and his foray into cosmology. In the coda, Dyson’s daughter Esther reflects on growing up in the Dyson household. “Well, Doc, You’re In” assesses Dyson’s successes, blind spots, and influence, assembling a portrait of a scientist’s outsized legacy. Contributors: Jeremy Bernstein, Robbert Dijkgraaf, Esther Dyson, George Dyson, Ann Finkbeiner, Amanda Gefter, Ashutosh Jogalekar, David Kaiser, Caleb Scharf, William Thomas.
Matthew Jordan is a university instructor, funk musician, and clear writing enthusiast. He studies the history of science and technology, driven by the belief that we must understand the past in order to improve the future.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 02 Nov 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>125</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with David Kaiser</itunes:subtitle>
      <itunes:summary>Freeman Dyson (1923–2020)—renowned scientist, visionary, and iconoclast—helped invent modern physics. Not bound by disciplinary divisions, he went on to explore foundational topics in mathematics, astrophysics, and the origin of life. General readers were introduced to Dyson’s roving mind and heterodox approach in his 1979 book Disturbing the Universe, a poignant autobiographical reflection on life and science. 
"Well, Doc, You're In": Freeman Dyson’s Journey through the Universe (MIT Press, 2022) (the title quotes Richard Feynman’s remark to Dyson at a physics conference) offers a fresh examination of Dyson’s life and work, exploring his particular way of thinking about deep questions that range from the nature of matter to the ultimate fate of the universe. The chapters—written by leading scientists, historians, and science journalists, including some of Dyson’s colleagues—trace Dyson’s formative years, his budding interests and curiosities, and his wide-ranging work across the natural sciences, technology, and public policy. They describe Dyson’s innovations at the intersection of quantum theory and relativity, his novel nuclear reactor design (and his never-realized idea of a spacecraft powered by nuclear weapons), his years at the Institute for Advanced Study, and his foray into cosmology. In the coda, Dyson’s daughter Esther reflects on growing up in the Dyson household. “Well, Doc, You’re In” assesses Dyson’s successes, blind spots, and influence, assembling a portrait of a scientist’s outsized legacy. Contributors: Jeremy Bernstein, Robbert Dijkgraaf, Esther Dyson, George Dyson, Ann Finkbeiner, Amanda Gefter, Ashutosh Jogalekar, David Kaiser, Caleb Scharf, William Thomas.
Matthew Jordan is a university instructor, funk musician, and clear writing enthusiast. He studies the history of science and technology, driven by the belief that we must understand the past in order to improve the future.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Freeman Dyson (1923–2020)—renowned scientist, visionary, and iconoclast—helped invent modern physics. Not bound by disciplinary divisions, he went on to explore foundational topics in mathematics, astrophysics, and the origin of life. General readers were introduced to Dyson’s roving mind and heterodox approach in his 1979 book Disturbing the Universe, a poignant autobiographical reflection on life and science. </p><p><a href="https://bookshop.org/a/12343/9780262047340"><em>"Well, Doc, You're In": Freeman Dyson’s Journey through the Universe</em></a><em> </em>(MIT Press, 2022) (the title quotes Richard Feynman’s remark to Dyson at a physics conference) offers a fresh examination of Dyson’s life and work, exploring his particular way of thinking about deep questions that range from the nature of matter to the ultimate fate of the universe. The chapters—written by leading scientists, historians, and science journalists, including some of Dyson’s colleagues—trace Dyson’s formative years, his budding interests and curiosities, and his wide-ranging work across the natural sciences, technology, and public policy. They describe Dyson’s innovations at the intersection of quantum theory and relativity, his novel nuclear reactor design (and his never-realized idea of a spacecraft powered by nuclear weapons), his years at the Institute for Advanced Study, and his foray into cosmology. In the coda, Dyson’s daughter Esther reflects on growing up in the Dyson household. “Well, Doc, You’re In” assesses Dyson’s successes, blind spots, and influence, assembling a portrait of a scientist’s outsized legacy. Contributors: Jeremy Bernstein, Robbert Dijkgraaf, Esther Dyson, George Dyson, Ann Finkbeiner, Amanda Gefter, Ashutosh Jogalekar, David Kaiser, Caleb Scharf, William Thomas.</p><p><a href="https://www.linkedin.com/in/matthewleejordan/"><em>Matthew Jordan</em></a><em> is a university instructor, funk musician, and clear writing enthusiast. He studies the history of science and technology, driven by the belief that we must understand the past in order to improve the future.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4150</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Halloween Special: Schrodinger’s Cat</title>
      <description>Kim talks with George Gibson about Schrödinger’s cat. This cat is a thought experiment proposed by Erwin Schrödinger, and taken up in correspondence with Albert Einstein, in the 1930s.
Schrödinger’s original paper on the subject, “Die gegenwärtige Situation in der Quantenmechanik” (Naturwissenschaften 23 no. 48 (November 1935): 807–812) doi: 10.1007/BF01491891 was translated by John D. Trimmer and published as “The Present Situation in Quantum Mechanics: A Translation of Schrödinger’s ‘Cat Paradox’ Paper.” (Proceedings of the American Philosophical Society 124, No. 5 (Oct. 1980): 323-338) &lt;https://www.jstor.org/stable/986572&gt;. Schrödinger presents the cat as something of a joke.
George Gibson is a professor of physics at the University of Connecticut and an excellent pianist.
Image: “Leo was rescued off the streets of Harlem 3.5 years ago and has lived comfortably in a town house with two humans ever since.”
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 25 Oct 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>18</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>A Discussion with George Gibson</itunes:subtitle>
      <itunes:summary>Kim talks with George Gibson about Schrödinger’s cat. This cat is a thought experiment proposed by Erwin Schrödinger, and taken up in correspondence with Albert Einstein, in the 1930s.
Schrödinger’s original paper on the subject, “Die gegenwärtige Situation in der Quantenmechanik” (Naturwissenschaften 23 no. 48 (November 1935): 807–812) doi: 10.1007/BF01491891 was translated by John D. Trimmer and published as “The Present Situation in Quantum Mechanics: A Translation of Schrödinger’s ‘Cat Paradox’ Paper.” (Proceedings of the American Philosophical Society 124, No. 5 (Oct. 1980): 323-338) &lt;https://www.jstor.org/stable/986572&gt;. Schrödinger presents the cat as something of a joke.
George Gibson is a professor of physics at the University of Connecticut and an excellent pianist.
Image: “Leo was rescued off the streets of Harlem 3.5 years ago and has lived comfortably in a town house with two humans ever since.”
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Kim talks with George Gibson about Schrödinger’s cat. This cat is a thought experiment proposed by Erwin Schrödinger, and taken up in correspondence with Albert Einstein, in the 1930s.</p><p>Schrödinger’s original paper on the subject, “Die gegenwärtige Situation in der Quantenmechanik” (<em>Naturwissenschaften</em> 23 no. 48 (November 1935): 807–812) doi: <a href="https://doi.org/10.1007/BF01491891">10.1007/BF01491891</a> was translated by John D. Trimmer and published as “The Present Situation in Quantum Mechanics: A Translation of Schrödinger’s ‘Cat Paradox’ Paper.” (<em>Proceedings of the American Philosophical Society</em> 124, No. 5 (Oct. 1980): 323-338) &lt;<a href="https://www.jstor.org/stable/986572">https://www.jstor.org/stable/986572</a>&gt;. Schrödinger presents the cat as something of a joke.</p><p><a href="https://physics.uconn.edu/person/george-gibson/">George Gibson</a> is a professor of physics at the University of Connecticut and an excellent pianist.</p><p>Image: “Leo was rescued off the streets of Harlem 3.5 years ago and has lived comfortably in a town house with two humans ever since.”</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>756</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[9441d55a-a2cd-11ec-9354-e7fd9d9bb6f3]]></guid>
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    </item>
    <item>
      <title>On Einstein's Discoveries</title>
      <link>https://www.writlarge.fm/</link>
      <description>Before Albert Einstein, our understanding of space, time, and gravity hadn’t really shifted from the theories that Sir Isaac Newton developed in the 1700s. But in 1905, Einstein published his theory of special relativity; he’d discovered that time can warp in the universe. Then, he published his theory of general relativity and gave us a completely new understanding of gravity. These theories liberated scientists, artists, and the public to think in radical new ways.  Peter Galison is a professor at Harvard University in Physics, History of Science, and related areas of Philosophy. Some of his works include the film Ultimate Weapon: The H-bomb Dilemma (2000, Director), and books Einstein’s Clocks and Poincaré’s Maps. His current work focuses on the relationship between the self and modern technologies. See more information on our website, WritLarge.fm. Follow us on Twitter @WritLargePod. Join the conversation on the Lyceum app.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 29 Sep 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>44</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/968f01b2-18dd-11ed-b9a8-a33a32b9f546/image/uploads_2F1606322003232-tlafjp8myji-cf95429852d6babca30037f797445d1a_2F35.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>A Discussion with Peter Galison</itunes:subtitle>
      <itunes:summary>Before Albert Einstein, our understanding of space, time, and gravity hadn’t really shifted from the theories that Sir Isaac Newton developed in the 1700s. But in 1905, Einstein published his theory of special relativity; he’d discovered that time can warp in the universe. Then, he published his theory of general relativity and gave us a completely new understanding of gravity. These theories liberated scientists, artists, and the public to think in radical new ways.  Peter Galison is a professor at Harvard University in Physics, History of Science, and related areas of Philosophy. Some of his works include the film Ultimate Weapon: The H-bomb Dilemma (2000, Director), and books Einstein’s Clocks and Poincaré’s Maps. His current work focuses on the relationship between the self and modern technologies. See more information on our website, WritLarge.fm. Follow us on Twitter @WritLargePod. Join the conversation on the Lyceum app.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Before Albert Einstein, our understanding of space, time, and gravity hadn’t really shifted from the theories that Sir Isaac Newton developed in the 1700s. But in 1905, Einstein published his theory of special relativity; he’d discovered that time can warp in the universe. Then, he published his theory of general relativity and gave us a completely new understanding of gravity. These theories liberated scientists, artists, and the public to think in radical new ways.  Peter Galison is a professor at Harvard University in Physics, History of Science, and related areas of Philosophy. Some of his works include the film Ultimate Weapon: The H-bomb Dilemma (2000, Director), and books Einstein’s Clocks and Poincaré’s Maps. His current work focuses on the relationship between the self and modern technologies. See more information on our website, WritLarge.fm. Follow us on Twitter @WritLargePod. Join the conversation on the Lyceum app.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1802</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[f657eeb6-2f3b-11eb-aba9-03fc486fc727]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8080030789.mp3?updated=1656522716" length="0" type="audio/mpeg"/>
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    <item>
      <title>Brian Clegg, "Ten Patterns That Explain the Universe" (MIT Press, 2021)</title>
      <description>Our universe might appear chaotic, but deep down it's simply a myriad of rules working independently to create patterns of action, force, and consequence. In Ten Patterns That Explain the Universe (MIT Press, 2021), Brian Clegg explores the phenomena that make up the very fabric of our world by examining ten essential sequenced systems. From diagrams that show the deep relationships between space and time to the quantum behaviors that rule the way that matter and light interact, Clegg shows how these patterns provide a unique view of the physical world and its fundamental workings.
Guiding readers on a tour of our world and the universe beyond, Clegg describes the cosmic microwave background, sometimes called the "echo of the big bang," and how it offers clues to the universe's beginnings; the diagrams that illustrate Einstein's revelation of the intertwined nature of space and time; the particle trail patterns revealed by the Large Hadron Collider and other accelerators; and the simple-looking patterns that predict quantum behavior (and decorated Richard Feynman's van). Clegg explains how the periodic table reflects the underlying pattern of the configuration of atoms, discusses the power of the number line, demonstrates the explanatory uses of tree diagrams, and more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 23 Sep 2022 21:33:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>82</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Brian Clegg</itunes:subtitle>
      <itunes:summary>Our universe might appear chaotic, but deep down it's simply a myriad of rules working independently to create patterns of action, force, and consequence. In Ten Patterns That Explain the Universe (MIT Press, 2021), Brian Clegg explores the phenomena that make up the very fabric of our world by examining ten essential sequenced systems. From diagrams that show the deep relationships between space and time to the quantum behaviors that rule the way that matter and light interact, Clegg shows how these patterns provide a unique view of the physical world and its fundamental workings.
Guiding readers on a tour of our world and the universe beyond, Clegg describes the cosmic microwave background, sometimes called the "echo of the big bang," and how it offers clues to the universe's beginnings; the diagrams that illustrate Einstein's revelation of the intertwined nature of space and time; the particle trail patterns revealed by the Large Hadron Collider and other accelerators; and the simple-looking patterns that predict quantum behavior (and decorated Richard Feynman's van). Clegg explains how the periodic table reflects the underlying pattern of the configuration of atoms, discusses the power of the number line, demonstrates the explanatory uses of tree diagrams, and more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Our universe might appear chaotic, but deep down it's simply a myriad of rules working independently to create patterns of action, force, and consequence. In <a href="https://bookshop.org/a/12343/9780262542869"><em>Ten Patterns That Explain the Universe</em></a> (MIT Press, 2021), Brian Clegg explores the phenomena that make up the very fabric of our world by examining ten essential sequenced systems. From diagrams that show the deep relationships between space and time to the quantum behaviors that rule the way that matter and light interact, Clegg shows how these patterns provide a unique view of the physical world and its fundamental workings.</p><p>Guiding readers on a tour of our world and the universe beyond, Clegg describes the cosmic microwave background, sometimes called the "echo of the big bang," and how it offers clues to the universe's beginnings; the diagrams that illustrate Einstein's revelation of the intertwined nature of space and time; the particle trail patterns revealed by the Large Hadron Collider and other accelerators; and the simple-looking patterns that predict quantum behavior (and decorated Richard Feynman's van). Clegg explains how the periodic table reflects the underlying pattern of the configuration of atoms, discusses the power of the number line, demonstrates the explanatory uses of tree diagrams, and more.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3008</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[929f8e16-5db5-11ec-b9a4-dbefb8ba715a]]></guid>
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    <item>
      <title>Elise Vernon Pearlstine, "Scent: A Natural History of Fragrance" (Yale UP, 2022)</title>
      <description>Plants have long harnessed the chemical characteristics of aromatic compounds to shape the world around them. Frankincense resin from the genus Boswellia seals injured tissues and protects trees from invading pathogens. Jasmine produces a molecule called linalool that attracts pollinating moths with its flowery scent. Tobacco uses a similarly sweet-smelling compound called benzyl acetone to attract pollinators. Only recently in the evolutionary history of plants, however, have humans learned to co-opt their fragrances to seduce, heal, protect, and alter moods themselves.
In this wide-ranging and accessible Scent: A Natural History (Yale University Press, 2022), biologist-turned-perfumer Dr. Elise Vernon Pearlstine turns our human-centered perception of fragrance on its head and investigates plants' evolutionary reasons for creating aromatic molecules. Delving into themes of spirituality, wealth, power, addiction, royalty, fantasy, and more, Pearlstine uncovers the natural history of aromatic substances and their intersection with human culture and civilization.
This interview was conducted by Dr. Miranda Melcher whose doctoral work focused on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 08 Sep 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>11</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Elise Vernon Pearlstine</itunes:subtitle>
      <itunes:summary>Plants have long harnessed the chemical characteristics of aromatic compounds to shape the world around them. Frankincense resin from the genus Boswellia seals injured tissues and protects trees from invading pathogens. Jasmine produces a molecule called linalool that attracts pollinating moths with its flowery scent. Tobacco uses a similarly sweet-smelling compound called benzyl acetone to attract pollinators. Only recently in the evolutionary history of plants, however, have humans learned to co-opt their fragrances to seduce, heal, protect, and alter moods themselves.
In this wide-ranging and accessible Scent: A Natural History (Yale University Press, 2022), biologist-turned-perfumer Dr. Elise Vernon Pearlstine turns our human-centered perception of fragrance on its head and investigates plants' evolutionary reasons for creating aromatic molecules. Delving into themes of spirituality, wealth, power, addiction, royalty, fantasy, and more, Pearlstine uncovers the natural history of aromatic substances and their intersection with human culture and civilization.
This interview was conducted by Dr. Miranda Melcher whose doctoral work focused on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Plants have long harnessed the chemical characteristics of aromatic compounds to shape the world around them. Frankincense resin from the genus Boswellia seals injured tissues and protects trees from invading pathogens. Jasmine produces a molecule called linalool that attracts pollinating moths with its flowery scent. Tobacco uses a similarly sweet-smelling compound called benzyl acetone to attract pollinators. Only recently in the evolutionary history of plants, however, have humans learned to co-opt their fragrances to seduce, heal, protect, and alter moods themselves.</p><p>In this wide-ranging and accessible <a href="https://bookshop.org/a/12343/9780300246964"><em>Scent: A Natural History</em></a> (Yale University Press, 2022), biologist-turned-perfumer Dr. Elise Vernon Pearlstine turns our human-centered perception of fragrance on its head and investigates plants' evolutionary reasons for creating aromatic molecules. Delving into themes of spirituality, wealth, power, addiction, royalty, fantasy, and more, Pearlstine uncovers the natural history of aromatic substances and their intersection with human culture and civilization.</p><p><em>This interview was conducted by Dr. Miranda Melcher whose doctoral work focused on post-conflict military integration, understanding treaty negotiation and implementation in civil war contexts, with qualitative analysis of the Angolan and Mozambican civil wars.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3162</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[d6dc54cc-2bc5-11ed-9158-8bc45e0c9e47]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6181244211.mp3?updated=1662237572" length="0" type="audio/mpeg"/>
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    <item>
      <title>On Edwin Hubble’s "The Realm of the Nebulae"</title>
      <link>https://www.writlarge.fm/</link>
      <description>Until the publication of Edwin Hubble’s 1936 book, The Realm of the Nebulae, astronomers believed that the Milky Way was the only galaxy in the universe. Hubble infinitely expanded our understanding of the cosmos and showed that what scientists thought was everything, was really just the beginning. In this episode, MIT professor emeritus Marcia Bartusiak unpacks Hubble’s findings and discusses how they impact the field of astronomy to this day. Marica Bartusiak is Professor of the Practice Emeritus of the Graduate Program in Science Writing at Massachusetts Institute of Technology. She writes on physics and astronomy and her work has been published in National Geographic Magazine, Discover Magazine, Science Magazine, and many others. See more information on our website, WritLarge.fm.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 22 Aug 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>16</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/33921454-18ca-11ed-860c-bbdde7524d62/image/uploads_2F1602594582460-bp19x57qq8o-05a221f471eba1dd79cdbc1c21ca1212_2F5.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>A Discussion with Marica Bartusiak</itunes:subtitle>
      <itunes:summary>Until the publication of Edwin Hubble’s 1936 book, The Realm of the Nebulae, astronomers believed that the Milky Way was the only galaxy in the universe. Hubble infinitely expanded our understanding of the cosmos and showed that what scientists thought was everything, was really just the beginning. In this episode, MIT professor emeritus Marcia Bartusiak unpacks Hubble’s findings and discusses how they impact the field of astronomy to this day. Marica Bartusiak is Professor of the Practice Emeritus of the Graduate Program in Science Writing at Massachusetts Institute of Technology. She writes on physics and astronomy and her work has been published in National Geographic Magazine, Discover Magazine, Science Magazine, and many others. See more information on our website, WritLarge.fm.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Until the publication of Edwin Hubble’s 1936 book, The Realm of the Nebulae, astronomers believed that the Milky Way was the only galaxy in the universe. Hubble infinitely expanded our understanding of the cosmos and showed that what scientists thought was everything, was really just the beginning. In this episode, MIT professor emeritus Marcia Bartusiak unpacks Hubble’s findings and discusses how they impact the field of astronomy to this day. Marica Bartusiak is Professor of the Practice Emeritus of the Graduate Program in Science Writing at Massachusetts Institute of Technology. She writes on physics and astronomy and her work has been published in National Geographic Magazine, Discover Magazine, Science Magazine, and many others. See more information on our website, WritLarge.fm.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2312</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[66a67078-f9c9-11ea-93a3-f7bfb4fe8825]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3072614016.mp3?updated=1656934491" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>The Science Wars: Post-Truth and the Nature of Science</title>
      <description>Welcome to the final day of our weeklong deep dive into the politics of education. Today, we’ve got another episode of Cited for you. If you haven’t heard a Cited episode before, it’s the documentary show that came before Darts and Letters and it specialised in immersive storytelling.
This piece takes us on a journey through a little-known, long-past set of debates on the nature of science in democratic society: the Science Wars. They may seem lost to time, but some scholars say the Science Wars might just explain how we got our 'post-truth' moment. Learn about the bold hoax that became a determining factor in the Science Wars and how that moment in history might have foretold the wars on science to come.
Next week, we’ll be bringing you episodes on a whole new theme - activism and academia. You won’t want to miss it. And you really won’t want to miss our brand-new episodes, launching on the New Books Network from September 18th.
—————————-SUPPORT THE SHOW—————————-
You can support the show for free by following or subscribing on Spotify, Apple Podcasts, or whichever app you use. This is the best way to help us out and it costs nothing so we’d really appreciate you clicking that button.
If you want to do a little more we would love if you chip in. You can find us on patreon.com/dartsandletters. Patrons get content early, and occasionally there’s bonus material on there too.
—————————-CONTACT US————————-
To stay up to date, follow us on Twitter and Facebook. If you’d like to write to us, email darts@citedmedia.ca or tweet Gordon directly.
———-CREDITS———-
Today’s episode was produced by Gordon Katic, and edited by Cited's Sam Fenn.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 29 Jul 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>10</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Welcome to the final day of our weeklong deep dive into the politics of education. Today, we’ve got another episode of Cited for you. If you haven’t heard a Cited episode before, it’s the documentary show that came before Darts and Letters and it specialised in immersive storytelling.
This piece takes us on a journey through a little-known, long-past set of debates on the nature of science in democratic society: the Science Wars. They may seem lost to time, but some scholars say the Science Wars might just explain how we got our 'post-truth' moment. Learn about the bold hoax that became a determining factor in the Science Wars and how that moment in history might have foretold the wars on science to come.
Next week, we’ll be bringing you episodes on a whole new theme - activism and academia. You won’t want to miss it. And you really won’t want to miss our brand-new episodes, launching on the New Books Network from September 18th.
—————————-SUPPORT THE SHOW—————————-
You can support the show for free by following or subscribing on Spotify, Apple Podcasts, or whichever app you use. This is the best way to help us out and it costs nothing so we’d really appreciate you clicking that button.
If you want to do a little more we would love if you chip in. You can find us on patreon.com/dartsandletters. Patrons get content early, and occasionally there’s bonus material on there too.
—————————-CONTACT US————————-
To stay up to date, follow us on Twitter and Facebook. If you’d like to write to us, email darts@citedmedia.ca or tweet Gordon directly.
———-CREDITS———-
Today’s episode was produced by Gordon Katic, and edited by Cited's Sam Fenn.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Welcome to the final day of our weeklong deep dive into the politics of education. Today, we’ve got another episode of Cited for you. If you haven’t heard a Cited episode before, it’s the documentary show that came before Darts and Letters and it specialised in immersive storytelling.</p><p>This piece takes us on a journey through a little-known, long-past set of debates on the nature of science in democratic society: the Science Wars. They may seem lost to time, but some scholars say the Science Wars might just explain how we got our 'post-truth' moment. Learn about the bold hoax that became a determining factor in the Science Wars and how that moment in history might have foretold the wars on science to come.</p><p>Next week, we’ll be bringing you episodes on a whole new theme - activism and academia. You won’t want to miss it. And you really won’t want to miss our brand-new episodes, launching on the New Books Network from September 18th.</p><p>—————————-SUPPORT THE SHOW—————————-</p><p>You can support the show for free by following or subscribing on <a href="https://open.spotify.com/show/0ySUyzsY8DLsMg63qQbENM?si=31d20a0af00f4b93">Spotify,</a> <a href="https://podcasts.apple.com/ca/podcast/darts-and-letters/id1540893288">Apple Podcasts</a>, or whichever app you use. This is the best way to help us out and it costs nothing so we’d really appreciate you clicking that button.</p><p>If you want to do a little more we would love if you chip in. You can find us on <a href="https://www.patreon.com/dartsandletters">patreon.com/dartsandletters</a>. Patrons get content early, and occasionally there’s bonus material on there too.</p><p>—————————-CONTACT US————————-</p><p>To stay up to date, follow us on <a href="https://twitter.com/dartsandletters">Twitter</a> and <a href="https://www.facebook.com/dartsandletters">Facebook</a>. If you’d like to write to us, email <a href="mailto:darts@citedmedia.ca">darts@citedmedia.ca</a> or tweet <a href="https://twitter.com/gordonkatic?lang=en">Gordon</a> directly.</p><p>———-CREDITS———-</p><p>Today’s episode was produced by <a href="https://twitter.com/gordonkatic?ref_src=twsrc%5Egoogle%7Ctwcamp%5Eserp%7Ctwgr%5Eauthor">Gordon Katic</a>, and edited by Cited's <a href="https://twitter.com/samadeus?lang=en">Sam Fenn</a>.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4131</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[e4788ca4-0c17-11ed-ae96-6bb0657ac738]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1154271945.mp3?updated=1658753336" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Elena Conis, "How to Sell a Poison: The Rise, Fall, and Toxic Return of DDT" (Bold Type Books, 2022)</title>
      <description>The story of DDT as you’ve never heard it before: a fresh look at the much-maligned chemical compound as a cautionary tale of how powerful corporations have stoked the flames of science denialism for their own benefit In the 1940s, DDT helped the Allies win the Second World War by wiping out the insects that caused malaria, with seemingly no ill effects on humans. After the war, it was sprayed willy-nilly across fields, in dairy barns, and even in people's homes. Thirty years later the U.S. would ban the use of DDT—only to reverse the ban in the 1990s when calls arose to bring it back to fight West Nile and malaria. What changed? 
How to Sell a Poison: The Rise, Fall, and Toxic Return of DDT (Bold Type Books, 2022) traces the surprising history of DDT’s rapid rise, infamous fall, and controversial revival to reveal to show that we’ve been taking the wrong lesson from DDT’s cautionary tale. Historian Elena Conis uncovers new evidence that it was not the shift in public opinion following the publication of Rachel Carson’s Silent Spring that led to the ban but in fact the behind-the-scenes political machinations of Big Business. She makes a compelling case that the real threat was not DDT itself but the prioritization of profits over public health. ​ If we don't change the ways we make decisions about new scientific discoveries and technologies, Conis argues, we’re doomed to keep making the same mistakes and putting people at risk—both by withholding technologies that could help them and by exposing them to dangerous chemicals without their knowledge or consent. In an age when corporations and politicians are shaping our world behind closed doors and deliberately stoking misinformation around public health issues, from pesticides to vaccines to COVID-19 to climate change, we need greater transparency and a new way of communicating about science—as a discipline of discovery that's constantly evolving, rather than a finite and immutable collection of facts—in order to combat the war on facts and protect ourselves and our environment.
﻿Claire Clark is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 13 Jul 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>165</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Elena Conis</itunes:subtitle>
      <itunes:summary>The story of DDT as you’ve never heard it before: a fresh look at the much-maligned chemical compound as a cautionary tale of how powerful corporations have stoked the flames of science denialism for their own benefit In the 1940s, DDT helped the Allies win the Second World War by wiping out the insects that caused malaria, with seemingly no ill effects on humans. After the war, it was sprayed willy-nilly across fields, in dairy barns, and even in people's homes. Thirty years later the U.S. would ban the use of DDT—only to reverse the ban in the 1990s when calls arose to bring it back to fight West Nile and malaria. What changed? 
How to Sell a Poison: The Rise, Fall, and Toxic Return of DDT (Bold Type Books, 2022) traces the surprising history of DDT’s rapid rise, infamous fall, and controversial revival to reveal to show that we’ve been taking the wrong lesson from DDT’s cautionary tale. Historian Elena Conis uncovers new evidence that it was not the shift in public opinion following the publication of Rachel Carson’s Silent Spring that led to the ban but in fact the behind-the-scenes political machinations of Big Business. She makes a compelling case that the real threat was not DDT itself but the prioritization of profits over public health. ​ If we don't change the ways we make decisions about new scientific discoveries and technologies, Conis argues, we’re doomed to keep making the same mistakes and putting people at risk—both by withholding technologies that could help them and by exposing them to dangerous chemicals without their knowledge or consent. In an age when corporations and politicians are shaping our world behind closed doors and deliberately stoking misinformation around public health issues, from pesticides to vaccines to COVID-19 to climate change, we need greater transparency and a new way of communicating about science—as a discipline of discovery that's constantly evolving, rather than a finite and immutable collection of facts—in order to combat the war on facts and protect ourselves and our environment.
﻿Claire Clark is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The story of DDT as you’ve never heard it before: a fresh look at the much-maligned chemical compound as a cautionary tale of how powerful corporations have stoked the flames of science denialism for their own benefit In the 1940s, DDT helped the Allies win the Second World War by wiping out the insects that caused malaria, with seemingly no ill effects on humans. After the war, it was sprayed willy-nilly across fields, in dairy barns, and even in people's homes. Thirty years later the U.S. would ban the use of DDT—only to reverse the ban in the 1990s when calls arose to bring it back to fight West Nile and malaria. What changed? </p><p><a href="https://bookshop.org/a/12343/9781645036746"><em>How to Sell a Poison: The Rise, Fall, and Toxic Return of DDT</em></a><em> </em>(Bold Type Books, 2022) traces the surprising history of DDT’s rapid rise, infamous fall, and controversial revival to reveal to show that we’ve been taking the wrong lesson from DDT’s cautionary tale. Historian Elena Conis uncovers new evidence that it was not the shift in public opinion following the publication of Rachel Carson’s <em>Silent Spring</em> that led to the ban but in fact the behind-the-scenes political machinations of Big Business. She makes a compelling case that the real threat was not DDT itself but the prioritization of profits over public health. ​ If we don't change the ways we make decisions about new scientific discoveries and technologies, Conis argues, we’re doomed to keep making the same mistakes and putting people at risk—both by withholding technologies that could help them and by exposing them to dangerous chemicals without their knowledge or consent. In an age when corporations and politicians are shaping our world behind closed doors and deliberately stoking misinformation around public health issues, from pesticides to vaccines to COVID-19 to climate change, we need greater transparency and a new way of communicating about science—as a discipline of discovery that's constantly evolving, rather than a finite and immutable collection of facts—in order to combat the war on facts and protect ourselves and our environment.</p><p><em>﻿</em><a href="http://www.clairedclark.com/"><em>Claire Clark</em></a><em> is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2706</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Frank Close, "Elusive: How Peter Higgs Solved the Mystery of Mass" (Basic Book, 2022)</title>
      <description>On July 4, 2012, the announcement came that one of the longest-running mysteries in physics had been solved: the Higgs boson, the missing piece in understanding why particles have mass, had finally been discovered. On the rostrum, surrounded by jostling physicists and media, was the particle's retiring namesake--the only person in history to have an existing single particle named for them. Why Peter Higgs? Drawing on years of conversations with Higgs and others, Close illuminates how an unprolific man became one of the world's most famous scientists. Close finds that scientific competition between people, institutions, and states played as much of a role in making Higgs famous as Higgs's work did.
A revelatory study of both a scientist and his era, Elusive: How Peter Higgs Solved the Mystery of Mass (Basic Book, 2022) will remake our understanding of modern physics.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 06 Jul 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>9</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Frank Close</itunes:subtitle>
      <itunes:summary>On July 4, 2012, the announcement came that one of the longest-running mysteries in physics had been solved: the Higgs boson, the missing piece in understanding why particles have mass, had finally been discovered. On the rostrum, surrounded by jostling physicists and media, was the particle's retiring namesake--the only person in history to have an existing single particle named for them. Why Peter Higgs? Drawing on years of conversations with Higgs and others, Close illuminates how an unprolific man became one of the world's most famous scientists. Close finds that scientific competition between people, institutions, and states played as much of a role in making Higgs famous as Higgs's work did.
A revelatory study of both a scientist and his era, Elusive: How Peter Higgs Solved the Mystery of Mass (Basic Book, 2022) will remake our understanding of modern physics.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>On July 4, 2012, the announcement came that one of the longest-running mysteries in physics had been solved: the Higgs boson, the missing piece in understanding why particles have mass, had finally been discovered. On the rostrum, surrounded by jostling physicists and media, was the particle's retiring namesake--the only person in history to have an existing single particle named for them. Why Peter Higgs? Drawing on years of conversations with Higgs and others, Close illuminates how an unprolific man became one of the world's most famous scientists. Close finds that scientific competition between people, institutions, and states played as much of a role in making Higgs famous as Higgs's work did.</p><p>A revelatory study of both a scientist and his era, <a href="https://bookshop.org/a/12343/9781541620803"><em>Elusive: How Peter Higgs Solved the Mystery of Mass</em></a><em> </em>(Basic Book, 2022) will remake our understanding of modern physics.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5343</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN3329253219.mp3?updated=1656705042" length="0" type="audio/mpeg"/>
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      <title>Slobodan Perovic, "From Data to Quanta: Niels Bohr’s Vision of Physics" (U Chicago Press, 2021)</title>
      <description>Niels Bohr was a central figure in quantum physics, well known for his work on atomic structure and his contributions to the Copenhagen interpretation of quantum mechanics. In From Data to Quanta: Niels Bohr’s Vision of Physics (U Chicago Press, 2021), philosopher of science Slobodan Perović explores the way Bohr practiced and understood physics, and analyzes its implications for our understanding of modern science. Perović develops a novel approach to Bohr’s understanding of physics and his method of inquiry, presenting an exploratory symbiosis of historical and philosophical analysis that uncovers the key aspects of Bohr’s philosophical vision of physics within a given historical context.
Ana Georgescu studied astrophysics and physics at Harvard University and is now a science consultant and writer based in New York City.
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      <pubDate>Wed, 22 Jun 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>124</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Slobodan Perovic</itunes:subtitle>
      <itunes:summary>Niels Bohr was a central figure in quantum physics, well known for his work on atomic structure and his contributions to the Copenhagen interpretation of quantum mechanics. In From Data to Quanta: Niels Bohr’s Vision of Physics (U Chicago Press, 2021), philosopher of science Slobodan Perović explores the way Bohr practiced and understood physics, and analyzes its implications for our understanding of modern science. Perović develops a novel approach to Bohr’s understanding of physics and his method of inquiry, presenting an exploratory symbiosis of historical and philosophical analysis that uncovers the key aspects of Bohr’s philosophical vision of physics within a given historical context.
Ana Georgescu studied astrophysics and physics at Harvard University and is now a science consultant and writer based in New York City.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Niels Bohr was a central figure in quantum physics, well known for his work on atomic structure and his contributions to the Copenhagen interpretation of quantum mechanics. In <a href="https://bookshop.org/a/12343/9780226798332"><em>From Data to Quanta: Niels Bohr’s Vision of Physics</em></a> (U Chicago Press, 2021), philosopher of science Slobodan Perović explores the way Bohr practiced and understood physics, and analyzes its implications for our understanding of modern science. Perović develops a novel approach to Bohr’s understanding of physics and his method of inquiry, presenting an exploratory symbiosis of historical and philosophical analysis that uncovers the key aspects of Bohr’s philosophical vision of physics within a given historical context.</p><p><a href="https://www.georgescu-ana.com/"><em>Ana Georgescu</em></a><em> studied astrophysics and physics at Harvard University and is now a science consultant and writer based in New York City.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2836</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Robert-Jan Smits and Rachael Pells, "Plan S for Shock: Science. Shock. Solution. Speed." (Ubiquity Press, 2022)</title>
      <description>Plan S: the open access initiative that changed the face of global research. 
Robert-Jan Smits and Rachael Pells's book Plan S for Shock: Science. Shock. Solution. Speed. (Ubiquity Press, 2022) tells the story of open access publishing - why it matters now, and for the future. In a world where information has never been so accessible, and answers are available at the touch of a fingertip, we are hungrier for the facts than ever before - something the Covid-19 crisis has brought to light. And yet, paywalls put in place by multi-billion dollar publishing houses are still preventing millions from accessing quality, scientific knowledge - and public trust in science is under threat. On 4 September 2018, a bold new initiative known as 'Plan S' was unveiled, kickstarting a world-wide shift in attitudes towards open access research. For the first time, funding agencies across continents joined forces to impose new rules on the publication of research, with the aim of one day making all research free and available to all. What followed was a debate of global proportions, as stakeholders asked: Who has the right to access publicly-funded research? Will it ever be possible to enforce change on a multi-billion dollar market dominated by five major players? Here, the scheme's founder, Robert-Jan Smits, makes a compelling case for Open Access, and reveals for the first time how he set about turning his controversial plan into reality - as well as some of the challenges faced along the way. In telling his story, Smits argues that the Covid-19 crisis has exposed the traditional academic publishing system as unsustainable.
﻿Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 21 Jun 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>123</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Robert-Jan Smits and Rachael Pells</itunes:subtitle>
      <itunes:summary>Plan S: the open access initiative that changed the face of global research. 
Robert-Jan Smits and Rachael Pells's book Plan S for Shock: Science. Shock. Solution. Speed. (Ubiquity Press, 2022) tells the story of open access publishing - why it matters now, and for the future. In a world where information has never been so accessible, and answers are available at the touch of a fingertip, we are hungrier for the facts than ever before - something the Covid-19 crisis has brought to light. And yet, paywalls put in place by multi-billion dollar publishing houses are still preventing millions from accessing quality, scientific knowledge - and public trust in science is under threat. On 4 September 2018, a bold new initiative known as 'Plan S' was unveiled, kickstarting a world-wide shift in attitudes towards open access research. For the first time, funding agencies across continents joined forces to impose new rules on the publication of research, with the aim of one day making all research free and available to all. What followed was a debate of global proportions, as stakeholders asked: Who has the right to access publicly-funded research? Will it ever be possible to enforce change on a multi-billion dollar market dominated by five major players? Here, the scheme's founder, Robert-Jan Smits, makes a compelling case for Open Access, and reveals for the first time how he set about turning his controversial plan into reality - as well as some of the challenges faced along the way. In telling his story, Smits argues that the Covid-19 crisis has exposed the traditional academic publishing system as unsustainable.
﻿Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Plan S: the open access initiative that changed the face of global research. </p><p>Robert-Jan Smits and Rachael Pells's book <a href="https://bookshop.org/a/12343/9781914481161"><em>Plan S for Shock: Science. Shock. Solution. Speed.</em></a> (Ubiquity Press, 2022) tells the story of open access publishing - why it matters now, and for the future. In a world where information has never been so accessible, and answers are available at the touch of a fingertip, we are hungrier for the facts than ever before - something the Covid-19 crisis has brought to light. And yet, paywalls put in place by multi-billion dollar publishing houses are still preventing millions from accessing quality, scientific knowledge - and public trust in science is under threat. On 4 September 2018, a bold new initiative known as 'Plan S' was unveiled, kickstarting a world-wide shift in attitudes towards open access research. For the first time, funding agencies across continents joined forces to impose new rules on the publication of research, with the aim of one day making all research free and available to all. What followed was a debate of global proportions, as stakeholders asked: Who has the right to access publicly-funded research? Will it ever be possible to enforce change on a multi-billion dollar market dominated by five major players? Here, the scheme's founder, Robert-Jan Smits, makes a compelling case for Open Access, and reveals for the first time how he set about turning his controversial plan into reality - as well as some of the challenges faced along the way. In telling his story, Smits argues that the Covid-19 crisis has exposed the traditional academic publishing system as unsustainable.</p><p><em>﻿Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3621</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[d85ca5fa-e727-11ec-8944-9faf3712ef01]]></guid>
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      <title>All About Dwarf Galaxies: A Conversation with Astronomer Charlotte Christensen</title>
      <description>Today I talked to astronomer Charlotte Christensen of Grinnell College. She studies (among other things) dwarf galaxies. 
Dwarf galaxies, galaxies with masses about 10% that of the Milky Way or smaller, such as the Magellanic Clouds, are perfect laboratories for studying galaxy evolution. The small gravitational potentials of dwarf galaxies make them uniquely sensitive environments for understanding the physics of galaxy formation, including the processes that drive gas accretion, gas loss, and star formation. Dwarf satellites of the Milky Way or similar nearby galaxies may help constrain these processes, but only if the effect of the large halo environment the dwarf galaxies exist in can be well understood. 
﻿Marshall Poe is the founder and editor of the New Books Network. He can be reached at marshallpoe@newbooksnetwork.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 15 Jun 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>14</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Charlotte Christensen</itunes:subtitle>
      <itunes:summary>Today I talked to astronomer Charlotte Christensen of Grinnell College. She studies (among other things) dwarf galaxies. 
Dwarf galaxies, galaxies with masses about 10% that of the Milky Way or smaller, such as the Magellanic Clouds, are perfect laboratories for studying galaxy evolution. The small gravitational potentials of dwarf galaxies make them uniquely sensitive environments for understanding the physics of galaxy formation, including the processes that drive gas accretion, gas loss, and star formation. Dwarf satellites of the Milky Way or similar nearby galaxies may help constrain these processes, but only if the effect of the large halo environment the dwarf galaxies exist in can be well understood. 
﻿Marshall Poe is the founder and editor of the New Books Network. He can be reached at marshallpoe@newbooksnetwork.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Today I talked to astronomer <a href="https://www.grinnell.edu/user/christenc">Charlotte Christensen</a> of Grinnell College. She studies (among other things) dwarf galaxies. </p><p>Dwarf galaxies, galaxies with masses about 10% that of the Milky Way or smaller, such as the Magellanic Clouds, are perfect laboratories for studying galaxy evolution. The small gravitational potentials of dwarf galaxies make them uniquely sensitive environments for understanding the physics of galaxy formation, including the processes that drive gas accretion, gas loss, and star formation. Dwarf satellites of the Milky Way or similar nearby galaxies may help constrain these processes, but only if the effect of the large halo environment the dwarf galaxies exist in can be well understood. </p><p><em>﻿Marshall Poe is the founder and editor of the New Books Network. He can be reached at marshallpoe@newbooksnetwork.com.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1841</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[698a0820-ec13-11ec-b349-6f98f8ee135e]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8546178302.mp3?updated=1655232958" length="0" type="audio/mpeg"/>
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    <item>
      <title>Albert Folch, "Hidden in Plain Sight: The History, Science, and Engineering of Microfluidic Technology" (MIT Press, 2022)</title>
      <description>Hidden from view, microfluidics underlies a variety of devices that are essential to our lives, from inkjet printers to glucometers for the monitoring of diabetes. Microfluidics--which refers to the technology of miniature fluidic devices and the study of fluids at submillimeter levels--is invisible to most of us because it is hidden beneath ingenious user interfaces. In this book, Albert Folch, a leading researcher in microfluidics, describes the development and use of key microfluidic devices. He explains not only the technology but also the efforts, teams, places, and circumstances that enabled these inventions.
Folch reports, for example, that the inkjet printer was one of the first microfluidic devices invented, and traces its roots back to nineteenth-century discoveries in the behavior of fluid jets. He also describes how rapid speed microfluidic DNA sequencers have enabled the sequencing of animal, plant, and microbial species genomes; organs on chips facilitate direct tests of drugs on human tissue, leapfrogging over the usual stage of animal testing; at-home pregnancy tests are based on clever microfluidic principles; microfluidics can be used to detect cancer cells in the early stages of metastasis; and the same technology that shoots droplets of ink on paper in inkjet printers enables 3D printers to dispense layers of polymers. 
In Hidden in Plain Sight: The History, Science, and Engineering of Microfluidic Technology (MIT Press, 2022), Folch tells the stories behind these devices in an engaging style, accessible to nonspecialists. More than 100 color illustrations show readers amazing images of microfluids under the microscope.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 15 Jun 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>121</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Albert Folch</itunes:subtitle>
      <itunes:summary>Hidden from view, microfluidics underlies a variety of devices that are essential to our lives, from inkjet printers to glucometers for the monitoring of diabetes. Microfluidics--which refers to the technology of miniature fluidic devices and the study of fluids at submillimeter levels--is invisible to most of us because it is hidden beneath ingenious user interfaces. In this book, Albert Folch, a leading researcher in microfluidics, describes the development and use of key microfluidic devices. He explains not only the technology but also the efforts, teams, places, and circumstances that enabled these inventions.
Folch reports, for example, that the inkjet printer was one of the first microfluidic devices invented, and traces its roots back to nineteenth-century discoveries in the behavior of fluid jets. He also describes how rapid speed microfluidic DNA sequencers have enabled the sequencing of animal, plant, and microbial species genomes; organs on chips facilitate direct tests of drugs on human tissue, leapfrogging over the usual stage of animal testing; at-home pregnancy tests are based on clever microfluidic principles; microfluidics can be used to detect cancer cells in the early stages of metastasis; and the same technology that shoots droplets of ink on paper in inkjet printers enables 3D printers to dispense layers of polymers. 
In Hidden in Plain Sight: The History, Science, and Engineering of Microfluidic Technology (MIT Press, 2022), Folch tells the stories behind these devices in an engaging style, accessible to nonspecialists. More than 100 color illustrations show readers amazing images of microfluids under the microscope.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Hidden from view, microfluidics underlies a variety of devices that are essential to our lives, from inkjet printers to glucometers for the monitoring of diabetes. Microfluidics--which refers to the technology of miniature fluidic devices and the study of fluids at submillimeter levels--is invisible to most of us because it is hidden beneath ingenious user interfaces. In this book, Albert Folch, a leading researcher in microfluidics, describes the development and use of key microfluidic devices. He explains not only the technology but also the efforts, teams, places, and circumstances that enabled these inventions.</p><p>Folch reports, for example, that the inkjet printer was one of the first microfluidic devices invented, and traces its roots back to nineteenth-century discoveries in the behavior of fluid jets. He also describes how rapid speed microfluidic DNA sequencers have enabled the sequencing of animal, plant, and microbial species genomes; organs on chips facilitate direct tests of drugs on human tissue, leapfrogging over the usual stage of animal testing; at-home pregnancy tests are based on clever microfluidic principles; microfluidics can be used to detect cancer cells in the early stages of metastasis; and the same technology that shoots droplets of ink on paper in inkjet printers enables 3D printers to dispense layers of polymers. </p><p>In <a href="https://bookshop.org/a/12343/9780262046893"><em>Hidden in Plain Sight: The History, Science, and Engineering of Microfluidic Technology</em></a><em> </em>(MIT Press, 2022), Folch tells the stories behind these devices in an engaging style, accessible to nonspecialists. More than 100 color illustrations show readers amazing images of microfluids under the microscope.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3656</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Timothy J. Jorgensen, "Spark: The Life of Electricity and the Electricity of Life" (Princeton UP, 2021)</title>
      <description>When we think of electricity, we likely imagine the energy humming inside our home appliances or lighting up our electronic devices--or perhaps we envision the lightning-streaked clouds of a stormy sky. But electricity is more than an external source of power, heat, or illumination. Life at its essence is nothing if not electrical.
The story of how we came to understand electricity's essential role in all life is rooted in our observations of its influences on the body--influences governed by the body's central nervous system. Spark: The Life of Electricity and the Electricity of Life (Princeton UP, 2021) explains the science of electricity from this fresh, biological perspective. Through vivid tales of scientists and individuals--from Benjamin Franklin to Elon Musk--Timothy Jorgensen shows how our views of electricity and the nervous system evolved in tandem, and how progress in one area enabled advancements in the other. He explains how these developments have allowed us to understand--and replicate--the ways electricity enables the body's essential functions of sight, hearing, touch, and movement itself.
Throughout, Jorgensen examines our fascination with electricity and how it can help or harm us. He explores a broad range of topics and events, including the Nobel Prize-winning discoveries of the electron and neuron, the history of experimentation involving electricity's effects on the body, and recent breakthroughs in the use of electricity to treat disease.
Filled with gripping adventures in scientific exploration, Spark offers an indispensable look at electricity, how it works, and how it animates our lives from within and without.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 10 Jun 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>122</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Timothy J. Jorgensen</itunes:subtitle>
      <itunes:summary>When we think of electricity, we likely imagine the energy humming inside our home appliances or lighting up our electronic devices--or perhaps we envision the lightning-streaked clouds of a stormy sky. But electricity is more than an external source of power, heat, or illumination. Life at its essence is nothing if not electrical.
The story of how we came to understand electricity's essential role in all life is rooted in our observations of its influences on the body--influences governed by the body's central nervous system. Spark: The Life of Electricity and the Electricity of Life (Princeton UP, 2021) explains the science of electricity from this fresh, biological perspective. Through vivid tales of scientists and individuals--from Benjamin Franklin to Elon Musk--Timothy Jorgensen shows how our views of electricity and the nervous system evolved in tandem, and how progress in one area enabled advancements in the other. He explains how these developments have allowed us to understand--and replicate--the ways electricity enables the body's essential functions of sight, hearing, touch, and movement itself.
Throughout, Jorgensen examines our fascination with electricity and how it can help or harm us. He explores a broad range of topics and events, including the Nobel Prize-winning discoveries of the electron and neuron, the history of experimentation involving electricity's effects on the body, and recent breakthroughs in the use of electricity to treat disease.
Filled with gripping adventures in scientific exploration, Spark offers an indispensable look at electricity, how it works, and how it animates our lives from within and without.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>When we think of electricity, we likely imagine the energy humming inside our home appliances or lighting up our electronic devices--or perhaps we envision the lightning-streaked clouds of a stormy sky. But electricity is more than an external source of power, heat, or illumination. Life at its essence is nothing if not electrical.</p><p>The story of how we came to understand electricity's essential role in all life is rooted in our observations of its influences on the body--influences governed by the body's central nervous system. <a href="https://bookshop.org/a/12343/9780691197838"><em>Spark: The Life of Electricity and the Electricity of Life</em></a><em> (</em>Princeton UP, 2021) explains the science of electricity from this fresh, biological perspective. Through vivid tales of scientists and individuals--from Benjamin Franklin to Elon Musk--Timothy Jorgensen shows how our views of electricity and the nervous system evolved in tandem, and how progress in one area enabled advancements in the other. He explains how these developments have allowed us to understand--and replicate--the ways electricity enables the body's essential functions of sight, hearing, touch, and movement itself.</p><p>Throughout, Jorgensen examines our fascination with electricity and how it can help or harm us. He explores a broad range of topics and events, including the Nobel Prize-winning discoveries of the electron and neuron, the history of experimentation involving electricity's effects on the body, and recent breakthroughs in the use of electricity to treat disease.</p><p>Filled with gripping adventures in scientific exploration, <em>Spark</em> offers an indispensable look at electricity, how it works, and how it animates our lives from within and without.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3827</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    </item>
    <item>
      <title>Gernot Wagner, "Geoengineering: The Gamble" (Polity, 2021)</title>
      <description>Stabilizing the world's climates means cutting carbon dioxide pollution. There's no way around it. But what if that's not enough? What if it's too difficult to accomplish in the time allotted or, worse, what if it's so late in the game that even cutting carbon emissions to zero, tomorrow, wouldn't do?
Enter solar geoengineering. The principle is simple: attempt to cool Earth by reflecting more sunlight back into space. The primary mechanism, shooting particles into the upper atmosphere, implies more pollution, not less. If that doesn't sound scary, it should. There are lots of risks, unknowns, and unknowables.
In Geoengineering: The Gamble (Polity, 2021), climate economist Gernot Wagner provides a balanced take on the possible benefits and all-too-real risks, especially the so-called "moral hazard" that researching or even just discussing (solar) geoengineering would undermine the push to cut carbon emissions in the first place. Despite those risks, he argues, solar geoengineering may only be a matter of time. Not if, but when.
As the founding executive director of Harvard's Solar Geoengineering Research Program, Wagner explores scenarios of a geoengineered future, offering an inside-view of the research already under way and the actions the world must take to guide it in a productive direction.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 07 Jun 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>114</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Gernot Wagner</itunes:subtitle>
      <itunes:summary>Stabilizing the world's climates means cutting carbon dioxide pollution. There's no way around it. But what if that's not enough? What if it's too difficult to accomplish in the time allotted or, worse, what if it's so late in the game that even cutting carbon emissions to zero, tomorrow, wouldn't do?
Enter solar geoengineering. The principle is simple: attempt to cool Earth by reflecting more sunlight back into space. The primary mechanism, shooting particles into the upper atmosphere, implies more pollution, not less. If that doesn't sound scary, it should. There are lots of risks, unknowns, and unknowables.
In Geoengineering: The Gamble (Polity, 2021), climate economist Gernot Wagner provides a balanced take on the possible benefits and all-too-real risks, especially the so-called "moral hazard" that researching or even just discussing (solar) geoengineering would undermine the push to cut carbon emissions in the first place. Despite those risks, he argues, solar geoengineering may only be a matter of time. Not if, but when.
As the founding executive director of Harvard's Solar Geoengineering Research Program, Wagner explores scenarios of a geoengineered future, offering an inside-view of the research already under way and the actions the world must take to guide it in a productive direction.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Stabilizing the world's climates means cutting carbon dioxide pollution. There's no way around it. But what if that's not enough? What if it's too difficult to accomplish in the time allotted or, worse, what if it's so late in the game that even cutting carbon emissions to zero, tomorrow, wouldn't do?</p><p>Enter solar geoengineering. The principle is simple: attempt to cool Earth by reflecting more sunlight back into space. The primary mechanism, shooting particles into the upper atmosphere, implies more pollution, not less. If that doesn't sound scary, it should. There are lots of risks, unknowns, and unknowables.</p><p>In <a href="https://bookshop.org/a/12343/9781509543069"><em>Geoengineering: The Gamble</em></a><em> </em>(Polity, 2021), climate economist Gernot Wagner provides a balanced take on the possible benefits and all-too-real risks, especially the so-called "moral hazard" that researching or even just discussing (solar) geoengineering would undermine the push to cut carbon emissions in the first place. Despite those risks, he argues, solar geoengineering may only be a matter of time. Not <em>if</em>, but <em>when</em>.</p><p>As the founding executive director of Harvard's Solar Geoengineering Research Program, Wagner explores scenarios of a geoengineered future, offering an inside-view of the research already under way and the actions the world must take to guide it in a productive direction.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3515</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Elisabeth Ervin-Blankenheim, "Song of the Earth: Understanding Geology and Why It Matters" (Oxford UP, 2021)</title>
      <description>In today’s podcast, Elisabeth Ervin-Blankenheim explains how understanding harmonics of the earth provides a forward-thinking methodology to confront the challenges presented by the massive changes in the climate. In her book Song of the Earth: Understanding Geology and Why it Matters (Oxford University Press, 2021), Ervin-Blankenheim documents the history of geology, a Western epistemological exploit, properly contextualizing how geologists know what they know. Song of the Earth is framed the around three primary tenants: geologic time, plate tectonics and evolution. Through her magnificent use of brevity and clarity, the narrative, supported by the three tenants, documents the “biography of the Earth” consisting of a multiplicity of interactions occurring between geosphere-human, hydrosphere-human, biosphere-human spanning millions of years. Ervin-Blankenheim impresses throughout her narrative that life today represents only .1% of life that has existed throughout the history of the planet, yet we cannot understand the changes such as extinction without recognizing how the earth impacts life and how life impacts the earth. Without mindful recognition about the interconnectivity of ecosystem, the mechanics of extinction and survival will continue to remain opaque.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 31 May 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>111</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Elisabeth Ervin-Blankenheim</itunes:subtitle>
      <itunes:summary>In today’s podcast, Elisabeth Ervin-Blankenheim explains how understanding harmonics of the earth provides a forward-thinking methodology to confront the challenges presented by the massive changes in the climate. In her book Song of the Earth: Understanding Geology and Why it Matters (Oxford University Press, 2021), Ervin-Blankenheim documents the history of geology, a Western epistemological exploit, properly contextualizing how geologists know what they know. Song of the Earth is framed the around three primary tenants: geologic time, plate tectonics and evolution. Through her magnificent use of brevity and clarity, the narrative, supported by the three tenants, documents the “biography of the Earth” consisting of a multiplicity of interactions occurring between geosphere-human, hydrosphere-human, biosphere-human spanning millions of years. Ervin-Blankenheim impresses throughout her narrative that life today represents only .1% of life that has existed throughout the history of the planet, yet we cannot understand the changes such as extinction without recognizing how the earth impacts life and how life impacts the earth. Without mindful recognition about the interconnectivity of ecosystem, the mechanics of extinction and survival will continue to remain opaque.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In today’s podcast, Elisabeth Ervin-Blankenheim explains how understanding harmonics of the earth provides a forward-thinking methodology to confront the challenges presented by the massive changes in the climate. In her book <a href="https://bookshop.org/a/12343/9780197502464"><em>Song of the Earth: Understanding Geology and Why it Matters</em></a> (Oxford University Press, 2021), Ervin-Blankenheim documents the history of geology, a Western epistemological exploit, properly contextualizing how geologists know what they know. <em>Song of the Earth </em>is framed the around three primary tenants: geologic time, plate tectonics and evolution. Through her magnificent use of brevity and clarity, the narrative, supported by the three tenants, documents the “biography of the Earth” consisting of a multiplicity of interactions occurring between geosphere-human, hydrosphere-human, biosphere-human spanning millions of years. Ervin-Blankenheim impresses throughout her narrative that life today represents only .1% of life that has existed throughout the history of the planet, yet we cannot understand the changes such as extinction without recognizing how the earth impacts life and how life impacts the earth. Without mindful recognition about the interconnectivity of ecosystem, the mechanics of extinction and survival will continue to remain opaque.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3538</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[92c5ef88-db97-11ec-891e-0b605b35aa03]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6319445492.mp3?updated=1653421004" length="0" type="audio/mpeg"/>
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    <item>
      <title>Adam M. Romero, "Economic Poisoning: Industrial Waste and the Chemicalization of American Agriculture" (U California Press, 2021)</title>
      <description>The toxicity of pesticides to the environment and humans is often framed as an unfortunate effect of their benefits to agricultural production. In Economic Poisoning: Industrial Waste and the Chemicalization of American Agriculture (U California Press, 2021), Adam M. Romero upends this narrative and provides a fascinating new history of pesticides in American industrial agriculture prior to World War II. Through impeccable archival research, Romero reveals the ways in which late nineteenth- and early twentieth-century American agriculture, especially in California, functioned less as a market for novel pest-killing chemical products and more as a sink for the accumulating toxic wastes of mining, oil production, and chemical manufacturing. Connecting farming ecosystems to technology and the economy, Romero provides an intriguing reconceptualization of pesticides that forces readers to rethink assumptions about food, industry, and the relationship between human and nonhuman environments.
Eyad Houssami makes theatre and has participated in the revitalization of an ancient organic farm in southern Lebanon. He is editor of the Arabic-English book Doomed by Hope: Essays on Arab Theatre (Pluto/Dar Al Adab) and was editor-at-large of Portal 9, a bilingual literary and academic journal about urbanism. His doctoral research project on ecology and agriculture in post-independence Lebanon sat the University of Leeds and this work are supported by the UK Arts &amp; Humanities Research Council (grant number AH/R012733/1) through the White Rose College of the Arts &amp; Humanities.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 30 May 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>115</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Adam M. Romero</itunes:subtitle>
      <itunes:summary>The toxicity of pesticides to the environment and humans is often framed as an unfortunate effect of their benefits to agricultural production. In Economic Poisoning: Industrial Waste and the Chemicalization of American Agriculture (U California Press, 2021), Adam M. Romero upends this narrative and provides a fascinating new history of pesticides in American industrial agriculture prior to World War II. Through impeccable archival research, Romero reveals the ways in which late nineteenth- and early twentieth-century American agriculture, especially in California, functioned less as a market for novel pest-killing chemical products and more as a sink for the accumulating toxic wastes of mining, oil production, and chemical manufacturing. Connecting farming ecosystems to technology and the economy, Romero provides an intriguing reconceptualization of pesticides that forces readers to rethink assumptions about food, industry, and the relationship between human and nonhuman environments.
Eyad Houssami makes theatre and has participated in the revitalization of an ancient organic farm in southern Lebanon. He is editor of the Arabic-English book Doomed by Hope: Essays on Arab Theatre (Pluto/Dar Al Adab) and was editor-at-large of Portal 9, a bilingual literary and academic journal about urbanism. His doctoral research project on ecology and agriculture in post-independence Lebanon sat the University of Leeds and this work are supported by the UK Arts &amp; Humanities Research Council (grant number AH/R012733/1) through the White Rose College of the Arts &amp; Humanities.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The toxicity of pesticides to the environment and humans is often framed as an unfortunate effect of their benefits to agricultural production. In <a href="https://bookshop.org/a/12343/9780520381551"><em>Economic Poisoning: Industrial Waste and the Chemicalization of American Agriculture</em></a><em> </em>(U California Press, 2021), Adam M. Romero upends this narrative and provides a fascinating new history of pesticides in American industrial agriculture prior to World War II. Through impeccable archival research, Romero reveals the ways in which late nineteenth- and early twentieth-century American agriculture, especially in California, functioned less as a market for novel pest-killing chemical products and more as a sink for the accumulating toxic wastes of mining, oil production, and chemical manufacturing. Connecting farming ecosystems to technology and the economy, Romero provides an intriguing reconceptualization of pesticides that forces readers to rethink assumptions about food, industry, and the relationship between human and nonhuman environments.</p><p><em>Eyad Houssami makes theatre and has participated in the revitalization of an ancient organic farm in southern Lebanon. He is editor of the Arabic-English book Doomed by Hope: Essays on Arab Theatre (Pluto/Dar Al Adab) and was editor-at-large of Portal 9, a bilingual literary and academic journal about urbanism. His doctoral research project on ecology and agriculture in post-independence Lebanon sat the University of Leeds and this work are supported by the UK Arts &amp; Humanities Research Council (grant number AH/R012733/1) through the White Rose College of the Arts &amp; Humanities.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2493</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Greg Brennecka, "Impact: How Rocks from Space Led to Life, Culture, and Donkey Kong" (William Morrow, 2022)</title>
      <description>The Solar System. Dinosaurs. Donkey Kong. What is the missing link? Surprisingly enough, it's meteorites. They explain our past, constructed our present, and could define our future.
Impact: How Rocks from Space Led to Life, Culture, and Donkey Kong (William Morrow, 2022) argues that Earth would be a lifeless, inhospitable piece of rock without being fortuitously assaulted with meteorites throughout the history of the planet. These bombardments transformed Earth's early atmosphere and delivered the complex organic molecules that allowed life to develop on our planet. While meteorites have provided the raw materials for life to thrive, they have radically devastated life as well, most famously killing off the dinosaurs and paving the way for humans to evolve to where we are today.
As noted meteoriticist Greg Brennecka explains, meteorites did not just set us on the path to becoming human, they helped direct the development of human culture. Meteorites have influenced humanity since the start of civilization. Over the centuries, meteorite falls and other cosmic cinema have started (and stopped) wars, terrified millions, and inspired religions throughout the world.
With humor and an infectious enthusiasm, Brennecka reveals previously untold but important stories sure to delight and inform readers about the most important rocks on Earth.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 30 May 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>120</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Greg Brennecka</itunes:subtitle>
      <itunes:summary>The Solar System. Dinosaurs. Donkey Kong. What is the missing link? Surprisingly enough, it's meteorites. They explain our past, constructed our present, and could define our future.
Impact: How Rocks from Space Led to Life, Culture, and Donkey Kong (William Morrow, 2022) argues that Earth would be a lifeless, inhospitable piece of rock without being fortuitously assaulted with meteorites throughout the history of the planet. These bombardments transformed Earth's early atmosphere and delivered the complex organic molecules that allowed life to develop on our planet. While meteorites have provided the raw materials for life to thrive, they have radically devastated life as well, most famously killing off the dinosaurs and paving the way for humans to evolve to where we are today.
As noted meteoriticist Greg Brennecka explains, meteorites did not just set us on the path to becoming human, they helped direct the development of human culture. Meteorites have influenced humanity since the start of civilization. Over the centuries, meteorite falls and other cosmic cinema have started (and stopped) wars, terrified millions, and inspired religions throughout the world.
With humor and an infectious enthusiasm, Brennecka reveals previously untold but important stories sure to delight and inform readers about the most important rocks on Earth.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The Solar System. Dinosaurs. Donkey Kong. What is the missing link? Surprisingly enough, it's meteorites. They explain our past, constructed our present, and could define our future.</p><p><a href="https://bookshop.org/a/12343/9780063078925"><em>Impact: How Rocks from Space Led to Life, Culture, and Donkey Kong</em></a><em> </em>(William Morrow, 2022) argues that Earth would be a lifeless, inhospitable piece of rock without being fortuitously assaulted with meteorites throughout the history of the planet. These bombardments transformed Earth's early atmosphere and delivered the complex organic molecules that allowed life to develop on our planet. While meteorites have provided the raw materials for life to thrive, they have radically devastated life as well, most famously killing off the dinosaurs and paving the way for humans to evolve to where we are today.</p><p>As noted meteoriticist Greg Brennecka explains, meteorites did not just set us on the path to becoming human, they helped direct the development of human culture. Meteorites have influenced humanity since the start of civilization. Over the centuries, meteorite falls and other cosmic cinema have started (and stopped) wars, terrified millions, and inspired religions throughout the world.</p><p>With humor and an infectious enthusiasm, Brennecka reveals previously untold but important stories sure to delight and inform readers about the most important rocks on Earth.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2646</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Jim Al-Khalili, "The Joy of Science" (Princeton UP, 2022)</title>
      <description>Today’s world is unpredictable and full of contradictions, and navigating its complexities while trying to make the best decisions is far from easy. The Joy of Science (Princeton UP, 2022) presents 8 short lessons on how to unlock the clarity, empowerment, and joy of thinking and living a little more scientifically. In this brief guide to leading a more rational life, acclaimed physicist Jim Al-Khalili invites readers to engage with the world as scientists have been trained to do. The scientific method has served humankind well in its quest to see things as they really are, and underpinning the scientific method are core principles that can help us all navigate modern life more confidently. Discussing the nature of truth and uncertainty, the role of doubt, the pros and cons of simplification, the value of guarding against bias, the importance of evidence-based thinking, and more, Al-Khalili shows how the powerful ideas at the heart of the scientific method are deeply relevant to the complicated times we live in and the difficult choices we make. Read this book and discover the joy of science. It will empower you to think more objectively, see through the fog of your own preexisting beliefs, and lead a more fulfilling life.
Jim Al-Khalili is Distinguished Professor of Theoretical Physics at the University of Surrey and one of Britain’s best-known science communicators. He has written numerous books, including The World According to Physics (Princeton); Quantum: A Guide for the Perplexed; and Life on the Edge: The Coming of Age of Quantum Biology. He is a fellow of the Royal Society and lives in Southsea, England. Twitter @jimalkhalili
Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube Channel. Twitter.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 19 May 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>119</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Jim Al-Khalili</itunes:subtitle>
      <itunes:summary>Today’s world is unpredictable and full of contradictions, and navigating its complexities while trying to make the best decisions is far from easy. The Joy of Science (Princeton UP, 2022) presents 8 short lessons on how to unlock the clarity, empowerment, and joy of thinking and living a little more scientifically. In this brief guide to leading a more rational life, acclaimed physicist Jim Al-Khalili invites readers to engage with the world as scientists have been trained to do. The scientific method has served humankind well in its quest to see things as they really are, and underpinning the scientific method are core principles that can help us all navigate modern life more confidently. Discussing the nature of truth and uncertainty, the role of doubt, the pros and cons of simplification, the value of guarding against bias, the importance of evidence-based thinking, and more, Al-Khalili shows how the powerful ideas at the heart of the scientific method are deeply relevant to the complicated times we live in and the difficult choices we make. Read this book and discover the joy of science. It will empower you to think more objectively, see through the fog of your own preexisting beliefs, and lead a more fulfilling life.
Jim Al-Khalili is Distinguished Professor of Theoretical Physics at the University of Surrey and one of Britain’s best-known science communicators. He has written numerous books, including The World According to Physics (Princeton); Quantum: A Guide for the Perplexed; and Life on the Edge: The Coming of Age of Quantum Biology. He is a fellow of the Royal Society and lives in Southsea, England. Twitter @jimalkhalili
Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. YouTube Channel. Twitter.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Today’s world is unpredictable and full of contradictions, and navigating its complexities while trying to make the best decisions is far from easy. <a href="https://bookshop.org/a/12343/9780691211572"><em>The Joy of Science</em></a> (Princeton UP, 2022) presents 8 short lessons on how to unlock the clarity, empowerment, and joy of thinking and living a little more scientifically. In this brief guide to leading a more rational life, acclaimed physicist Jim Al-Khalili invites readers to engage with the world as scientists have been trained to do. The scientific method has served humankind well in its quest to see things as they really are, and underpinning the scientific method are core principles that can help us all navigate modern life more confidently. Discussing the nature of truth and uncertainty, the role of doubt, the pros and cons of simplification, the value of guarding against bias, the importance of evidence-based thinking, and more, Al-Khalili shows how the powerful ideas at the heart of the scientific method are deeply relevant to the complicated times we live in and the difficult choices we make. Read this book and discover the joy of science. It will empower you to think more objectively, see through the fog of your own preexisting beliefs, and lead a more fulfilling life.</p><p><strong>Jim Al-Khalili</strong> is Distinguished Professor of Theoretical Physics at the University of Surrey and one of Britain’s best-known science communicators. He has written numerous books, including <em>The World According to Physics</em> (Princeton); <em>Quantum: A Guide for the Perplexed</em>; and <em>Life on the Edge: The Coming of Age of Quantum Biology</em>. He is a fellow of the Royal Society and lives in Southsea, England. Twitter @jimalkhalili</p><p><em>Morteza Hajizadeh is a Ph.D. graduate in English from the University of Auckland in New Zealand. His research interests are Cultural Studies; Critical Theory; Environmental History; Medieval (Intellectual) History; Gothic Studies; 18th and 19th Century British Literature. </em><a href="https://www.youtube.com/user/a48266/videos"><em>YouTube Channel</em></a><em>. </em><a href="https://twitter.com/TalkArtCulture"><em>Twitter</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2893</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN7859263778.mp3?updated=1652441364" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Will Kinney, "An Infinity of Worlds: Cosmic Inflation and the Beginning of the Universe" (MIT Press, 2022)</title>
      <description>In the beginning was the Big Bang: an unimaginably hot fire almost fourteen billion years ago in which the first elements were forged. The physical theory of the hot nascent universe--the Big Bang--was one of the most consequential developments in twentieth-century science. And yet it leaves many questions unanswered: Why is the universe so big? Why is it so old? What is the origin of structure in the cosmos? In An Infinity of Worlds: Cosmic Inflation and the Beginning of the Universe (MIT Press, 2022), physicist Will Kinney explains a more recent theory that may hold the answers to these questions and even explain the ultimate origins of the universe: cosmic inflation, before the primordial fire of the Big Bang.
Kinney argues that cosmic inflation is a transformational idea in cosmology, changing our picture of the basic structure of the cosmos and raising unavoidable questions about what we mean by a scientific theory. He explains that inflation is a remarkable unification of inner space and outer space, in which the physics of the very large (the cosmos) meets the physics of the very small (elementary particles and fields), closing in a full circle at the first moment of time. With quantum uncertainty its fundamental feature, this new picture of cosmic origins introduces the possibility that the origin of the universe was of a quantum nature.
Kinney considers the consequences of eternal cosmic inflation. Can we come to terms with the possibility that our entire observable universe is one of infinitely many, forever hidden from our view?
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 16 May 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>1</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Will Kinney</itunes:subtitle>
      <itunes:summary>In the beginning was the Big Bang: an unimaginably hot fire almost fourteen billion years ago in which the first elements were forged. The physical theory of the hot nascent universe--the Big Bang--was one of the most consequential developments in twentieth-century science. And yet it leaves many questions unanswered: Why is the universe so big? Why is it so old? What is the origin of structure in the cosmos? In An Infinity of Worlds: Cosmic Inflation and the Beginning of the Universe (MIT Press, 2022), physicist Will Kinney explains a more recent theory that may hold the answers to these questions and even explain the ultimate origins of the universe: cosmic inflation, before the primordial fire of the Big Bang.
Kinney argues that cosmic inflation is a transformational idea in cosmology, changing our picture of the basic structure of the cosmos and raising unavoidable questions about what we mean by a scientific theory. He explains that inflation is a remarkable unification of inner space and outer space, in which the physics of the very large (the cosmos) meets the physics of the very small (elementary particles and fields), closing in a full circle at the first moment of time. With quantum uncertainty its fundamental feature, this new picture of cosmic origins introduces the possibility that the origin of the universe was of a quantum nature.
Kinney considers the consequences of eternal cosmic inflation. Can we come to terms with the possibility that our entire observable universe is one of infinitely many, forever hidden from our view?
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In the beginning was the Big Bang: an unimaginably hot fire almost fourteen billion years ago in which the first elements were forged. The physical theory of the hot nascent universe--the Big Bang--was one of the most consequential developments in twentieth-century science. And yet it leaves many questions unanswered: Why is the universe so big? Why is it so old? What is the origin of structure in the cosmos? In <a href="https://bookshop.org/a/12343/9780262046480"><em>An Infinity of Worlds: Cosmic Inflation and the Beginning of the Universe</em></a><em> </em>(MIT Press, 2022), physicist Will Kinney explains a more recent theory that may hold the answers to these questions and even explain the ultimate origins of the universe: cosmic inflation, before the primordial fire of the Big Bang.</p><p>Kinney argues that cosmic inflation is a transformational idea in cosmology, changing our picture of the basic structure of the cosmos and raising unavoidable questions about what we mean by a scientific theory. He explains that inflation is a remarkable unification of inner space and outer space, in which the physics of the very large (the cosmos) meets the physics of the very small (elementary particles and fields), closing in a full circle at the first moment of time. With quantum uncertainty its fundamental feature, this new picture of cosmic origins introduces the possibility that the origin of the universe was of a quantum nature.</p><p>Kinney considers the consequences of eternal cosmic inflation. Can we come to terms with the possibility that our entire observable universe is one of infinitely many, forever hidden from our view?</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2954</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[a56c94c2-cfd3-11ec-8150-7be6cd8ffcbc]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6158711517.mp3?updated=1652128849" length="0" type="audio/mpeg"/>
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    <item>
      <title>Maia Weinstock, "Carbon Queen: The Remarkable Life of Nanoscience Pioneer Mildred Dresselhaus" (MIT Press, 2022)</title>
      <description>Carbon Queen: The Remarkable Life of Nanoscience Pioneer Mildred Dresselhaus (MIT Press, 2022) follows Mildred Dresselhaus (or Millie, as everyone calls her) from her childhood in New York City to her final years in Cambridge. It focuses on her scientific achievements, but also rightfully presents her as a multi-hyphenate: being a resilient student, an adaptive researcher, a professor, an administrator, an advocate, a fundraiser, a patent owner, a book author. The accolades are plentiful and her involvement in science seemingly boundless.
Maia Weinstock masterfully blends anecdotes and scientific explanations into the life story of a truly phenomenal scientist.
In this episode of the podcast, we discuss Millie’s multifaceted career, as well as the process of putting the book together, and Maia’s history course on women in science.
Ana Georgescu studied astrophysics and physics at Harvard University and is now a science consultant and writer based in New York City.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 29 Apr 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>118</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Maia Weinstock</itunes:subtitle>
      <itunes:summary>Carbon Queen: The Remarkable Life of Nanoscience Pioneer Mildred Dresselhaus (MIT Press, 2022) follows Mildred Dresselhaus (or Millie, as everyone calls her) from her childhood in New York City to her final years in Cambridge. It focuses on her scientific achievements, but also rightfully presents her as a multi-hyphenate: being a resilient student, an adaptive researcher, a professor, an administrator, an advocate, a fundraiser, a patent owner, a book author. The accolades are plentiful and her involvement in science seemingly boundless.
Maia Weinstock masterfully blends anecdotes and scientific explanations into the life story of a truly phenomenal scientist.
In this episode of the podcast, we discuss Millie’s multifaceted career, as well as the process of putting the book together, and Maia’s history course on women in science.
Ana Georgescu studied astrophysics and physics at Harvard University and is now a science consultant and writer based in New York City.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://bookshop.org/a/12343/9780262046435"><em>Carbon Queen: The Remarkable Life of Nanoscience Pioneer Mildred Dresselhaus</em></a><em> </em>(MIT Press, 2022) follows Mildred Dresselhaus (or Millie, as everyone calls her) from her childhood in New York City to her final years in Cambridge. It focuses on her scientific achievements, but also rightfully presents her as a multi-hyphenate: being a resilient student, an adaptive researcher, a professor, an administrator, an advocate, a fundraiser, a patent owner, a book author. The accolades are plentiful and her involvement in science seemingly boundless.</p><p>Maia Weinstock masterfully blends anecdotes and scientific explanations into the life story of a truly phenomenal scientist.</p><p>In this episode of the podcast, we discuss Millie’s multifaceted career, as well as the process of putting the book together, and Maia’s history course on women in science.</p><p><a href="https://www.georgescu-ana.com/"><em>Ana Georgescu</em></a><em> studied astrophysics and physics at Harvard University and is now a science consultant and writer based in New York City.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2546</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[c791736c-c1b7-11ec-857b-473ee277c4f5]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8778358398.mp3?updated=1650576646" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Pandemic Perspectives 8: Covid and the Embrace of the Biological World</title>
      <description>In this Pandemic Perspectives Podcast, Ideas Roadshow founder and host Howard Burton talks to renowned UC San Diego neurophilosopher Patricia Churchland about the importance of communicating science, the wonders of the biological world and the dangers of wishful thinking.
Ideas Roadshow's Pandemic Perspectives Project consists of three distinct, reinforcing elements: a documentary film (Pandemic Perspectives), book (Pandemic Perspectives: A filmmaker's journey in 10 essays) and a series of 24 detailed podcasts with many of the film's expert participants. Visit www.ideasroadshow.com for more details.
Howard Burton is the founder of Ideas Roadshow and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 27 Apr 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>116</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An Conversation with Patricia Churchland</itunes:subtitle>
      <itunes:summary>In this Pandemic Perspectives Podcast, Ideas Roadshow founder and host Howard Burton talks to renowned UC San Diego neurophilosopher Patricia Churchland about the importance of communicating science, the wonders of the biological world and the dangers of wishful thinking.
Ideas Roadshow's Pandemic Perspectives Project consists of three distinct, reinforcing elements: a documentary film (Pandemic Perspectives), book (Pandemic Perspectives: A filmmaker's journey in 10 essays) and a series of 24 detailed podcasts with many of the film's expert participants. Visit www.ideasroadshow.com for more details.
Howard Burton is the founder of Ideas Roadshow and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In this <em>Pandemic Perspectives Podcast</em>, Ideas Roadshow founder and host Howard Burton talks to renowned UC San Diego neurophilosopher Patricia Churchland about the importance of communicating science, the wonders of the biological world and the dangers of wishful thinking.</p><p>Ideas Roadshow's Pandemic Perspectives Project consists of three distinct, reinforcing elements: a documentary film (<em>Pandemic Perspectives</em>), book (<em>Pandemic Perspectives: A filmmaker's journey in 10 essays</em>) and a series of 24 detailed podcasts with many of the film's expert participants. Visit <a href="http://www.ideasroadshow.com/">www.ideasroadshow.com</a> for more details.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3396</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[2c31f7fa-c31c-11ec-ad81-cb50142f9b7a]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2609197867.mp3?updated=1651427839" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Deborah Gordon, "No Standard Oil: Managing Abundant Petroleum in a Warming World" (Oxford UP, 2021)</title>
      <description>In No Standard Oil: Managing Abundant Petroleum in a Warming World (Oxford University Press, 2021), Deborah Gordon shows that no two oils or gases are environmentally alike. Each has a distinct, quantifiable climate impact. While all oils and gases pollute, some are much worse for the climate than others. In clear, accessible language, Gordon explains the results of the Oil Climate Index Plus Gas (OCI+), an innovative, open-source model that estimates global oil and gas emissions. Gordon identifies the oils and gases from every region of the globe–– along with the specific production, processing, and refining activities–– that are the most harmful to the planet, and proposes innovative solutions to reduce their climate footprints.
Global climate stabilization cannot afford to wait for oil and gas to run out. No Standard Oil shows how we can take immediate, practical steps to cut greenhouse gas emissions in the crucial oil and gas sector while making sustainable progress in transitioning to a carbon-free energy future.
Deborah Gordon is a senior principal in the Climate Intelligence Program at RMI where she leads the Oil and Gas Solutions Initiative. Gordon also serves as a senior fellow at the Watson Institute for International and Public Affairs at Brown University and the principal investigator for the Oil Climate Project.
Caleb Zakarin is the Assistant Editor of the New Books Network (Twitter: @caleb_zakarin).
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 19 Apr 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>102</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Deborah Gordon</itunes:subtitle>
      <itunes:summary>In No Standard Oil: Managing Abundant Petroleum in a Warming World (Oxford University Press, 2021), Deborah Gordon shows that no two oils or gases are environmentally alike. Each has a distinct, quantifiable climate impact. While all oils and gases pollute, some are much worse for the climate than others. In clear, accessible language, Gordon explains the results of the Oil Climate Index Plus Gas (OCI+), an innovative, open-source model that estimates global oil and gas emissions. Gordon identifies the oils and gases from every region of the globe–– along with the specific production, processing, and refining activities–– that are the most harmful to the planet, and proposes innovative solutions to reduce their climate footprints.
Global climate stabilization cannot afford to wait for oil and gas to run out. No Standard Oil shows how we can take immediate, practical steps to cut greenhouse gas emissions in the crucial oil and gas sector while making sustainable progress in transitioning to a carbon-free energy future.
Deborah Gordon is a senior principal in the Climate Intelligence Program at RMI where she leads the Oil and Gas Solutions Initiative. Gordon also serves as a senior fellow at the Watson Institute for International and Public Affairs at Brown University and the principal investigator for the Oil Climate Project.
Caleb Zakarin is the Assistant Editor of the New Books Network (Twitter: @caleb_zakarin).
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="https://bookshop.org/a/12343/9780190069476"><em>No Standard Oil: Managing Abundant Petroleum in a Warming World </em></a>(Oxford University Press, 2021), Deborah Gordon shows that no two oils or gases are environmentally alike. Each has a distinct, quantifiable climate impact. While all oils and gases pollute, some are much worse for the climate than others. In clear, accessible language, Gordon explains the results of the Oil Climate Index Plus Gas (OCI+), an innovative, open-source model that estimates global oil and gas emissions. Gordon identifies the oils and gases from every region of the globe–– along with the specific production, processing, and refining activities–– that are the most harmful to the planet, and proposes innovative solutions to reduce their climate footprints.</p><p>Global climate stabilization cannot afford to wait for oil and gas to run out. No Standard Oil shows how we can take immediate, practical steps to cut greenhouse gas emissions in the crucial oil and gas sector while making sustainable progress in transitioning to a carbon-free energy future.</p><p>Deborah Gordon is a senior principal in the Climate Intelligence Program at RMI where she leads the Oil and Gas Solutions Initiative. Gordon also serves as a senior fellow at the Watson Institute for International and Public Affairs at Brown University and the principal investigator for the Oil Climate Project.</p><p><em>Caleb Zakarin is the Assistant Editor of the New Books Network (Twitter: @caleb_zakarin).</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2623</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[28375d88-ba76-11ec-8fcd-839c54b21112]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2508984216.mp3?updated=1649634328" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Dashun Wang and Albert-László Barabási, "The Science of Science" (Cambridge UP, 2021)</title>
      <description>Listen to this interview of Dashun Wang, Professor at the Kellogg School of Management and McCormick School of Engineering at Northwestern University, and also with Albert-László Barabási, Robert Gray Dodge Professor of Network Science and Distinguished University Professor at Northeastern University. We talk about their new book The Science of Science" (Cambridge UP, 2021) and science, squared.
Albert-László Barabási : "There is, of course, the need that you grow professionally. If you're a mathematician, you need to perfect your math. If you're a physicist, you need to do your physics. If you're a biologist, you need to develop your lab techniques. But no matter the magnitude of any discovery you might make, it's not impactful unless you can actually communicate it. And I think that this is where science lacks significantly. I would even go so far as to say, there is a counter-selection: People who are not necessarily the best communicators tend to prefer science because there's the impression that that is not the skill that you need — you just need to be able to solve problems in a meaningful way. But if you're not able to write your ideas down, if you're not able to share your ideas with your community, then it's really as if you didn't have the ideas at all. And you know, I have experienced this in my own career. When I got interested in network science back in 1994/95, for the first few years my papers got rejected one after the other, and not because it wasn't good science (as I would later realize) — no, my papers were getting rejected because I could not communicate to the community at large and to my referees in particular why we should care about networks. And it took me about five years to find the way into people's minds, to learn how they write papers about networks. I needed to learn the hard way about how the community of scientists appreciated and did not appreciate research on networks. And it took me so long because I'd never been offered the opportunity to study the communication of science."
Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 13 Apr 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>57</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Dashun Wang and Albert-László Barabási</itunes:subtitle>
      <itunes:summary>Listen to this interview of Dashun Wang, Professor at the Kellogg School of Management and McCormick School of Engineering at Northwestern University, and also with Albert-László Barabási, Robert Gray Dodge Professor of Network Science and Distinguished University Professor at Northeastern University. We talk about their new book The Science of Science" (Cambridge UP, 2021) and science, squared.
Albert-László Barabási : "There is, of course, the need that you grow professionally. If you're a mathematician, you need to perfect your math. If you're a physicist, you need to do your physics. If you're a biologist, you need to develop your lab techniques. But no matter the magnitude of any discovery you might make, it's not impactful unless you can actually communicate it. And I think that this is where science lacks significantly. I would even go so far as to say, there is a counter-selection: People who are not necessarily the best communicators tend to prefer science because there's the impression that that is not the skill that you need — you just need to be able to solve problems in a meaningful way. But if you're not able to write your ideas down, if you're not able to share your ideas with your community, then it's really as if you didn't have the ideas at all. And you know, I have experienced this in my own career. When I got interested in network science back in 1994/95, for the first few years my papers got rejected one after the other, and not because it wasn't good science (as I would later realize) — no, my papers were getting rejected because I could not communicate to the community at large and to my referees in particular why we should care about networks. And it took me about five years to find the way into people's minds, to learn how they write papers about networks. I needed to learn the hard way about how the community of scientists appreciated and did not appreciate research on networks. And it took me so long because I'd never been offered the opportunity to study the communication of science."
Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Listen to this interview of Dashun Wang, Professor at the Kellogg School of Management and McCormick School of Engineering at Northwestern University, and also with Albert-László Barabási, Robert Gray Dodge Professor of Network Science and Distinguished University Professor at Northeastern University. We talk about their new book The Science of Science" (Cambridge UP, 2021) and science, squared.</p><p>Albert-László Barabási : "There is, of course, the need that you grow professionally. If you're a mathematician, you need to perfect your math. If you're a physicist, you need to do your physics. If you're a biologist, you need to develop your lab techniques. But no matter the magnitude of any discovery you might make, it's not impactful unless you can actually communicate it. And I think that this is where science lacks significantly. I would even go so far as to say, there is a counter-selection: People who are not necessarily the best communicators tend to prefer science because there's the impression that that is not the skill that you need — you just need to be able to solve problems in a meaningful way. But if you're not able to write your ideas down, if you're not able to share your ideas with your community, then it's really as if you didn't have the ideas at all. And you know, I have experienced this in my own career. When I got interested in network science back in 1994/95, for the first few years my papers got rejected one after the other, and not because it wasn't good science (as I would later realize) — no, my papers were getting rejected because I could not communicate to the community at large and to my referees in particular why we should care about networks. And it took me about five years to find the way into people's minds, to learn how they write papers about networks. I needed to learn the hard way about how the community of scientists appreciated and did not appreciate research on networks. And it took me so long because I'd never been offered the opportunity to study the communication of science."</p><p><em>Watch Daniel edit your science </em><a href="https://youtu.be/bBAW4dlJUww"><em>here</em></a><em>. Contact Daniel at writeyourresearch@gmail.com.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3380</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[fe2e6402-b820-11ec-ab77-e7a6501504aa]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN5890309629.mp3?updated=1649521468" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Hilary Glasman-Deal, "Science Research Writing For Native and Non-Native Speakers of English" (World Scientific Publishing Europe, 2020)</title>
      <description>Listen to this interview of Hilary Glasman-Deal, teacher of STEMM communication at the Centre for Academic English, Imperial College London, and author ofScience Research Writing For Native and Non-Native Speakers of English (World Scientific Publishing Europe, 2020). We talk about researching, reading, and writing.
Hilary Glasman-Deal : "One of the things I'm very often saying, particularly with early-career researchers, is this: 'Look, your reading is clearly effective, because you understand your field, okay, and you're an expert in your field. But your writing is operating at a different location from your reading. And what you need to be doing is bringing the two closer together so that they are, in a sense, a mirror image of each other, so that you're using your reading to feed your writing. You're using the reading as a bridge into the writing, rather than assuming that the two can exist in separate orbits.'"
Visit the Centre for Academic English here.
 Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 31 Mar 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>53</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Hilary Glasman-Deal</itunes:subtitle>
      <itunes:summary>Listen to this interview of Hilary Glasman-Deal, teacher of STEMM communication at the Centre for Academic English, Imperial College London, and author ofScience Research Writing For Native and Non-Native Speakers of English (World Scientific Publishing Europe, 2020). We talk about researching, reading, and writing.
Hilary Glasman-Deal : "One of the things I'm very often saying, particularly with early-career researchers, is this: 'Look, your reading is clearly effective, because you understand your field, okay, and you're an expert in your field. But your writing is operating at a different location from your reading. And what you need to be doing is bringing the two closer together so that they are, in a sense, a mirror image of each other, so that you're using your reading to feed your writing. You're using the reading as a bridge into the writing, rather than assuming that the two can exist in separate orbits.'"
Visit the Centre for Academic English here.
 Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Listen to this interview of Hilary Glasman-Deal, teacher of STEMM communication at the Centre for Academic English, Imperial College London, and author of<a href="https://bookshop.org/a/12343/9781786347848"><em>Science Research Writing For Native and Non-Native Speakers of English</em></a> (World Scientific Publishing Europe, 2020). We talk about researching, reading, and writing.</p><p>Hilary Glasman-Deal : "One of the things I'm very often saying, particularly with early-career researchers, is this: 'Look, your reading is clearly effective, because you understand your field, okay, and you're an expert in your field. But your writing is operating at a different location from your reading. And what you need to be doing is bringing the two closer together so that they are, in a sense, a mirror image of each other, so that you're using your reading to feed your writing. You're using the reading as a bridge into the writing, rather than assuming that the two can exist in separate orbits.'"</p><p>Visit the Centre for Academic English <a href="http://www.imperial.ac.uk/academic-english">here</a>.</p><p><em> Watch Daniel edit your science </em><a href="https://youtu.be/bBAW4dlJUww"><em>here</em></a><em>. Contact Daniel at writeyourresearch@gmail.com.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3708</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[d4f897d6-ac60-11ec-8cfc-93e1bf668fb4]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4347002920.mp3?updated=1648387654" length="0" type="audio/mpeg"/>
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      <title>N. J. Enfield, "Language Vs. Reality: Why Language Is Good for Lawyers and Bad for Scientists" (MIT Press, 2022)</title>
      <description>Nick Enfield’s book, Language vs. Reality: Why Language is Good for Lawyers and Bad for Scientists (MIT Press, 2022), argues that language is primarily for social coordination, not precisely transferring thoughts from one person to another. Drawing on empirical research, Enfield shows that human lexicons the world over are far more coarse-grained than our perceptual faculties. Yet, at the same time, languages vary in the structure and sophistication of their representations. This means that, for instance, how different languages carve up the world influences not only how their speakers talk about the world, but also how they think about it. The book explores a range of linguistic phenomena, from lexical diversity to linguistic framing to the effects of narrative. As a result of understanding how language shapes our understanding of reality, Enfield argues that we can make more informed—and more ethical—decisions about our own language use, as individuals and communities.
 Malcolm Keating is Assistant Professor of Philosophy at Yale-NUS College. His research focuses on Sanskrit philosophy of language and epistemology. He is the author of Language, Meaning, and Use in Indian Philosophy (Bloomsbury Press, 2019) and host of the podcast Sutras (and stuff).
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 23 Mar 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>105</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with N. J. Enfield</itunes:subtitle>
      <itunes:summary>Nick Enfield’s book, Language vs. Reality: Why Language is Good for Lawyers and Bad for Scientists (MIT Press, 2022), argues that language is primarily for social coordination, not precisely transferring thoughts from one person to another. Drawing on empirical research, Enfield shows that human lexicons the world over are far more coarse-grained than our perceptual faculties. Yet, at the same time, languages vary in the structure and sophistication of their representations. This means that, for instance, how different languages carve up the world influences not only how their speakers talk about the world, but also how they think about it. The book explores a range of linguistic phenomena, from lexical diversity to linguistic framing to the effects of narrative. As a result of understanding how language shapes our understanding of reality, Enfield argues that we can make more informed—and more ethical—decisions about our own language use, as individuals and communities.
 Malcolm Keating is Assistant Professor of Philosophy at Yale-NUS College. His research focuses on Sanskrit philosophy of language and epistemology. He is the author of Language, Meaning, and Use in Indian Philosophy (Bloomsbury Press, 2019) and host of the podcast Sutras (and stuff).
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Nick Enfield’s book, <a href="https://bookshop.org/a/12343/9780262046619"><em>Language vs. Reality: Why Language is Good for Lawyers and Bad for Scientists</em></a> (MIT Press, 2022), argues that language is primarily for social coordination, not precisely transferring thoughts from one person to another. Drawing on empirical research, Enfield shows that human lexicons the world over are far more coarse-grained than our perceptual faculties. Yet, at the same time, languages vary in the structure and sophistication of their representations. This means that, for instance, how different languages carve up the world influences not only how their speakers talk about the world, but also how they think about it. The book explores a range of linguistic phenomena, from lexical diversity to linguistic framing to the effects of narrative. As a result of understanding how language shapes our understanding of reality, Enfield argues that we can make more informed—and more ethical—decisions about our own language use, as individuals and communities.</p><p><em> Malcolm Keating is Assistant Professor of Philosophy at </em><a href="http://www.yale-nus.edu.sg/"><em>Yale-NUS College</em></a><em>. His research focuses on Sanskrit philosophy of language and epistemology. He is the author of </em><a href="https://www.bloomsbury.com/uk/language-meaning-and-use-in-indian-philosophy-9781350060760/"><em>Language, Meaning, and Use in Indian Philosophy</em></a><em> (Bloomsbury Press, 2019) and host of the podcast </em><a href="http://www.sutrasandstuff.com/"><em>Sutras (and stuff)</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3847</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[ad644864-a2bf-11ec-86d1-7725096d7663]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3934801015.mp3?updated=1647170970" length="0" type="audio/mpeg"/>
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    <item>
      <title>Stephen B. Heard, "The Scientist’s Guide to Writing: How to Write More Easily and Effectively Throughout Your Scientific Career, 2nd ed." (Princeton UP, 2022)</title>
      <description>Listen to this interview of Stephen Heard, Professor of Biology at the University of New Brunswick. We talk about his book The Scientist’s Guide to Writing: How to Write More Easily and Effectively Throughout Your Scientific Career, 2nd ed. (Princeton UP, 2022), we talk about writing when it's a verb, we talk about writing when it's a choice, and we talk about writing when it's the science.
Stephen Heard : "Especially for early-career scientists there's a risk of their writing entering into a positive feedback loop with the writing as it is in the literature. And really, we do this to them, we professors and instructors. We say, 'Next week, you're going to hand in a lab report. Write out this experiment you did,' and we say, quote, 'and write like the scientific literature,' unquote. Well, that's a horrible thing to tell anyone to do, because unfortunately, much of our literature isn't particularly well written. We love our acronyms, we love really long noun phrases, we love the passive voice, and so on. And so, people who don't make conscious choices and just sort of model what they're writing on what's already out there — I think they sort of get locked into some of those bad decisions, like the five-noun noun phrase. So being aware of what you're doing, thinking about the language you're using, and being willing to use the language to its fullest — that's not an invitation to write your own Finnegans Wake — but it is an invitation to think carefully about the way of constructing your point that will resonate best with the reader."
Readers may be interested in Heard's webpage for the book. 
Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 21 Mar 2022 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>52</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Stephen B. Heard</itunes:subtitle>
      <itunes:summary>Listen to this interview of Stephen Heard, Professor of Biology at the University of New Brunswick. We talk about his book The Scientist’s Guide to Writing: How to Write More Easily and Effectively Throughout Your Scientific Career, 2nd ed. (Princeton UP, 2022), we talk about writing when it's a verb, we talk about writing when it's a choice, and we talk about writing when it's the science.
Stephen Heard : "Especially for early-career scientists there's a risk of their writing entering into a positive feedback loop with the writing as it is in the literature. And really, we do this to them, we professors and instructors. We say, 'Next week, you're going to hand in a lab report. Write out this experiment you did,' and we say, quote, 'and write like the scientific literature,' unquote. Well, that's a horrible thing to tell anyone to do, because unfortunately, much of our literature isn't particularly well written. We love our acronyms, we love really long noun phrases, we love the passive voice, and so on. And so, people who don't make conscious choices and just sort of model what they're writing on what's already out there — I think they sort of get locked into some of those bad decisions, like the five-noun noun phrase. So being aware of what you're doing, thinking about the language you're using, and being willing to use the language to its fullest — that's not an invitation to write your own Finnegans Wake — but it is an invitation to think carefully about the way of constructing your point that will resonate best with the reader."
Readers may be interested in Heard's webpage for the book. 
Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Listen to this interview of Stephen Heard, Professor of Biology at the University of New Brunswick. We talk about his book <a href="https://press.princeton.edu/books/paperback/9780691219189/the-scientists-guide-to-writing-2nd-edition"><em>The Scientist’s Guide to Writing: How to Write More Easily and Effectively Throughout Your Scientific Career, 2nd ed.</em> </a>(Princeton UP, 2022), we talk about writing when it's a verb, we talk about writing when it's a choice, and we talk about writing when it's the science.</p><p>Stephen Heard : "Especially for early-career scientists there's a risk of their writing entering into a positive feedback loop with the writing as it is in the literature. And really, we do this to them, we professors and instructors. We say, 'Next week, you're going to hand in a lab report. Write out this experiment you did,' and we say, quote, 'and write like the scientific literature,' unquote. Well, that's a horrible thing to tell anyone to do, because unfortunately, much of our literature isn't particularly well written. We love our acronyms, we love really long noun phrases, we love the passive voice, and so on. And so, people who don't make conscious choices and just sort of model what they're writing on what's already out there — I think they sort of get locked into some of those bad decisions, like the five-noun noun phrase. So being aware of what you're doing, thinking about the language you're using, and being willing to use the language to its fullest — that's not an invitation to write your own <em>Finnegans Wake</em> — but it is an invitation to think carefully about the way of constructing your point that will resonate best with the reader."</p><p>Readers may be interested in Heard's <a href="https://scientistseessquirrel.wordpress.com/the-scientists-guide-to-writing/">webpage</a> for the book. </p><p><em>Watch Daniel edit your science </em><a href="https://youtu.be/bBAW4dlJUww"><em>here</em></a><em>. Contact Daniel at writeyourresearch@gmail.com.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4309</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN6731263487.mp3?updated=1647441726" length="0" type="audio/mpeg"/>
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      <title>Intellectual Humility in Science: A Discussion with Glenn Sauer</title>
      <description>Today’s episode of How To Be Wrong welcomes Glenn Sauer, who is Donald J. Ross Sr. Chair in Biology and Biochemistry and Professor of Biology at Fairfield University, where he also serves as Associate Dean in the College of Arts &amp; Sciences. Our conversation covers a range of topics related to the issue of intellectual humility, including the conflict between scientific and religious perspectives in the US and the politics of certainty that dominates much contemporary discourse about policy as well as ideas about being right or wrong.
John Kaag is Professor and Chair of Philosophy at UMass Lowell and External Professor at the Santa Fe Institute. John W. Traphagan, Ph.D. is Professor and Mitsubishi Heavy Industries Fellow in the Department of Religious Studies at the University of Texas at Austin, where he is also a professor in the Program in Human Dimensions of Organizations.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 10 Mar 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>4</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Glenn Sauer</itunes:subtitle>
      <itunes:summary>Today’s episode of How To Be Wrong welcomes Glenn Sauer, who is Donald J. Ross Sr. Chair in Biology and Biochemistry and Professor of Biology at Fairfield University, where he also serves as Associate Dean in the College of Arts &amp; Sciences. Our conversation covers a range of topics related to the issue of intellectual humility, including the conflict between scientific and religious perspectives in the US and the politics of certainty that dominates much contemporary discourse about policy as well as ideas about being right or wrong.
John Kaag is Professor and Chair of Philosophy at UMass Lowell and External Professor at the Santa Fe Institute. John W. Traphagan, Ph.D. is Professor and Mitsubishi Heavy Industries Fellow in the Department of Religious Studies at the University of Texas at Austin, where he is also a professor in the Program in Human Dimensions of Organizations.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Today’s episode of How To Be Wrong welcomes Glenn Sauer, who is Donald J. Ross Sr. Chair in Biology and Biochemistry and Professor of Biology at Fairfield University, where he also serves as Associate Dean in the College of Arts &amp; Sciences. Our conversation covers a range of topics related to the issue of intellectual humility, including the conflict between scientific and religious perspectives in the US and the politics of certainty that dominates much contemporary discourse about policy as well as ideas about being right or wrong.</p><p><a href="https://johnkaag.com/"><em>John Kaag</em></a><em> is Professor and Chair of Philosophy at UMass Lowell and External Professor at the Santa Fe Institute. </em><a href="https://liberalarts.utexas.edu/rs/faculty/jt27"><em>John W. Traphagan</em></a><em>, Ph.D. is Professor and Mitsubishi Heavy Industries Fellow in the Department of Religious Studies at the University of Texas at Austin, where he is also a professor in the Program in Human Dimensions of Organizations.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3003</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[ee2d2db6-9d56-11ec-8db6-e79296b7709f]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8393566871.mp3?updated=1646576169" length="0" type="audio/mpeg"/>
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      <title>Raghuveer Parthasarathy, "So Simple a Beginning: How Four Physical Principles Shape Our Living World" (Princeton UP, 2022)</title>
      <description>The form and function of a sprinting cheetah are quite unlike those of a rooted tree. A human being is very different from a bacterium or a zebra. The living world is a realm of dazzling variety, yet a shared set of physical principles shapes the forms and behaviors of every creature in it. So Simple a Beginning: How Four Physical Principles Shape Our Living World (Princeton UP, 2022) shows how the emerging new science of biophysics is transforming our understanding of life on Earth and enabling potentially lifesaving but controversial technologies such as gene editing, artificial organ growth, and ecosystem engineering.
Raghuveer Parthasarathy explains how four basic principles—self-assembly, regulatory circuits, predictable randomness, and scaling—shape the machinery of life on scales ranging from microscopic molecules to gigantic elephants. He describes how biophysics is helping to unlock the secrets of a host of natural phenomena, such as how your limbs know to form at the proper places, and why humans need lungs but ants do not. Parthasarathy explores how the cutting-edge biotechnologies of tomorrow could enable us to alter living things in ways both subtle and profound.
Featuring dozens of original watercolors and drawings by the author, this sweeping tour of biophysics offers astonishing new perspectives on how the wonders of life can arise from so simple a beginning.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 15 Feb 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>35</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Raghuveer Parthasarathy</itunes:subtitle>
      <itunes:summary>The form and function of a sprinting cheetah are quite unlike those of a rooted tree. A human being is very different from a bacterium or a zebra. The living world is a realm of dazzling variety, yet a shared set of physical principles shapes the forms and behaviors of every creature in it. So Simple a Beginning: How Four Physical Principles Shape Our Living World (Princeton UP, 2022) shows how the emerging new science of biophysics is transforming our understanding of life on Earth and enabling potentially lifesaving but controversial technologies such as gene editing, artificial organ growth, and ecosystem engineering.
Raghuveer Parthasarathy explains how four basic principles—self-assembly, regulatory circuits, predictable randomness, and scaling—shape the machinery of life on scales ranging from microscopic molecules to gigantic elephants. He describes how biophysics is helping to unlock the secrets of a host of natural phenomena, such as how your limbs know to form at the proper places, and why humans need lungs but ants do not. Parthasarathy explores how the cutting-edge biotechnologies of tomorrow could enable us to alter living things in ways both subtle and profound.
Featuring dozens of original watercolors and drawings by the author, this sweeping tour of biophysics offers astonishing new perspectives on how the wonders of life can arise from so simple a beginning.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The form and function of a sprinting cheetah are quite unlike those of a rooted tree. A human being is very different from a bacterium or a zebra. The living world is a realm of dazzling variety, yet a shared set of physical principles shapes the forms and behaviors of every creature in it. <a href="https://press.princeton.edu/books/hardcover/9780691200408/so-simple-a-beginning"><em>So Simple a Beginning: How Four Physical Principles Shape Our Living World</em></a><em> </em>(Princeton UP, 2022) shows how the emerging new science of biophysics is transforming our understanding of life on Earth and enabling potentially lifesaving but controversial technologies such as gene editing, artificial organ growth, and ecosystem engineering.</p><p>Raghuveer Parthasarathy explains how four basic principles—self-assembly, regulatory circuits, predictable randomness, and scaling—shape the machinery of life on scales ranging from microscopic molecules to gigantic elephants. He describes how biophysics is helping to unlock the secrets of a host of natural phenomena, such as how your limbs know to form at the proper places, and why humans need lungs but ants do not. Parthasarathy explores how the cutting-edge biotechnologies of tomorrow could enable us to alter living things in ways both subtle and profound.</p><p>Featuring dozens of original watercolors and drawings by the author, this sweeping tour of biophysics offers astonishing new perspectives on how the wonders of life can arise from so simple a beginning.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3036</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[010c270c-846b-11ec-b375-fb9d0275ef09]]></guid>
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    <item>
      <title>Retraction Watch: A Discussion with Adam Marcus and Ivan Oransky</title>
      <description>Listen to this interview of Adam Marcus and Ivan Oransky, cofounders of Retraction Watch. We talk about lots of things, retracting very few.
Ivan Oransky : "Accountability in science certainly does not come down to only retracting papers, because there are just lots of issues. And by the way, just to remind everyone, science is very much a human endeavor. It doesn't exist outside of humans doing the science. I mean, facts exist, and there is truth out there, and we'd very much appear to be getting close and closer to it — that's not what I'm talking about. I'm talking about the actual process, like, how do we learn these things. How — as this podcast more generally looks at — how does knowledge get known. Basically, epistemology. But that requires human beings. It requires human beings interpreting, talking and listening, collaborating, and so that's one part of science that is really critical. Therefore, of course, the issue of accountability is multifactorial."
The Retraction Watch database is here. You might also be interested in this article: "Repeat Offenders: When Scientific Fraudsters Slip Through the Cracks." You can learn more about retraction here. 
Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 11 Feb 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>50</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Adam Marcus and Ivan Oransky</itunes:subtitle>
      <itunes:summary>Listen to this interview of Adam Marcus and Ivan Oransky, cofounders of Retraction Watch. We talk about lots of things, retracting very few.
Ivan Oransky : "Accountability in science certainly does not come down to only retracting papers, because there are just lots of issues. And by the way, just to remind everyone, science is very much a human endeavor. It doesn't exist outside of humans doing the science. I mean, facts exist, and there is truth out there, and we'd very much appear to be getting close and closer to it — that's not what I'm talking about. I'm talking about the actual process, like, how do we learn these things. How — as this podcast more generally looks at — how does knowledge get known. Basically, epistemology. But that requires human beings. It requires human beings interpreting, talking and listening, collaborating, and so that's one part of science that is really critical. Therefore, of course, the issue of accountability is multifactorial."
The Retraction Watch database is here. You might also be interested in this article: "Repeat Offenders: When Scientific Fraudsters Slip Through the Cracks." You can learn more about retraction here. 
Watch Daniel edit your science here. Contact Daniel at writeyourresearch@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Listen to this interview of Adam Marcus and Ivan Oransky, cofounders of <a href="https://retractionwatch.com/"><em>Retraction Watch</em></a>. We talk about lots of things, retracting very few.</p><p>Ivan Oransky : "Accountability in science certainly does <em>not</em> come down to only retracting papers, because there are just lots of issues. And by the way, just to remind everyone, science is very much a human endeavor. It doesn't exist outside of humans doing the science. I mean, facts exist, and there is truth out there, and we'd very much appear to be getting close and closer to it — that's not what I'm talking about. I'm talking about the actual process, like, how do we learn these things. How — as this podcast more generally looks at — how does knowledge get known. Basically, epistemology. But that requires human beings. It requires human beings interpreting, talking and listening, collaborating, and so that's one part of science that is really critical. Therefore, of course, the issue of accountability is multifactorial."</p><p>The Retraction Watch database is <a href="http://retractiondatabase.org/RetractionSearch.aspx?">here</a>. You might also be interested in this article: "<a href="https://undark.org/2018/05/14/scientific-fraud-academic-fraud-universities/">Repeat Offenders: When Scientific Fraudsters Slip Through the Cracks</a>." You can learn more about retraction <a href="https://infoqualitylab.org/projects/risrs2020/bibliography/">here</a>. </p><p><em>Watch Daniel edit your science </em><a href="https://youtu.be/bBAW4dlJUww"><em>here</em></a><em>. Contact Daniel at writeyourresearch@gmail.com.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5030</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[83976130-868e-11ec-a554-eb948aa1470b]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1114675198.mp3?updated=1644687010" length="0" type="audio/mpeg"/>
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    <item>
      <title>Kenneth L. Caneva, "Helmholtz and the Conservation of Energy: Contexts of Creation and Reception" (MIT Press, 2021)</title>
      <description>In 1847, Herman Helmholtz, arguably the most important German physicist of the nineteenth century, published his formulation of what became known as the conservation of energy--unarguably the most important single development in physics of that century, transforming what had been a conglomeration of separate topics into a coherent field unified by the concept of energy. In Helmholtz and the Conservation of Energy: Contexts of Creation and Reception (MIT Press, 2021), Kenneth Caneva offers a detailed account of Helmholtz's work on the subject, the sources that he drew upon, the varying responses to his work from scientists of the era, and the impact on physics as a discipline.
Caneva describes the set of abiding concerns that prompted Helmholtz's work, including his rejection of the idea of a work-performing vital force, and investigates Helmholtz's relationship to both an older generation of physicists and an emerging community of reformist physiologists. He analyzes Helmholtz's indebtedness to Johannes Müller and Justus Liebig and discusses Helmholtz's tense and ambivalent relationship to the work of Robert Mayer, who had earlier proposed the uncreatability, indestructibility, and transformability of force. Caneva examines Helmholtz's continued engagement with the subject, his role in the acceptance of the conservation of energy as the central principle of physics, and the eventual incorporation of the principle in textbooks as established science.
Corinne Doria is a historian specializing in the social history of medicine. She is a lecturer at the Chinese University of Hong Kong in Shenzhen and teaches Disability Studies at Sciences-Po (Paris). Her work focuses on the history of ophthalmology and visual impairment in the West.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 10 Feb 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>7</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Kenneth L. Caneva</itunes:subtitle>
      <itunes:summary>In 1847, Herman Helmholtz, arguably the most important German physicist of the nineteenth century, published his formulation of what became known as the conservation of energy--unarguably the most important single development in physics of that century, transforming what had been a conglomeration of separate topics into a coherent field unified by the concept of energy. In Helmholtz and the Conservation of Energy: Contexts of Creation and Reception (MIT Press, 2021), Kenneth Caneva offers a detailed account of Helmholtz's work on the subject, the sources that he drew upon, the varying responses to his work from scientists of the era, and the impact on physics as a discipline.
Caneva describes the set of abiding concerns that prompted Helmholtz's work, including his rejection of the idea of a work-performing vital force, and investigates Helmholtz's relationship to both an older generation of physicists and an emerging community of reformist physiologists. He analyzes Helmholtz's indebtedness to Johannes Müller and Justus Liebig and discusses Helmholtz's tense and ambivalent relationship to the work of Robert Mayer, who had earlier proposed the uncreatability, indestructibility, and transformability of force. Caneva examines Helmholtz's continued engagement with the subject, his role in the acceptance of the conservation of energy as the central principle of physics, and the eventual incorporation of the principle in textbooks as established science.
Corinne Doria is a historian specializing in the social history of medicine. She is a lecturer at the Chinese University of Hong Kong in Shenzhen and teaches Disability Studies at Sciences-Po (Paris). Her work focuses on the history of ophthalmology and visual impairment in the West.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In 1847, Herman Helmholtz, arguably the most important German physicist of the nineteenth century, published his formulation of what became known as the conservation of energy--unarguably the most important single development in physics of that century, transforming what had been a conglomeration of separate topics into a coherent field unified by the concept of energy. In <a href="https://bookshop.org/a/12343/9780262045735"><em>Helmholtz and the Conservation of Energy: Contexts of Creation and Reception</em></a><em> </em>(MIT Press, 2021), Kenneth Caneva offers a detailed account of Helmholtz's work on the subject, the sources that he drew upon, the varying responses to his work from scientists of the era, and the impact on physics as a discipline.</p><p>Caneva describes the set of abiding concerns that prompted Helmholtz's work, including his rejection of the idea of a work-performing vital force, and investigates Helmholtz's relationship to both an older generation of physicists and an emerging community of reformist physiologists. He analyzes Helmholtz's indebtedness to Johannes Müller and Justus Liebig and discusses Helmholtz's tense and ambivalent relationship to the work of Robert Mayer, who had earlier proposed the uncreatability, indestructibility, and transformability of force. Caneva examines Helmholtz's continued engagement with the subject, his role in the acceptance of the conservation of energy as the central principle of physics, and the eventual incorporation of the principle in textbooks as established science.</p><p><em>Corinne Doria is a historian specializing in the social history of medicine. She is a lecturer at the Chinese University of Hong Kong in Shenzhen and teaches Disability Studies at Sciences-Po (Paris). Her work focuses on the history of ophthalmology and visual impairment in the West.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2539</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Aubrey Clayton, "Bernoulli's Fallacy: Statistical Illogic and the Crisis of Modern Science" (Columbia UP, 2021)</title>
      <description>There is a logical flaw in the statistical methods used across experimental science. This fault is not a minor academic quibble: it underlies a reproducibility crisis now threatening entire disciplines. In an increasingly statistics-reliant society, this same deeply rooted error shapes decisions in medicine, law, and public policy with profound consequences. The foundation of the problem is a misunderstanding of probability and its role in making inferences from observations.
Aubrey Clayton traces the history of how statistics went astray, beginning with the groundbreaking work of the seventeenth-century mathematician Jacob Bernoulli and winding through gambling, astronomy, and genetics. Clayton recounts the feuds among rival schools of statistics, exploring the surprisingly human problems that gave rise to the discipline and the all-too-human shortcomings that derailed it. He highlights how influential nineteenth- and twentieth-century figures developed a statistical methodology they claimed was purely objective in order to silence critics of their political agendas, including eugenics.
Clayton provides a clear account of the mathematics and logic of probability, conveying complex concepts accessibly for readers interested in the statistical methods that frame our understanding of the world. He contends that we need to take a Bayesian approach--that is, to incorporate prior knowledge when reasoning with incomplete information--in order to resolve the crisis. Ranging across math, philosophy, and culture, Bernoulli's Fallacy: Statistical Illogic and the Crisis of Modern Science (Columbia UP, 2021) explains why something has gone wrong with how we use data--and how to fix it.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 10 Feb 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>72</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Aubrey Clayton</itunes:subtitle>
      <itunes:summary>There is a logical flaw in the statistical methods used across experimental science. This fault is not a minor academic quibble: it underlies a reproducibility crisis now threatening entire disciplines. In an increasingly statistics-reliant society, this same deeply rooted error shapes decisions in medicine, law, and public policy with profound consequences. The foundation of the problem is a misunderstanding of probability and its role in making inferences from observations.
Aubrey Clayton traces the history of how statistics went astray, beginning with the groundbreaking work of the seventeenth-century mathematician Jacob Bernoulli and winding through gambling, astronomy, and genetics. Clayton recounts the feuds among rival schools of statistics, exploring the surprisingly human problems that gave rise to the discipline and the all-too-human shortcomings that derailed it. He highlights how influential nineteenth- and twentieth-century figures developed a statistical methodology they claimed was purely objective in order to silence critics of their political agendas, including eugenics.
Clayton provides a clear account of the mathematics and logic of probability, conveying complex concepts accessibly for readers interested in the statistical methods that frame our understanding of the world. He contends that we need to take a Bayesian approach--that is, to incorporate prior knowledge when reasoning with incomplete information--in order to resolve the crisis. Ranging across math, philosophy, and culture, Bernoulli's Fallacy: Statistical Illogic and the Crisis of Modern Science (Columbia UP, 2021) explains why something has gone wrong with how we use data--and how to fix it.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>There is a logical flaw in the statistical methods used across experimental science. This fault is not a minor academic quibble: it underlies a reproducibility crisis now threatening entire disciplines. In an increasingly statistics-reliant society, this same deeply rooted error shapes decisions in medicine, law, and public policy with profound consequences. The foundation of the problem is a misunderstanding of probability and its role in making inferences from observations.</p><p>Aubrey Clayton traces the history of how statistics went astray, beginning with the groundbreaking work of the seventeenth-century mathematician Jacob Bernoulli and winding through gambling, astronomy, and genetics. Clayton recounts the feuds among rival schools of statistics, exploring the surprisingly human problems that gave rise to the discipline and the all-too-human shortcomings that derailed it. He highlights how influential nineteenth- and twentieth-century figures developed a statistical methodology they claimed was purely objective in order to silence critics of their political agendas, including eugenics.</p><p>Clayton provides a clear account of the mathematics and logic of probability, conveying complex concepts accessibly for readers interested in the statistical methods that frame our understanding of the world. He contends that we need to take a Bayesian approach--that is, to incorporate prior knowledge when reasoning with incomplete information--in order to resolve the crisis. Ranging across math, philosophy, and culture, <a href="https://bookshop.org/a/12343/9780231199940"><em>Bernoulli's Fallacy: Statistical Illogic and the Crisis of Modern Science</em></a><em> </em>(Columbia UP, 2021) explains why something has gone wrong with how we use data--and how to fix it.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4042</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN9511817787.mp3?updated=1643900382" length="0" type="audio/mpeg"/>
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    <item>
      <title>Fritjof Capra, "Patterns of Connection: Essential Essays from Five Decades" (High Road Books, 2021)</title>
      <description>Welcome to the first Systems and Cybernetics episode of 2022! After a short break over the holidays to rest and spend time with family (and, of course, read!), it’s time to jump back into conversations with authors of exciting new works in systems thinking. We have a great lineup, and to kick things off I am thrilled to share my recent conversation with Fritjof Capra. Capra is a scientist, educator and activist. He has also been a best-selling author since his first book, The Tao of Physics, encouraged—rather captivated—the world to explore the parallels between modern physics and Eastern philosophies nearly 50 years ago.
Many listeners will recall the one Capra book that challenged their worldview and got them asking new questions. For me, The Turning Point (1982) was that turning point. Capra’s new book Patterns of Connection: Essential Essays from Five Decades (High Road Books, 2021) presents the evolution of his thought over five decades, inviting the reader to go back to the beginning of the author’s inquiry and join him in his journey—to experience those milestone moments that represented a new development in his theory.
A systems thinker from his youth, Capra’s scientific training combined with a spiritual awakening in the late 1960s/early 1970s, led him to notice inherent connections between seemingly disparate disciplines. This led to a systemic questioning that compelled him to seek out and collaborate with—even build bridges between—thinkers across many realms. The result is a synthesis—or “systems view”—of life that serves as a “systemic framework for the understanding of biological and social phenomena” and informs “the design principles of our future social institutions… consistent with the principles of organization that nature has evolved to sustain the web of life”.
This conversation made me want to go back and (re)immerse myself in Capra’s previous works and I have a feeling it might make you want to do the same. If you’re new to Capra, Patterns of Connection is a great place to start.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 08 Feb 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>40</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Fritjof Capra</itunes:subtitle>
      <itunes:summary>Welcome to the first Systems and Cybernetics episode of 2022! After a short break over the holidays to rest and spend time with family (and, of course, read!), it’s time to jump back into conversations with authors of exciting new works in systems thinking. We have a great lineup, and to kick things off I am thrilled to share my recent conversation with Fritjof Capra. Capra is a scientist, educator and activist. He has also been a best-selling author since his first book, The Tao of Physics, encouraged—rather captivated—the world to explore the parallels between modern physics and Eastern philosophies nearly 50 years ago.
Many listeners will recall the one Capra book that challenged their worldview and got them asking new questions. For me, The Turning Point (1982) was that turning point. Capra’s new book Patterns of Connection: Essential Essays from Five Decades (High Road Books, 2021) presents the evolution of his thought over five decades, inviting the reader to go back to the beginning of the author’s inquiry and join him in his journey—to experience those milestone moments that represented a new development in his theory.
A systems thinker from his youth, Capra’s scientific training combined with a spiritual awakening in the late 1960s/early 1970s, led him to notice inherent connections between seemingly disparate disciplines. This led to a systemic questioning that compelled him to seek out and collaborate with—even build bridges between—thinkers across many realms. The result is a synthesis—or “systems view”—of life that serves as a “systemic framework for the understanding of biological and social phenomena” and informs “the design principles of our future social institutions… consistent with the principles of organization that nature has evolved to sustain the web of life”.
This conversation made me want to go back and (re)immerse myself in Capra’s previous works and I have a feeling it might make you want to do the same. If you’re new to Capra, Patterns of Connection is a great place to start.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Welcome to the first Systems and Cybernetics episode of 2022! After a short break over the holidays to rest and spend time with family (and, of course, read!), it’s time to jump back into conversations with authors of exciting new works in systems thinking. We have a great lineup, and to kick things off I am thrilled to share my recent conversation with Fritjof Capra. Capra is a scientist, educator and activist. He has also been a best-selling author since his first book, <em>The Tao of Physics</em>, encouraged—rather captivated—the world to explore the parallels between modern physics and Eastern philosophies nearly 50 years ago.</p><p>Many listeners will recall the one Capra book that challenged their worldview and got them asking new questions. For me, <em>The Turning Point</em> (1982) was that turning point. Capra’s new book <em>Patterns of Connection: Essential Essays from Five Decades</em> (High Road Books, 2021)<em> </em>presents the evolution of his thought over five decades, inviting the reader to go back to the beginning of the author’s inquiry and join him in his journey—to experience those milestone moments that represented a new development in his theory.</p><p>A systems thinker from his youth, Capra’s scientific training combined with a spiritual awakening in the late 1960s/early 1970s, led him to notice inherent connections between seemingly disparate disciplines. This led to a systemic questioning that compelled him to seek out and collaborate with—even build bridges between—thinkers across many realms. The result is a synthesis—or “systems view”—of life that serves as a “systemic framework for the understanding of biological and social phenomena” and informs “the design principles of our future social institutions… consistent with the principles of organization that nature has evolved to sustain the web of life”.</p><p>This conversation made me want to go back and (re)immerse myself in Capra’s previous works and I have a feeling it might make you want to do the same. If you’re new to Capra, <em>Patterns of Connection</em> is a great place to start.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3663</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[43865e14-82d0-11ec-81de-8328dad53d7a]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9618038725.mp3?updated=1643659633" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Ben Westhoff, "Fentanyl, Inc.: How Rogue Chemists Are Creating the Deadliest Wave of the Opioid Epidemic" (Grove Press, 2019)</title>
      <description>Ben Westhoff is an award-winning investigative journalist whose best-selling 2019 book Fentanyl, Inc.: How Rogue Chemists Are Creating the Deadliest Wave of the Opioid Epidemic (Grove Press, 2019), was one of the first to take fentanyl seriously as both a social phenomenon and a national threat. Since its release, Westhoff has become a policy expert, advising top government officials on the fentanyl crisis, and continuing to follow the story on his Substack account. The author of two previous nonfiction books and numerous articles in outlets like the Atlantic, The Guardian, and the Wall Street Journal, Westhoff’s fourth book, Little Brother: Love, Tragedy, and My Search for the Truth comes out this spring.
Emily Dufton is the author of Grass Roots: The Rise and Fall and Rise of Marijuana in America (Basic Books, 2017). A drug historian and writer, her second book, on the development of the opioid addiction medication industry, is under contract with the University of Chicago Press.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 07 Feb 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>42</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Ben Westhoff</itunes:subtitle>
      <itunes:summary>Ben Westhoff is an award-winning investigative journalist whose best-selling 2019 book Fentanyl, Inc.: How Rogue Chemists Are Creating the Deadliest Wave of the Opioid Epidemic (Grove Press, 2019), was one of the first to take fentanyl seriously as both a social phenomenon and a national threat. Since its release, Westhoff has become a policy expert, advising top government officials on the fentanyl crisis, and continuing to follow the story on his Substack account. The author of two previous nonfiction books and numerous articles in outlets like the Atlantic, The Guardian, and the Wall Street Journal, Westhoff’s fourth book, Little Brother: Love, Tragedy, and My Search for the Truth comes out this spring.
Emily Dufton is the author of Grass Roots: The Rise and Fall and Rise of Marijuana in America (Basic Books, 2017). A drug historian and writer, her second book, on the development of the opioid addiction medication industry, is under contract with the University of Chicago Press.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://www.benwesthoff.com/">Ben Westhoff</a> is an award-winning investigative journalist whose best-selling 2019 book <a href="https://bookshop.org/a/12343/9780802157379"><em>Fentanyl, Inc.: How Rogue Chemists Are Creating the Deadliest Wave of the Opioid Epidemic</em></a> (Grove Press, 2019), was one of the first to take fentanyl seriously as both a social phenomenon and a national threat. Since its release, Westhoff has become a policy expert, advising top government officials on the fentanyl crisis, and continuing to follow the story on his <a href="https://benwesthoff.substack.com/p/the-kingpin">Substack</a> account. The author of two previous nonfiction books and numerous articles in outlets like the <em>Atlantic, The Guardian, </em>and the<em> Wall Street Journal</em>, Westhoff’s fourth book, <a href="https://www.hachettebooks.com/titles/ben-westhoff/little-brother/9780306923166/"><em>Little Brother: Love, Tragedy, and My Search for the Truth</em></a> comes out this spring.</p><p><a href="http://www.emilydufton.com/"><em>Emily Dufton</em></a><em> is the author of </em><a href="https://www.basicbooks.com/titles/emily-dufton/grass-roots/9780465096169/"><em>Grass Roots: The Rise and Fall and Rise of Marijuana in America</em></a><em> (Basic Books, 2017). A drug historian and writer, her second book, on the development of the opioid addiction medication industry, is under contract with the University of Chicago Press.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2703</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[b0d2c286-7f89-11ec-b07d-d3dcedb28c5f]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1673978028.mp3?updated=1753945593" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Emily Levesque, "The Last Stargazers: The Enduring Story of Astronomy's Vanishing Explorers" (Sourcebooks, 2021)</title>
      <description>Humans from the earliest civilizations through today have craned their necks each night, using the stars to orient themselves in the large, strange world around them. Stargazing is a pursuit that continues to fascinate us: from Copernicus to Carl Sagan, astronomers throughout history have spent their lives trying to answer the biggest questions in the universe. Now, award-winning astronomer Emily Levesque shares the stories of modern-day stargazers in this new nonfiction release, the people willing to adventure across high mountaintops and to some of the most remote corners of the planet, all in the name of science.
From the lonely quiet of midnight stargazing to tall tales of wild bears loose in the observatory, The Last Stargazers: The Enduring Story of Astronomy's Vanishing Explorers (Sourcebooks, 2021) is a love letter to astronomy and an affirmation of the crucial role that humans can and must play in the future of scientific discovery.
In this sweeping work of narrative science, Levesque shows how astronomers in this scrappy and evolving field are going beyond the machines to infuse creativity and passion into the stars and space and inspires us all to peer skyward in pursuit of the universe's secrets.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 04 Feb 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>113</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Emily Levesque</itunes:subtitle>
      <itunes:summary>Humans from the earliest civilizations through today have craned their necks each night, using the stars to orient themselves in the large, strange world around them. Stargazing is a pursuit that continues to fascinate us: from Copernicus to Carl Sagan, astronomers throughout history have spent their lives trying to answer the biggest questions in the universe. Now, award-winning astronomer Emily Levesque shares the stories of modern-day stargazers in this new nonfiction release, the people willing to adventure across high mountaintops and to some of the most remote corners of the planet, all in the name of science.
From the lonely quiet of midnight stargazing to tall tales of wild bears loose in the observatory, The Last Stargazers: The Enduring Story of Astronomy's Vanishing Explorers (Sourcebooks, 2021) is a love letter to astronomy and an affirmation of the crucial role that humans can and must play in the future of scientific discovery.
In this sweeping work of narrative science, Levesque shows how astronomers in this scrappy and evolving field are going beyond the machines to infuse creativity and passion into the stars and space and inspires us all to peer skyward in pursuit of the universe's secrets.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Humans from the earliest civilizations through today have craned their necks each night, using the stars to orient themselves in the large, strange world around them. Stargazing is a pursuit that continues to fascinate us: from Copernicus to Carl Sagan, astronomers throughout history have spent their lives trying to answer the biggest questions in the universe. Now, award-winning astronomer Emily Levesque shares the stories of modern-day stargazers in this new nonfiction release, the people willing to adventure across high mountaintops and to some of the most remote corners of the planet, all in the name of science.</p><p>From the lonely quiet of midnight stargazing to tall tales of wild bears loose in the observatory, <a href="https://bookshop.org/a/12343/9781492681076"><em>The Last Stargazers: The Enduring Story of Astronomy's Vanishing Explorers</em></a><em> </em>(Sourcebooks, 2021) is a love letter to astronomy and an affirmation of the crucial role that humans can and must play in the future of scientific discovery.</p><p>In this sweeping work of narrative science, Levesque shows how astronomers in this scrappy and evolving field are going beyond the machines to infuse creativity and passion into the stars and space and inspires us all to peer skyward in pursuit of the universe's secrets.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2851</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Paul Halpern, "Flashes of Creation: George Gamow, Fred Hoyle, and the Great Big Bang Debate" (Basic Books, 2021)</title>
      <description>Today, the Big Bang is so entrenched in our understanding of the cosmos that to doubt it would seem crazy. But as Paul Halpern shows in Flashes of Creation: George Gamow, Fred Hoyle, and the Great Big Bang Debate (Basic Books, 2021), just decades ago its mere mention caused sparks to fly. At the center of the debate were Russian American physicist George Gamow and British astrophysicist Fred Hoyle. Gamow insisted that a fiery explosion explained how the elements of the universe were created. Attacking the idea as half-baked, Hoyle countered that the universe was engaged in a never-ending process of creation. The battle was fierce. In the end, Gamow turned out to be right -- mostly -- and Hoyle, despite his many achievements, is remembered for giving the theory the silliest possible name: "The Big Bang." Halpern captures the brilliance of both thinkers and reminds us that even those proved wrong have much to teach us about boldness, imagination, and the universe itself.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 11 Jan 2022 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>6</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Paul Halpern</itunes:subtitle>
      <itunes:summary>Today, the Big Bang is so entrenched in our understanding of the cosmos that to doubt it would seem crazy. But as Paul Halpern shows in Flashes of Creation: George Gamow, Fred Hoyle, and the Great Big Bang Debate (Basic Books, 2021), just decades ago its mere mention caused sparks to fly. At the center of the debate were Russian American physicist George Gamow and British astrophysicist Fred Hoyle. Gamow insisted that a fiery explosion explained how the elements of the universe were created. Attacking the idea as half-baked, Hoyle countered that the universe was engaged in a never-ending process of creation. The battle was fierce. In the end, Gamow turned out to be right -- mostly -- and Hoyle, despite his many achievements, is remembered for giving the theory the silliest possible name: "The Big Bang." Halpern captures the brilliance of both thinkers and reminds us that even those proved wrong have much to teach us about boldness, imagination, and the universe itself.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Today, the Big Bang is so entrenched in our understanding of the cosmos that to doubt it would seem crazy. But as Paul Halpern shows in <a href="https://bookshop.org/a/12343/9781541673595"><em>Flashes of Creation: George Gamow, Fred Hoyle, and the Great Big Bang Debate </em></a>(Basic Books, 2021), just decades ago its mere mention caused sparks to fly. At the center of the debate were Russian American physicist George Gamow and British astrophysicist Fred Hoyle. Gamow insisted that a fiery explosion explained how the elements of the universe were created. Attacking the idea as half-baked, Hoyle countered that the universe was engaged in a never-ending process of creation. The battle was fierce. In the end, Gamow turned out to be right -- mostly -- and Hoyle, despite his many achievements, is remembered for giving the theory the silliest possible name: "The Big Bang." Halpern captures the brilliance of both thinkers and reminds us that even those proved wrong have much to teach us about boldness, imagination, and the universe itself.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3761</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    </item>
    <item>
      <title>Exploring Science Literacy and Public Engagement with Science</title>
      <description>Listen to this interview of Ayelet Baram-Tsabari. We talk about the accessibility of science using Google to scholars and students in languages beyond English and how scholars can de-jargonize their research to ensure increase their reach.
Avi Staiman is the founder and CEO of Academic Language Experts
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 31 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>44</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Ayelet Baram-Tsabari</itunes:subtitle>
      <itunes:summary>Listen to this interview of Ayelet Baram-Tsabari. We talk about the accessibility of science using Google to scholars and students in languages beyond English and how scholars can de-jargonize their research to ensure increase their reach.
Avi Staiman is the founder and CEO of Academic Language Experts
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Listen to this interview of <a href="https://ayeletlab.net.technion.ac.il/">Ayelet Baram-Tsabari</a>. We talk about the accessibility of science using Google to scholars and students in languages beyond English and how scholars can de-jargonize their research to ensure increase their reach.</p><p><a href="https://www.linkedin.com/in/avi-staiman-academic-language-experts/"><em>Avi Staiman</em></a><em> is the founder and CEO of </em><a href="https://www.aclang.com/"><em>Academic Language Experts</em></a></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2606</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[39ab98e0-6738-11ec-9c48-9b12d2701f86]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8253578526.mp3?updated=1640625002" length="0" type="audio/mpeg"/>
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    <item>
      <title>David Sulzer, "Music, Math, and Mind: The Physics and Neuroscience of Music" (Columbia UP, 2021)</title>
      <description>Why does a clarinet play at lower pitches than a flute? What does it mean for sounds to be in or out of tune? How are emotions carried by music? Do other animals perceive sound like we do? How might a musician use math to come up with new ideas?
This book offers a lively exploration of the mathematics, physics, and neuroscience that underlie music in a way that readers without scientific background can follow. David Sulzer, also known in the musical world as Dave Soldier, explains why the perception of music encompasses the physics of sound, the functions of the ear and deep-brain auditory pathways, and the physiology of emotion. He delves into topics such as the math by which musical scales, rhythms, tuning, and harmonies are derived, from the days of Pythagoras to technological manipulation of sound waves. Sulzer ranges from styles from around the world to canonical composers to hip-hop, the history of experimental music, and animal sound by songbirds, cetaceans, bats, and insects. He makes accessible a vast range of material, helping readers discover the universal principles behind the music they find meaningful.
Written for musicians and music lovers with any level of science and math proficiency, including none, Music, Math, and Mind: The Physics and Neuroscience of Music (Columbia UP, 2021) demystifies how music works while testifying to its beauty and wonder.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 30 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>109</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle></itunes:subtitle>
      <itunes:summary>Why does a clarinet play at lower pitches than a flute? What does it mean for sounds to be in or out of tune? How are emotions carried by music? Do other animals perceive sound like we do? How might a musician use math to come up with new ideas?
This book offers a lively exploration of the mathematics, physics, and neuroscience that underlie music in a way that readers without scientific background can follow. David Sulzer, also known in the musical world as Dave Soldier, explains why the perception of music encompasses the physics of sound, the functions of the ear and deep-brain auditory pathways, and the physiology of emotion. He delves into topics such as the math by which musical scales, rhythms, tuning, and harmonies are derived, from the days of Pythagoras to technological manipulation of sound waves. Sulzer ranges from styles from around the world to canonical composers to hip-hop, the history of experimental music, and animal sound by songbirds, cetaceans, bats, and insects. He makes accessible a vast range of material, helping readers discover the universal principles behind the music they find meaningful.
Written for musicians and music lovers with any level of science and math proficiency, including none, Music, Math, and Mind: The Physics and Neuroscience of Music (Columbia UP, 2021) demystifies how music works while testifying to its beauty and wonder.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Why does a clarinet play at lower pitches than a flute? What does it mean for sounds to be in or out of tune? How are emotions carried by music? Do other animals perceive sound like we do? How might a musician use math to come up with new ideas?</p><p>This book offers a lively exploration of the mathematics, physics, and neuroscience that underlie music in a way that readers without scientific background can follow. David Sulzer, also known in the musical world as Dave Soldier, explains why the perception of music encompasses the physics of sound, the functions of the ear and deep-brain auditory pathways, and the physiology of emotion. He delves into topics such as the math by which musical scales, rhythms, tuning, and harmonies are derived, from the days of Pythagoras to technological manipulation of sound waves. Sulzer ranges from styles from around the world to canonical composers to hip-hop, the history of experimental music, and animal sound by songbirds, cetaceans, bats, and insects. He makes accessible a vast range of material, helping readers discover the universal principles behind the music they find meaningful.</p><p>Written for musicians and music lovers with any level of science and math proficiency, including none, <a href="https://bookshop.org/a/12343/9780231193795"><em>Music, Math, and Mind: The Physics and Neuroscience of Music</em></a><em> </em>(Columbia UP, 2021) demystifies how music works while testifying to its beauty and wonder.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4459</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Laurie Winkless, "Sticky: The Secret Science of Surfaces" (Bloomsbury, 2022)</title>
      <description>In Sticky: The Secret Science of Surfaces (Bloomsbury, 2022), physicist Laurie Winkless brings the amazing world of surface science to the popular science market for the first time. Atoms and molecules like to stick together--take friction, for example. This force keeps our cars on the road, trains on the tracks and our feet on the ground; similarly, anything moving through water or air encounters drag, a force caused by the viscous nature of fluids. In other words, there's a lot of stickiness going on, all the time. But what do we actually know about the physics of stickiness? What's really going on? How has nature evolved to make use of it, and what technological advances has it enabled the human race to create?
Using her characteristic fun and relaxed tone, Laurie Winkless introduces readers to the glues, adhesives and textures that rule and improve stickiness to give plants and animals an advantage, as well as uncovering the physics behind our sense of touch. Sticky also shows how our understanding of slipperiness opened the door to high-speed flight and space travel, and asks why friction and other surface interactions can cause machinery to literally grind to a halt.
This is fundamentally a materials science book, but it touches on topics as broad as medicine, robotics and geology. And, as we'll discover, there are still many great mysteries. By exploring the tiniest of interactions, Laurie Winkless shows how civilization owes a great deal to our knowledge of the science of stickiness.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 29 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>108</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Laurie Winkless</itunes:subtitle>
      <itunes:summary>In Sticky: The Secret Science of Surfaces (Bloomsbury, 2022), physicist Laurie Winkless brings the amazing world of surface science to the popular science market for the first time. Atoms and molecules like to stick together--take friction, for example. This force keeps our cars on the road, trains on the tracks and our feet on the ground; similarly, anything moving through water or air encounters drag, a force caused by the viscous nature of fluids. In other words, there's a lot of stickiness going on, all the time. But what do we actually know about the physics of stickiness? What's really going on? How has nature evolved to make use of it, and what technological advances has it enabled the human race to create?
Using her characteristic fun and relaxed tone, Laurie Winkless introduces readers to the glues, adhesives and textures that rule and improve stickiness to give plants and animals an advantage, as well as uncovering the physics behind our sense of touch. Sticky also shows how our understanding of slipperiness opened the door to high-speed flight and space travel, and asks why friction and other surface interactions can cause machinery to literally grind to a halt.
This is fundamentally a materials science book, but it touches on topics as broad as medicine, robotics and geology. And, as we'll discover, there are still many great mysteries. By exploring the tiniest of interactions, Laurie Winkless shows how civilization owes a great deal to our knowledge of the science of stickiness.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="https://bookshop.org/a/12343/9781472950833"><em>Sticky: The Secret Science of Surfaces</em></a><em> </em>(Bloomsbury, 2022), physicist Laurie Winkless brings the amazing world of surface science to the popular science market for the first time. Atoms and molecules like to stick together--take friction, for example. This force keeps our cars on the road, trains on the tracks and our feet on the ground; similarly, anything moving through water or air encounters drag, a force caused by the viscous nature of fluids. In other words, there's a lot of stickiness going on, all the time. But what do we actually know about the physics of stickiness? What's really going on? How has nature evolved to make use of it, and what technological advances has it enabled the human race to create?</p><p>Using her characteristic fun and relaxed tone, Laurie Winkless introduces readers to the glues, adhesives and textures that rule and improve stickiness to give plants and animals an advantage, as well as uncovering the physics behind our sense of touch.<em> Sticky</em> also shows how our understanding of slipperiness opened the door to high-speed flight and space travel, and asks why friction and other surface interactions can cause machinery to literally grind to a halt.</p><p>This is fundamentally a materials science book, but it touches on topics as broad as medicine, robotics and geology. And, as we'll discover, there are still many great mysteries. By exploring the tiniest of interactions, Laurie Winkless shows how civilization owes a great deal to our knowledge of the science of stickiness.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3541</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Omar W. Nasim, "The Astronomer's Chair: A Visual and Cultural History" (MIT Press, 2021)</title>
      <description>The astronomer's chair is a leitmotif in the history of astronomy, appearing in hundreds of drawings, prints, and photographs from a variety of sources. Nineteenth-century stargazers in particular seemed eager to display their observing chairs--task-specific, often mechanically adjustable observatory furniture designed for use in conjunction with telescopes. But what message did they mean to send with these images? In
The Astronomer's Chair: A Visual and Cultural History (MIT Press, 2021), Omar W. Nasim considers these specialized chairs as both image and object, offering an original framework for linking visual and material cultures. Observing chairs, Nasim ingeniously argues, showcased and embodied forms of scientific labor, personae, and bodily practice that appealed to bourgeois sensibilities.
Viewing image and object as connected parts of moral, epistemic, and visual economies of empire, Nasim shows that nineteenth-century science was represented in terms of comfort and energy, and that "manly" postures of Western astronomers at work in specialized chairs were contrasted pointedly with images of "effete" and cross-legged "Oriental" astronomers. Extending his historical analysis into the twentieth century, Nasim reexamines what he argues to be a famous descendant of the astronomer's chair: Freud's psychoanalytic couch, which directed observations not outward toward the stars but inward toward the stratified universe of the psyche. But whether in conjunction with the mind or the heavens, the observing chair was a point of entry designed for specialists that also portrayed widely held assumptions about who merited epistemic access to these realms in the first place.
 Corinne Doria is a historian specializing in the social history of medicine. She holds the chair of history of medicine at the School of Advanced Studies of the University of Tyumen (Russian Federation) and teaches Disability Studies at Sciences-Po (Paris).
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 28 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>5</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Omar W. Nasim</itunes:subtitle>
      <itunes:summary>The astronomer's chair is a leitmotif in the history of astronomy, appearing in hundreds of drawings, prints, and photographs from a variety of sources. Nineteenth-century stargazers in particular seemed eager to display their observing chairs--task-specific, often mechanically adjustable observatory furniture designed for use in conjunction with telescopes. But what message did they mean to send with these images? In
The Astronomer's Chair: A Visual and Cultural History (MIT Press, 2021), Omar W. Nasim considers these specialized chairs as both image and object, offering an original framework for linking visual and material cultures. Observing chairs, Nasim ingeniously argues, showcased and embodied forms of scientific labor, personae, and bodily practice that appealed to bourgeois sensibilities.
Viewing image and object as connected parts of moral, epistemic, and visual economies of empire, Nasim shows that nineteenth-century science was represented in terms of comfort and energy, and that "manly" postures of Western astronomers at work in specialized chairs were contrasted pointedly with images of "effete" and cross-legged "Oriental" astronomers. Extending his historical analysis into the twentieth century, Nasim reexamines what he argues to be a famous descendant of the astronomer's chair: Freud's psychoanalytic couch, which directed observations not outward toward the stars but inward toward the stratified universe of the psyche. But whether in conjunction with the mind or the heavens, the observing chair was a point of entry designed for specialists that also portrayed widely held assumptions about who merited epistemic access to these realms in the first place.
 Corinne Doria is a historian specializing in the social history of medicine. She holds the chair of history of medicine at the School of Advanced Studies of the University of Tyumen (Russian Federation) and teaches Disability Studies at Sciences-Po (Paris).
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The astronomer's chair is a leitmotif in the history of astronomy, appearing in hundreds of drawings, prints, and photographs from a variety of sources. Nineteenth-century stargazers in particular seemed eager to display their observing chairs--task-specific, often mechanically adjustable observatory furniture designed for use in conjunction with telescopes. But what message did they mean to send with these images? In</p><p><a href="https://bookshop.org/a/12343/9780262045537"><em>The Astronomer's Chair: A Visual and Cultural History</em></a> (MIT Press, 2021),<em> </em>Omar W. Nasim considers these specialized chairs as both image and object, offering an original framework for linking visual and material cultures. Observing chairs, Nasim ingeniously argues, showcased and embodied forms of scientific labor, personae, and bodily practice that appealed to bourgeois sensibilities.</p><p>Viewing image and object as connected parts of moral, epistemic, and visual economies of empire, Nasim shows that nineteenth-century science was represented in terms of comfort and energy, and that "manly" postures of Western astronomers at work in specialized chairs were contrasted pointedly with images of "effete" and cross-legged "Oriental" astronomers. Extending his historical analysis into the twentieth century, Nasim reexamines what he argues to be a famous descendant of the astronomer's chair: Freud's psychoanalytic couch, which directed observations not outward toward the stars but inward toward the stratified universe of the psyche. But whether in conjunction with the mind or the heavens, the observing chair was a point of entry designed for specialists that also portrayed widely held assumptions about who merited epistemic access to these realms in the first place.</p><p><em> </em><a href="https://sas.utmn.ru/en/corinne-doria-en/"><em>Corinne Doria</em></a><em> is a historian specializing in the social history of medicine. She holds the chair of history of medicine at the School of Advanced Studies of the University of Tyumen (Russian Federation) and teaches Disability Studies at Sciences-Po (Paris).</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3763</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN4991267090.mp3?updated=1640185135" length="0" type="audio/mpeg"/>
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    <item>
      <title>Paul Steinhardt, "Inflated Expectations: A Cosmological Tale" (Open Agenda, 2021)</title>
      <description>We have developed two distinct books, Indiana Steinhardt and the Quest for Quasicrystals, and Inflated Expectations: A Cosmological Tale, based on Howard Burton’s in-depth, filmed conversations with Paul Steinhardt, the Albert Einstein Professor of Science and Director of the Center for Theoretical Science at Princeton University. The first one is called Indiana Steinhardt and the Quest for Quasicrystals. This extensive conversation provides a comprehensive account of a marvellous scientific adventure story in the quest for a natural quasicrystal. You will be taken on a fascinating ride through the physics of materials, from theory, to the laboratory, to the discovery of a new state of matter, that culminated in Paul Steinhardt’s dramatic Siberian expedition. Inflated Expectations: A Cosmological Tale is based on a second in-depth filmed conversation between Howard Burton and Paul Steinhardt. He is one of the originators of the theory of cosmic inflation and has become one of its fiercest critics. This fascinating conversation covers topics such as Paul Steinhardt’s scientific development, his formative experiences at Caltech including his encounters with Richard Feynman, his development and later scepticism of the theory of cosmic inflation, the response of the scientific community to the failure of this theory, his theory of cosmology, The Ekpyrotic Universe, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 28 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>88</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Paul Steinhardt</itunes:subtitle>
      <itunes:summary>We have developed two distinct books, Indiana Steinhardt and the Quest for Quasicrystals, and Inflated Expectations: A Cosmological Tale, based on Howard Burton’s in-depth, filmed conversations with Paul Steinhardt, the Albert Einstein Professor of Science and Director of the Center for Theoretical Science at Princeton University. The first one is called Indiana Steinhardt and the Quest for Quasicrystals. This extensive conversation provides a comprehensive account of a marvellous scientific adventure story in the quest for a natural quasicrystal. You will be taken on a fascinating ride through the physics of materials, from theory, to the laboratory, to the discovery of a new state of matter, that culminated in Paul Steinhardt’s dramatic Siberian expedition. Inflated Expectations: A Cosmological Tale is based on a second in-depth filmed conversation between Howard Burton and Paul Steinhardt. He is one of the originators of the theory of cosmic inflation and has become one of its fiercest critics. This fascinating conversation covers topics such as Paul Steinhardt’s scientific development, his formative experiences at Caltech including his encounters with Richard Feynman, his development and later scepticism of the theory of cosmic inflation, the response of the scientific community to the failure of this theory, his theory of cosmology, The Ekpyrotic Universe, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>We have developed two distinct books, <a href="https://ideas-on-film.com/paul-steinhardt/">Indiana Steinhardt and the Quest for Quasicrystals</a>, and <a href="https://ideas-on-film.com/paul-steinhardt/">Inflated Expectations: A Cosmological Tale</a>, based on Howard Burton’s in-depth, filmed conversations with Paul Steinhardt, the Albert Einstein Professor of Science and Director of the Center for Theoretical Science at Princeton University. The first one is called Indiana Steinhardt and the Quest for Quasicrystals. This extensive conversation provides a comprehensive account of a marvellous scientific adventure story in the quest for a natural quasicrystal. You will be taken on a fascinating ride through the physics of materials, from theory, to the laboratory, to the discovery of a new state of matter, that culminated in Paul Steinhardt’s dramatic Siberian expedition. Inflated Expectations: A Cosmological Tale is based on a second in-depth filmed conversation between Howard Burton and Paul Steinhardt. He is one of the originators of the theory of cosmic inflation and has become one of its fiercest critics. This fascinating conversation covers topics such as Paul Steinhardt’s scientific development, his formative experiences at Caltech including his encounters with Richard Feynman, his development and later scepticism of the theory of cosmic inflation, the response of the scientific community to the failure of this theory, his theory of cosmology, The Ekpyrotic Universe, and more.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>6465</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[130a24d8-5db3-11ec-91a0-c7c94c7719b3]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2589809847.mp3?updated=1625327793" length="0" type="audio/mpeg"/>
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    <item>
      <title>Claudia de Rham, “The Pull of the Stars” (Open Agenda, 2021)</title>
      <description>The Pull of the Stars is based on an in-depth filmed conversation between Howard Burton and Claudia de Rham, Professor of Theoretical Physics at Imperial College London. After inspiring insights about Claudia de Rham’s upbringing in Madagascar and her academic journey, this wide-ranging conversation explores her research in cosmology, the public perception and communication of science to the general public, gender issues and stereotypes in physics, and recommendations for physics teachers to inspire the next generation.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 24 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>78</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Claudia de Rham</itunes:subtitle>
      <itunes:summary>The Pull of the Stars is based on an in-depth filmed conversation between Howard Burton and Claudia de Rham, Professor of Theoretical Physics at Imperial College London. After inspiring insights about Claudia de Rham’s upbringing in Madagascar and her academic journey, this wide-ranging conversation explores her research in cosmology, the public perception and communication of science to the general public, gender issues and stereotypes in physics, and recommendations for physics teachers to inspire the next generation.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/claudia-de-rham/">The Pull of the Stars</a> is based on an in-depth filmed conversation between Howard Burton and Claudia de Rham, Professor of Theoretical Physics at Imperial College London. After inspiring insights about Claudia de Rham’s upbringing in Madagascar and her academic journey, this wide-ranging conversation explores her research in cosmology, the public perception and communication of science to the general public, gender issues and stereotypes in physics, and recommendations for physics teachers to inspire the next generation.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4565</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[6bfb63be-5db2-11ec-bfd4-475069abb18e]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4615587073.mp3?updated=1625324653" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Dave Goulson, "Silent Earth: Averting the Insect Apocalypse" (Harper, 2021)</title>
      <description>Drawing on thirty years of research, Goulson has written an accessible, fascinating, and important book that examines the evidence of an alarming drop in insect numbers around the world. "If we lose the insects, then everything is going to collapse," he warned in a recent interview in the New York Times--beginning with humans' food supply. The main cause of this decrease in insect populations is the indiscriminate use of chemical pesticides. Hence, Silent Earth: Averting the Insect Apocalypse (Harper, 2021)'s nod to Rachel Carson's classic Silent Spring which, when published in 1962, led to the global banning of DDT. This was a huge victory for science and ecological health at the time.
Yet before long, new pesticides just as lethal as DDT were introduced, and today, humanity finds itself on the brink of a new crisis. What will happen when the bugs are all gone? Goulson explores the intrinsic connection between climate change, nature, wildlife, and the shrinking biodiversity and analyzes the harmful impact for the earth and its inhabitants.
Meanwhile we have all read stories about hive collapse syndrome affecting honeybee colonies and the tragic decline of monarch butterflies in North America, and more. But it is not too late to arrest this decline, and Silent Earth should be the clarion call. Smart, eye-opening, and essential, Silent Earth is a forceful call to action to save our world, and ultimately, ourselves.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 24 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>106</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Dave Goulson</itunes:subtitle>
      <itunes:summary>Drawing on thirty years of research, Goulson has written an accessible, fascinating, and important book that examines the evidence of an alarming drop in insect numbers around the world. "If we lose the insects, then everything is going to collapse," he warned in a recent interview in the New York Times--beginning with humans' food supply. The main cause of this decrease in insect populations is the indiscriminate use of chemical pesticides. Hence, Silent Earth: Averting the Insect Apocalypse (Harper, 2021)'s nod to Rachel Carson's classic Silent Spring which, when published in 1962, led to the global banning of DDT. This was a huge victory for science and ecological health at the time.
Yet before long, new pesticides just as lethal as DDT were introduced, and today, humanity finds itself on the brink of a new crisis. What will happen when the bugs are all gone? Goulson explores the intrinsic connection between climate change, nature, wildlife, and the shrinking biodiversity and analyzes the harmful impact for the earth and its inhabitants.
Meanwhile we have all read stories about hive collapse syndrome affecting honeybee colonies and the tragic decline of monarch butterflies in North America, and more. But it is not too late to arrest this decline, and Silent Earth should be the clarion call. Smart, eye-opening, and essential, Silent Earth is a forceful call to action to save our world, and ultimately, ourselves.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Drawing on thirty years of research, Goulson has written an accessible, fascinating, and important book that examines the evidence of an alarming drop in insect numbers around the world. "If we lose the insects, then everything is going to collapse," he warned in a recent interview in the <em>New York Times</em>--beginning with humans' food supply. The main cause of this decrease in insect populations is the indiscriminate use of chemical pesticides. Hence, <a href="https://bookshop.org/a/12343/9780063088207"><em>Silent Earth: Averting the Insect Apocalypse</em></a> (Harper, 2021)'s nod to Rachel Carson's classic <em>Silent Spring</em> which, when published in 1962, led to the global banning of DDT. This was a huge victory for science and ecological health at the time.</p><p>Yet before long, new pesticides just as lethal as DDT were introduced, and today, humanity finds itself on the brink of a new crisis. What will happen when the bugs are all gone? Goulson explores the intrinsic connection between climate change, nature, wildlife, and the shrinking biodiversity and analyzes the harmful impact for the earth and its inhabitants.</p><p>Meanwhile we have all read stories about hive collapse syndrome affecting honeybee colonies and the tragic decline of monarch butterflies in North America, and more. But it is not too late to arrest this decline, and <em>Silent Earth</em> should be the clarion call. Smart, eye-opening, and essential, <em>Silent Earth</em> is a forceful call to action to save our world, and ultimately, ourselves.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3494</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[460495fa-5f78-11ec-90f5-1bc38cc69f23]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1414416966.mp3?updated=1639773243" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Melinda Baldwin, "Making 'Nature': The History of a Scientific Journal" (U Chicago Press, 2015)</title>
      <description>Listen to this interview of Melinda Baldwin about her book Making 'Nature': The History of a Scientific Journal (U Chicago Press, 2015). Melinda is AIP Endowed Professor in History of Natural Sciences at the University of Maryland. We talk about Nature, naturally.
Melinda Baldwin : "Yes, I think it will be surprising to many scientists today that Nature has really been thoroughly shaped by the journal's contributors and readership, and certainly to the people who view Nature's editorial staff as these all-powerful gatekeepers of scientific success. But, I love the list you just gave of all the people who are involved in making a journal — the referees, the editors, the authors, the readers, the publishing executives — because that can really be one of the things that we lose sight of when discussing modern scholarly communication: The professional advancement of scientists is so heavily dependent on being published in these peer-reviewed journals, and according to where a scientist works, things like tenure, promotion, and even just getting hired can depend heavily on getting into a particular type of journal, a prestigious journal that rejects many submissions. And so it can seem like the power to shape scholarly communication is only in the hands of the editors and in the hands of the anonymous referees who review papers. But looking at the history of scientific publication, you really see a story where a lot more figures are influential in shaping the way that the scientific journal has developed. And you see that, of course, with Nature, where it was definitely contributors' needs and interests that drove some significant changes in the format and the audience of the journal."
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 24 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>43</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Melinda Baldwin</itunes:subtitle>
      <itunes:summary>Listen to this interview of Melinda Baldwin about her book Making 'Nature': The History of a Scientific Journal (U Chicago Press, 2015). Melinda is AIP Endowed Professor in History of Natural Sciences at the University of Maryland. We talk about Nature, naturally.
Melinda Baldwin : "Yes, I think it will be surprising to many scientists today that Nature has really been thoroughly shaped by the journal's contributors and readership, and certainly to the people who view Nature's editorial staff as these all-powerful gatekeepers of scientific success. But, I love the list you just gave of all the people who are involved in making a journal — the referees, the editors, the authors, the readers, the publishing executives — because that can really be one of the things that we lose sight of when discussing modern scholarly communication: The professional advancement of scientists is so heavily dependent on being published in these peer-reviewed journals, and according to where a scientist works, things like tenure, promotion, and even just getting hired can depend heavily on getting into a particular type of journal, a prestigious journal that rejects many submissions. And so it can seem like the power to shape scholarly communication is only in the hands of the editors and in the hands of the anonymous referees who review papers. But looking at the history of scientific publication, you really see a story where a lot more figures are influential in shaping the way that the scientific journal has developed. And you see that, of course, with Nature, where it was definitely contributors' needs and interests that drove some significant changes in the format and the audience of the journal."
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Listen to this interview of Melinda Baldwin about her book <a href="https://bookshop.org/a/12343/9780226261454"><em>Making 'Nature': The History of a Scientific Journal</em></a><em> </em>(U Chicago Press, 2015). Melinda is AIP Endowed Professor in History of Natural Sciences at the University of Maryland. We talk about <em>Nature</em>, naturally.</p><p>Melinda Baldwin : "Yes, I think it will be surprising to many scientists today that <em>Nature</em> has really been thoroughly shaped by the journal's contributors and readership, and certainly to the people who view <em>Nature</em>'s editorial staff as these all-powerful gatekeepers of scientific success. But, I love the list you just gave of all the people who are involved in making a journal — the referees, the editors, the authors, the readers, the publishing executives — because that can really be one of the things that we lose sight of when discussing modern scholarly communication: The professional advancement of scientists is so heavily dependent on being published in these peer-reviewed journals, and according to where a scientist works, things like tenure, promotion, and even just getting hired can depend heavily on getting into a particular type of journal, a prestigious journal that rejects many submissions. And so it can seem like the power to shape scholarly communication is only in the hands of the editors and in the hands of the anonymous referees who review papers. But looking at the history of scientific publication, you really see a story where a lot more figures are influential in shaping the way that the scientific journal has developed. And you see that, of course, with <em>Nature</em>, where it was definitely contributors' needs and interests that drove some significant changes in the format and the audience of the journal."</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3727</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN2069614169.mp3?updated=1640358692" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>David Politzer, “The Physics of Banjos” (Open Agenda, 2021)</title>
      <description>The Physics of Banjos is based on an in-depth filmed conversation between Howard Burton and David Politzer, 2004 Nobel Laureate and the Richard Chace Tolman Professor of Theoretical Physics at Caltech. This extensive conversation examines many of the intriguing aspects associated with the physics of banjos, including the ocarina effect, string-stretching, the subtleties of how we hear pitch, transient growth, and the mysterious ringing sound of banjos; while also touching briefly on contemporary issues in black holes and particle physics.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 23 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>73</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with David Politzer</itunes:subtitle>
      <itunes:summary>The Physics of Banjos is based on an in-depth filmed conversation between Howard Burton and David Politzer, 2004 Nobel Laureate and the Richard Chace Tolman Professor of Theoretical Physics at Caltech. This extensive conversation examines many of the intriguing aspects associated with the physics of banjos, including the ocarina effect, string-stretching, the subtleties of how we hear pitch, transient growth, and the mysterious ringing sound of banjos; while also touching briefly on contemporary issues in black holes and particle physics.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/david-politzer/">The Physics of Banjos</a> is based on an in-depth filmed conversation between Howard Burton and David Politzer, 2004 Nobel Laureate and the Richard Chace Tolman Professor of Theoretical Physics at Caltech. This extensive conversation examines many of the intriguing aspects associated with the physics of banjos, including the ocarina effect, string-stretching, the subtleties of how we hear pitch, transient growth, and the mysterious ringing sound of banjos; while also touching briefly on contemporary issues in black holes and particle physics.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>10379</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[858a9cf0-5db2-11ec-b86b-d3dcd299df7a]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9849218006.mp3?updated=1624812503" length="0" type="audio/mpeg"/>
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    <item>
      <title>Rocky Kolb, “A Universe of Particles: Cosmological Reflections” (Open Agenda, 2021)</title>
      <description>A Universe of Particles: Cosmological Reflections is based on an in-depth filmed conversation between Howard Burton and Rocky Kolb, the Arthur Holly Compton Distinguished Service Professor of Astronomy and Astrophysics at the University of Chicago. After an inspiring story of how Rocky Kolb became interested in science, this wide-ranging conversation covers topics such as the development of and his work on inflationary cosmology, the Standard Model of particle physics, dark matter, dark energy, Modified Newtonian Dynamics (MOND), the Large Hadron Collider, advice for high-school teachers to ignite a passion for learning in students, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 16 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>53</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Rocky Kolb</itunes:subtitle>
      <itunes:summary>A Universe of Particles: Cosmological Reflections is based on an in-depth filmed conversation between Howard Burton and Rocky Kolb, the Arthur Holly Compton Distinguished Service Professor of Astronomy and Astrophysics at the University of Chicago. After an inspiring story of how Rocky Kolb became interested in science, this wide-ranging conversation covers topics such as the development of and his work on inflationary cosmology, the Standard Model of particle physics, dark matter, dark energy, Modified Newtonian Dynamics (MOND), the Large Hadron Collider, advice for high-school teachers to ignite a passion for learning in students, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/rocky-kolb/">A Universe of Particles: Cosmological Reflections</a> is based on an in-depth filmed conversation between Howard Burton and Rocky Kolb, the Arthur Holly Compton Distinguished Service Professor of Astronomy and Astrophysics at the University of Chicago. After an inspiring story of how Rocky Kolb became interested in science, this wide-ranging conversation covers topics such as the development of and his work on inflationary cosmology, the Standard Model of particle physics, dark matter, dark energy, Modified Newtonian Dynamics (MOND), the Large Hadron Collider, advice for high-school teachers to ignite a passion for learning in students, and more.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5013</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[308e2c7a-5db3-11ec-8d76-2b28c85608da]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4538752315.mp3?updated=1624815466" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Ginny Smith, "Overloaded: How Every Aspect of Your Life is Influenced by Your Brain Chemicals" (Bloomsbury, 2021)</title>
      <description>From adrenaline to dopamine, most of us are familiar with the chemicals that control us. They are the hormones and neurotransmitters that our brains run on, and Overloaded: How Every Aspect of Your Life is Influenced by Your Brain Chemicals (Bloomsbury, 2021) looks at the role they play in every aspect of our lives, from what we remember, how we make decisions and who we love to basic survival drives such as hunger, fear and sleep.
Author Ginny Smith gets to the bottom of exactly what these tiny molecules do. What role do cortisol and adrenaline play in memory formation? Is it our brain chemicals that cause us to be 'hangry'? How do hormones and neurotransmitters affect the trajectory of our romantic relationships? These are just some of the questions that Ginny will answer as she meets the scientists at the cutting-edge of research into the world of brain chemistry who are uncovering the unexpected connections between these crucial chemicals that touch every aspect of our lives.
Listeners might be interested in Braintastic.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 10 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>104</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Ginny Smith</itunes:subtitle>
      <itunes:summary>From adrenaline to dopamine, most of us are familiar with the chemicals that control us. They are the hormones and neurotransmitters that our brains run on, and Overloaded: How Every Aspect of Your Life is Influenced by Your Brain Chemicals (Bloomsbury, 2021) looks at the role they play in every aspect of our lives, from what we remember, how we make decisions and who we love to basic survival drives such as hunger, fear and sleep.
Author Ginny Smith gets to the bottom of exactly what these tiny molecules do. What role do cortisol and adrenaline play in memory formation? Is it our brain chemicals that cause us to be 'hangry'? How do hormones and neurotransmitters affect the trajectory of our romantic relationships? These are just some of the questions that Ginny will answer as she meets the scientists at the cutting-edge of research into the world of brain chemistry who are uncovering the unexpected connections between these crucial chemicals that touch every aspect of our lives.
Listeners might be interested in Braintastic.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>From adrenaline to dopamine, most of us are familiar with the chemicals that control us. They are the hormones and neurotransmitters that our brains run on, and <a href="https://bookshop.org/a/12343/9781472969347"><em>Overloaded: How Every Aspect of Your Life is Influenced by Your Brain Chemicals</em></a><em> </em>(Bloomsbury, 2021) looks at the role they play in every aspect of our lives, from what we remember, how we make decisions and who we love to basic survival drives such as hunger, fear and sleep.</p><p>Author Ginny Smith gets to the bottom of exactly what these tiny molecules do. What role do cortisol and adrenaline play in memory formation? Is it our brain chemicals that cause us to be 'hangry'? How do hormones and neurotransmitters affect the trajectory of our romantic relationships? These are just some of the questions that Ginny will answer as she meets the scientists at the cutting-edge of research into the world of brain chemistry who are uncovering the unexpected connections between these crucial chemicals that touch every aspect of our lives.</p><p>Listeners might be interested in <a href="https://www.braintasticscience.com/">Braintastic</a>.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3672</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN3885899553.mp3?updated=1638726180" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Noémi Tousignant, "Edges of Exposure: Toxicology and the Problem of Capacity in Postcolonial Senegal" (Duke UP, 2018)</title>
      <description>What is “capacity”? In science research and health interventions, it typically refers to the relative availability of equipment, infrastructure, personnel, and skills needed to get a job done. Noémi Tousignant’s book, Edges of Exposure: Toxicology and the Problem of Capacity in Postcolonial Senegal (Duke UP, 2018), feels its way into the experience of capacity to observe a crucial characteristic. Capacity has “temporal qualities.”
Waiting, interrupting, prolonging, repairing: these processes show that the elements of lab science and public health called “capacity” operate with different rhythms that often fail to synchronize or to be formally acknowledged. Yet the material world of capacity also implies a direction, which orients scientists to (im)possibilities for better futures, “to moral imaginations of responsibility and commitment.”
The book won the 2020 Ludwik Fleck prize for outstanding book from the Society for the Social Studies of Science. The award signals the book’s broad relevance for anyone interested in critical studies of science, technology, and health; intrigued by the phenomenology of time; keen to combine training in history with ethnographic methods; or interested in postcolonial studies, especially Africa.
The book is based on Tousignant’s field work in Senegal from in 2010 and 2011 studying professional toxicologists across three institutions as they “improvised and imagined a more capacious and protective toxicology.” In terms of empirical content, this work is important for anyone interested in environmental contamination and the politics of poisoning lands, waters, and bodies.
The interview also refers to the work of Gabrielle Hecht on exposure and imaginaries of Africa, Julie Livingstone on improvisation and slow risks, Joanna Crane on commodification of global health, and Monika Krause on how NGOs perform worthy projects. This interview was a collaborative effort among Professor Laura Stark and students at Vanderbilt University in the course “American Medicine &amp; the World.” Please email Laura with any feedback on the interview or questions about the collaborative interview process.
Laura Stark is Associate Professor at Vanderbilt University’s Center for Medicine, Health, and Society, and Associate Editor of the journal History &amp; Theory.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 09 Dec 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>301</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Noémi Tousignant</itunes:subtitle>
      <itunes:summary>What is “capacity”? In science research and health interventions, it typically refers to the relative availability of equipment, infrastructure, personnel, and skills needed to get a job done. Noémi Tousignant’s book, Edges of Exposure: Toxicology and the Problem of Capacity in Postcolonial Senegal (Duke UP, 2018), feels its way into the experience of capacity to observe a crucial characteristic. Capacity has “temporal qualities.”
Waiting, interrupting, prolonging, repairing: these processes show that the elements of lab science and public health called “capacity” operate with different rhythms that often fail to synchronize or to be formally acknowledged. Yet the material world of capacity also implies a direction, which orients scientists to (im)possibilities for better futures, “to moral imaginations of responsibility and commitment.”
The book won the 2020 Ludwik Fleck prize for outstanding book from the Society for the Social Studies of Science. The award signals the book’s broad relevance for anyone interested in critical studies of science, technology, and health; intrigued by the phenomenology of time; keen to combine training in history with ethnographic methods; or interested in postcolonial studies, especially Africa.
The book is based on Tousignant’s field work in Senegal from in 2010 and 2011 studying professional toxicologists across three institutions as they “improvised and imagined a more capacious and protective toxicology.” In terms of empirical content, this work is important for anyone interested in environmental contamination and the politics of poisoning lands, waters, and bodies.
The interview also refers to the work of Gabrielle Hecht on exposure and imaginaries of Africa, Julie Livingstone on improvisation and slow risks, Joanna Crane on commodification of global health, and Monika Krause on how NGOs perform worthy projects. This interview was a collaborative effort among Professor Laura Stark and students at Vanderbilt University in the course “American Medicine &amp; the World.” Please email Laura with any feedback on the interview or questions about the collaborative interview process.
Laura Stark is Associate Professor at Vanderbilt University’s Center for Medicine, Health, and Society, and Associate Editor of the journal History &amp; Theory.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>What is “capacity”? In science research and health interventions, it typically refers to the relative availability of equipment, infrastructure, personnel, and skills needed to get a job done. Noémi Tousignant’s book, <a href="https://bookshop.org/a/12343/9780822371243"><em>Edges of Exposure: Toxicology and the Problem of Capacity in Postcolonial Senegal</em></a><em> </em>(Duke UP, 2018), feels its way into the experience of capacity to observe a crucial characteristic. Capacity has “temporal qualities.”</p><p>Waiting, interrupting, prolonging, repairing: these processes show that the elements of lab science and public health called “capacity” operate with different rhythms that often fail to synchronize or to be formally acknowledged. Yet the material world of capacity also implies a direction, which orients scientists to (im)possibilities for better futures, “to moral imaginations of responsibility and commitment.”</p><p>The book won the 2020 Ludwik Fleck prize for outstanding book from the Society for the Social Studies of Science. The award signals the book’s broad relevance for anyone interested in critical studies of science, technology, and health; intrigued by the phenomenology of time; keen to combine training in history with ethnographic methods; or interested in postcolonial studies, especially Africa.</p><p>The book is based on Tousignant’s field work in Senegal from in 2010 and 2011 studying professional toxicologists across three institutions as they “improvised and imagined a more capacious and protective toxicology.” In terms of empirical content, this work is important for anyone interested in environmental contamination and the politics of poisoning lands, waters, and bodies.</p><p>The interview also refers to the work of Gabrielle Hecht on exposure and imaginaries of Africa, Julie Livingstone on improvisation and slow risks, Joanna Crane on commodification of global health, and Monika Krause on how NGOs perform worthy projects. This interview was a collaborative effort among Professor Laura Stark and students at Vanderbilt University in the course “American Medicine &amp; the World.” Please email Laura with any feedback on the interview or questions about the collaborative interview process.</p><p><a href="http://history.nih.gov/about/stark.html"><em>Laura Stark</em></a><em> is Associate Professor at Vanderbilt University’s Center for Medicine, Health, and Society, and Associate Editor of the journal </em><a href="https://www.facebook.com/HistoryandTheory"><em>History &amp; Theory</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2768</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN1523969192.mp3?updated=1639054637" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Scott Tremaine, “Astrophysical Wonders” (Open Agenda, 2021)</title>
      <description>Astrophysical Wonders is based on an in-depth filmed conversation between Howard Burton and Scott Tremaine, Professor Emeritus of Astrophysics at the Institute for Advanced Study and an internationally renowned expert in both galactic-scale and planetary-scale astronomy. Topics that are part of this extensive conversation include the process of scientific discovery, in particular related to comets, Pluto, planetary rings, shepherding satellites, exoplanets, chaos theory and the formation, stability and uniqueness of our solar system. Further topics include galactic-scale astronomy, galaxy formation, dark matter, quasars, black holes, the large-scale structure of the universe and many outstanding open questions of contemporary astrophysics.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 18 Nov 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>94</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Scott Tremaine</itunes:subtitle>
      <itunes:summary>Astrophysical Wonders is based on an in-depth filmed conversation between Howard Burton and Scott Tremaine, Professor Emeritus of Astrophysics at the Institute for Advanced Study and an internationally renowned expert in both galactic-scale and planetary-scale astronomy. Topics that are part of this extensive conversation include the process of scientific discovery, in particular related to comets, Pluto, planetary rings, shepherding satellites, exoplanets, chaos theory and the formation, stability and uniqueness of our solar system. Further topics include galactic-scale astronomy, galaxy formation, dark matter, quasars, black holes, the large-scale structure of the universe and many outstanding open questions of contemporary astrophysics.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/scott-tremaine/">Astrophysical Wonders</a> is based on an in-depth filmed conversation between Howard Burton and Scott Tremaine, Professor Emeritus of Astrophysics at the Institute for Advanced Study and an internationally renowned expert in both galactic-scale and planetary-scale astronomy. Topics that are part of this extensive conversation include the process of scientific discovery, in particular related to comets, Pluto, planetary rings, shepherding satellites, exoplanets, chaos theory and the formation, stability and uniqueness of our solar system. Further topics include galactic-scale astronomy, galaxy formation, dark matter, quasars, black holes, the large-scale structure of the universe and many outstanding open questions of contemporary astrophysics.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>8232</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[4a8af676-5db3-11ec-8576-638d972038b5]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6858438011.mp3?updated=1625327256" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Jill Tartar, “SETI: Astronomy as a Contact Sport” (Open Agenda, 2021)</title>
      <description>SETI: Astronomy as a Contact Sport is based on an in-depth filmed conversation between Howard Burton and Jill Tarter, Chair Emeritus for SETI Research at SETI Institute and Former Director of the Center for SETI Research. Astronomer Jill Tarter has spent the majority of her professional life driving forward the science and technology of the Search for Extraterrestrial Intelligence, rigorously scanning the sky for the signs of some signal sent to us from outer space. This wide-ranging conversation explores the history of the scientific search for extraterrestrial intelligence, what the present state is of our quest for signals from other planets, what those signals might look like and how we can interpret them, how SETI research has a surprisingly positive effect on other technologies, how citizens can get involved with astronomy and much more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 16 Nov 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>92</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Jill Tartar</itunes:subtitle>
      <itunes:summary>SETI: Astronomy as a Contact Sport is based on an in-depth filmed conversation between Howard Burton and Jill Tarter, Chair Emeritus for SETI Research at SETI Institute and Former Director of the Center for SETI Research. Astronomer Jill Tarter has spent the majority of her professional life driving forward the science and technology of the Search for Extraterrestrial Intelligence, rigorously scanning the sky for the signs of some signal sent to us from outer space. This wide-ranging conversation explores the history of the scientific search for extraterrestrial intelligence, what the present state is of our quest for signals from other planets, what those signals might look like and how we can interpret them, how SETI research has a surprisingly positive effect on other technologies, how citizens can get involved with astronomy and much more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/jill-tarter/">SETI: Astronomy as a Contact Sport</a> is based on an in-depth filmed conversation between Howard Burton and Jill Tarter, Chair Emeritus for SETI Research at SETI Institute and Former Director of the Center for SETI Research. Astronomer Jill Tarter has spent the majority of her professional life driving forward the science and technology of the Search for Extraterrestrial Intelligence, rigorously scanning the sky for the signs of some signal sent to us from outer space. This wide-ranging conversation explores the history of the scientific search for extraterrestrial intelligence, what the present state is of our quest for signals from other planets, what those signals might look like and how we can interpret them, how SETI research has a surprisingly positive effect on other technologies, how citizens can get involved with astronomy and much more.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5318</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[b0700748-5db2-11ec-94bb-df5eadb02f69]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2333395436.mp3?updated=1625327419" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Paul Steinhardt, “Indiana Steinhardt and the Quest for Quasicrystals” (Open Agenda, 2021)</title>
      <description>We have developed two distinct books, Indiana Steinhardt and the Quest for Quasicrystals, and Inflated Expectations: A Cosmological Tale, based on Howard Burton’s in-depth, filmed conversations with Paul Steinhardt, the Albert Einstein Professor of Science and Director of the Center for Theoretical Science at Princeton University. The first one is called Indiana Steinhardt and the Quest for Quasicrystals. This extensive conversation provides a comprehensive account of a marvellous scientific adventure story in the quest for a natural quasicrystal. You will be taken on a fascinating ride through the physics of materials, from theory, to the laboratory, to the discovery of a new state of matter, that culminated in Paul Steinhardt’s dramatic Siberian expedition. Inflated Expectations: A Cosmological Tale is based on a second in-depth filmed conversation between Howard Burton and Paul Steinhardt. He is one of the originators of the theory of cosmic inflation and has become one of its fiercest critics. This fascinating conversation covers topics such as Paul Steinhardt’s scientific development, his formative experiences at Caltech including his encounters with Richard Feynman, his development and later scepticism of the theory of cosmic inflation, the response of the scientific community to the failure of this theory, his theory of cosmology, The Ekpyrotic Universe, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 11 Nov 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>89</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Paul Steinhardt</itunes:subtitle>
      <itunes:summary>We have developed two distinct books, Indiana Steinhardt and the Quest for Quasicrystals, and Inflated Expectations: A Cosmological Tale, based on Howard Burton’s in-depth, filmed conversations with Paul Steinhardt, the Albert Einstein Professor of Science and Director of the Center for Theoretical Science at Princeton University. The first one is called Indiana Steinhardt and the Quest for Quasicrystals. This extensive conversation provides a comprehensive account of a marvellous scientific adventure story in the quest for a natural quasicrystal. You will be taken on a fascinating ride through the physics of materials, from theory, to the laboratory, to the discovery of a new state of matter, that culminated in Paul Steinhardt’s dramatic Siberian expedition. Inflated Expectations: A Cosmological Tale is based on a second in-depth filmed conversation between Howard Burton and Paul Steinhardt. He is one of the originators of the theory of cosmic inflation and has become one of its fiercest critics. This fascinating conversation covers topics such as Paul Steinhardt’s scientific development, his formative experiences at Caltech including his encounters with Richard Feynman, his development and later scepticism of the theory of cosmic inflation, the response of the scientific community to the failure of this theory, his theory of cosmology, The Ekpyrotic Universe, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>We have developed two distinct books, <a href="https://ideas-on-film.com/paul-steinhardt/">Indiana Steinhardt and the Quest for Quasicrystals</a>, and <a href="https://ideas-on-film.com/paul-steinhardt/">Inflated Expectations: A Cosmological Tale</a>, based on Howard Burton’s in-depth, filmed conversations with Paul Steinhardt, the Albert Einstein Professor of Science and Director of the Center for Theoretical Science at Princeton University. The first one is called Indiana Steinhardt and the Quest for Quasicrystals. This extensive conversation provides a comprehensive account of a marvellous scientific adventure story in the quest for a natural quasicrystal. You will be taken on a fascinating ride through the physics of materials, from theory, to the laboratory, to the discovery of a new state of matter, that culminated in Paul Steinhardt’s dramatic Siberian expedition. Inflated Expectations: A Cosmological Tale is based on a second in-depth filmed conversation between Howard Burton and Paul Steinhardt. He is one of the originators of the theory of cosmic inflation and has become one of its fiercest critics. This fascinating conversation covers topics such as Paul Steinhardt’s scientific development, his formative experiences at Caltech including his encounters with Richard Feynman, his development and later scepticism of the theory of cosmic inflation, the response of the scientific community to the failure of this theory, his theory of cosmology, The Ekpyrotic Universe, and more.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>7920</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[22d543ca-5db3-11ec-9c0b-e7390a70fce2]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3537575995.mp3?updated=1625327681" length="0" type="audio/mpeg"/>
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    <item>
      <title>Lee Smolin, “Examining Time” (Open Agenda, 2021)</title>
      <description>Examining Time is based on an in-depth filmed conversation between Howard Burton and Lee Smolin who is a faculty member of Perimeter Institute for Theoretical Physics. The basis of this wide-ranging conversation are Lee Smolin’s books Life of the Cosmos and Time Reborn. This detailed discussion offers an investigation of time, both what it is and how the true nature of it impacts our world and future and provides behind-the scenes insights into the development of Lee Smolin’s groundbreaking theory on the nature of time.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 08 Nov 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>86</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Lee Smolin</itunes:subtitle>
      <itunes:summary>Examining Time is based on an in-depth filmed conversation between Howard Burton and Lee Smolin who is a faculty member of Perimeter Institute for Theoretical Physics. The basis of this wide-ranging conversation are Lee Smolin’s books Life of the Cosmos and Time Reborn. This detailed discussion offers an investigation of time, both what it is and how the true nature of it impacts our world and future and provides behind-the scenes insights into the development of Lee Smolin’s groundbreaking theory on the nature of time.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/lee-smolin/">Examining Time</a> is based on an in-depth filmed conversation between Howard Burton and Lee Smolin who is a faculty member of Perimeter Institute for Theoretical Physics. The basis of this wide-ranging conversation are Lee Smolin’s books Life of the Cosmos and Time Reborn. This detailed discussion offers an investigation of time, both what it is and how the true nature of it impacts our world and future and provides behind-the scenes insights into the development of Lee Smolin’s groundbreaking theory on the nature of time.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>7571</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[e631a760-5db2-11ec-a31a-2fc512612205]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8079664397.mp3?updated=1625327981" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Justin K. Stearns, "Revealed Sciences: The Natural Sciences in Islam in Seventeenth-Century Morocco" (Cambridge UP, 2021)</title>
      <description>Islam's contributions to the natural sciences has long been recognized within the Euro-American academy, however, such studies tend to include one of a number of narrative tropes, either emphasizing the "Golden Age" model, focusing on scientific productions in Baghdad and other centers around the first millennium CE; emphasizing Islam's role in transmitting and preserving Greco-Roman learning, and enabling it to be re-translated into Latin around the time of the Renaissance; and the vast majority suggest that the majority of Islamic scientific output came to a halt around toward the end 16th century.
In Revealed Sciences: The Natural Sciences in Islam in Seventeenth-Century Morocco (Cambridge UP, 2021), Justin K. Stearns argues that there is ample evidence that scientific production continued apace, if, in fact, we know where to look for it. Demonstrating the vibrancy of seventeenth century Morocco, Revealed Sciences examines how science flourished during this period, albeit in a different manner than that of Europe. Offering an innovative analysis of the relationship between religious thought and the natural sciences, Stearns shows how nineteenth and twentieth century European and Middle Eastern scholars jointly developed a narrative of the decline of post-formative Islamic thought, including the fate of the natural sciences in the Muslim world.
Challenging these depictions, Stearns uses numerous close readings of legal, biographical, and classificatory texts - alongside medical, astronomical, and alchemical works - to establish a detailed overview of the place of the natural sciences in the scholarly and educational landscapes of the early modern Maghreb, and considers non-teleological possibilities for understanding a persistent engagement with the natural sciences in Morocco and elsewhere.
Justin K. Stearns is Associate Professor of Arab Crossroads Studies at New York University Abu Dhabi, where his research interests focus on the intersection of law, science, and theology in the pre-modern Middle East. He is the author of Infectious Ideas: Contagion in Premodern Islamic and Christian Thought in the Western Mediterranean (2011), and an edition and translation of al-Hasan al-Yusi's The Discourses, Vol. I (2020).
Christopher S. Rose is a social historian of medicine focusing on Egypt and the Eastern Mediterranean in the 19th and 20th century. He currently teaches History at St. Edward's University in Austin, Texas and Our Lady of the Lake University in San Antonio, Texas.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 05 Nov 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>150</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Justin K. Stearns</itunes:subtitle>
      <itunes:summary>Islam's contributions to the natural sciences has long been recognized within the Euro-American academy, however, such studies tend to include one of a number of narrative tropes, either emphasizing the "Golden Age" model, focusing on scientific productions in Baghdad and other centers around the first millennium CE; emphasizing Islam's role in transmitting and preserving Greco-Roman learning, and enabling it to be re-translated into Latin around the time of the Renaissance; and the vast majority suggest that the majority of Islamic scientific output came to a halt around toward the end 16th century.
In Revealed Sciences: The Natural Sciences in Islam in Seventeenth-Century Morocco (Cambridge UP, 2021), Justin K. Stearns argues that there is ample evidence that scientific production continued apace, if, in fact, we know where to look for it. Demonstrating the vibrancy of seventeenth century Morocco, Revealed Sciences examines how science flourished during this period, albeit in a different manner than that of Europe. Offering an innovative analysis of the relationship between religious thought and the natural sciences, Stearns shows how nineteenth and twentieth century European and Middle Eastern scholars jointly developed a narrative of the decline of post-formative Islamic thought, including the fate of the natural sciences in the Muslim world.
Challenging these depictions, Stearns uses numerous close readings of legal, biographical, and classificatory texts - alongside medical, astronomical, and alchemical works - to establish a detailed overview of the place of the natural sciences in the scholarly and educational landscapes of the early modern Maghreb, and considers non-teleological possibilities for understanding a persistent engagement with the natural sciences in Morocco and elsewhere.
Justin K. Stearns is Associate Professor of Arab Crossroads Studies at New York University Abu Dhabi, where his research interests focus on the intersection of law, science, and theology in the pre-modern Middle East. He is the author of Infectious Ideas: Contagion in Premodern Islamic and Christian Thought in the Western Mediterranean (2011), and an edition and translation of al-Hasan al-Yusi's The Discourses, Vol. I (2020).
Christopher S. Rose is a social historian of medicine focusing on Egypt and the Eastern Mediterranean in the 19th and 20th century. He currently teaches History at St. Edward's University in Austin, Texas and Our Lady of the Lake University in San Antonio, Texas.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Islam's contributions to the natural sciences has long been recognized within the Euro-American academy, however, such studies tend to include one of a number of narrative tropes, either emphasizing the "Golden Age" model, focusing on scientific productions in Baghdad and other centers around the first millennium CE; emphasizing Islam's role in transmitting and preserving Greco-Roman learning, and enabling it to be re-translated into Latin around the time of the Renaissance; and the vast majority suggest that the majority of Islamic scientific output came to a halt around toward the end 16th century.</p><p>In <a href="https://bookshop.org/a/12343/9781107065574"><em>Revealed Sciences: The Natural Sciences in Islam in Seventeenth-Century Morocco</em></a> (Cambridge UP, 2021), Justin K. Stearns argues that there is ample evidence that scientific production continued apace, if, in fact, we know where to look for it. Demonstrating the vibrancy of seventeenth century Morocco, <em>Revealed Sciences</em> examines how science flourished during this period, albeit in a different manner than that of Europe.<em> </em>Offering an innovative analysis of the relationship between religious thought and the natural sciences, Stearns shows how nineteenth and twentieth century European and Middle Eastern scholars jointly developed a narrative of the decline of post-formative Islamic thought, including the fate of the natural sciences in the Muslim world.</p><p>Challenging these depictions, Stearns uses numerous close readings of legal, biographical, and classificatory texts - alongside medical, astronomical, and alchemical works - to establish a detailed overview of the place of the natural sciences in the scholarly and educational landscapes of the early modern Maghreb, and considers non-teleological possibilities for understanding a persistent engagement with the natural sciences in Morocco and elsewhere.</p><p>Justin K. Stearns is Associate Professor of Arab Crossroads Studies at New York University Abu Dhabi, where his research interests focus on the intersection of law, science, and theology in the pre-modern Middle East. He is the author of <em>Infectious Ideas: Contagion in Premodern Islamic and Christian Thought in the Western Mediterranean</em> (2011)<em>, </em>and an edition and translation of al-Hasan al-Yusi's <em>The Discourses, Vol. I</em> (2020).</p><p><a href="http://www.christophersrose.com/"><em>Christopher S. Rose</em></a><em> is a social historian of medicine focusing on Egypt and the Eastern Mediterranean in the 19th and 20th century. He currently teaches History at St. Edward's University in Austin, Texas and Our Lady of the Lake University in San Antonio, Texas.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3031</itunes:duration>
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      <title>Hsuan L. Hsu, "The Smell of Risk: Environmental Disparities and Olfactory Aesthetics" (NYU Press, 2020)</title>
      <description>Our sense of smell is a uniquely visceral—and personal—form of experience. As Hsuan L. Hsu points out, smell has long been spurned by Western aesthetics as a lesser sense for its qualities of subjectivity, volatility, and materiality. But it is these very qualities that make olfaction a vital tool for sensing and staging environmental risk and inequality. Unlike the other senses, smell extends across space and reaches into our bodies. Hsu traces how writers, artists, and activists have deployed these embodied, biochemical qualities of smell in their efforts to critique and reshape modernity’s olfactory disparities. 
Hsuan L. Hsu's The Smell of Risk: Environmental Disparities and Olfactory Aesthetics (NYU Press, 2020) outlines the many ways that our differentiated atmospheres unevenly distribute environmental risk. Reading everything from nineteenth-century detective fiction and naturalist novels to contemporary performance art and memoir, Hsu takes up modernity’s differentiated atmospheres as a subject worth sniffing out. From the industrial revolution to current-day environmental crises, Hsu uses ecocriticism, geography, and critical race studies to, for example, explore Latinx communities exposed to freeway exhaust and pesticides, Asian diasporic artists’ response to racialized discourse about Asiatic odors, and the devastation settler colonialism has reaped on Indigenous smellscapes. In each instance, Hsu demonstrates the violence that air maintenance, control, and conditioning enacts on the poor and the marginalized. From nineteenth-century miasma theory theory to the synthetic chemicals that pervade twenty-first century air, Hsu takes smell at face value to offer an evocative retelling of urbanization, public health, and environmental violence.
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      <pubDate>Tue, 02 Nov 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>46</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Hsuan L. Hsu</itunes:subtitle>
      <itunes:summary>Our sense of smell is a uniquely visceral—and personal—form of experience. As Hsuan L. Hsu points out, smell has long been spurned by Western aesthetics as a lesser sense for its qualities of subjectivity, volatility, and materiality. But it is these very qualities that make olfaction a vital tool for sensing and staging environmental risk and inequality. Unlike the other senses, smell extends across space and reaches into our bodies. Hsu traces how writers, artists, and activists have deployed these embodied, biochemical qualities of smell in their efforts to critique and reshape modernity’s olfactory disparities. 
Hsuan L. Hsu's The Smell of Risk: Environmental Disparities and Olfactory Aesthetics (NYU Press, 2020) outlines the many ways that our differentiated atmospheres unevenly distribute environmental risk. Reading everything from nineteenth-century detective fiction and naturalist novels to contemporary performance art and memoir, Hsu takes up modernity’s differentiated atmospheres as a subject worth sniffing out. From the industrial revolution to current-day environmental crises, Hsu uses ecocriticism, geography, and critical race studies to, for example, explore Latinx communities exposed to freeway exhaust and pesticides, Asian diasporic artists’ response to racialized discourse about Asiatic odors, and the devastation settler colonialism has reaped on Indigenous smellscapes. In each instance, Hsu demonstrates the violence that air maintenance, control, and conditioning enacts on the poor and the marginalized. From nineteenth-century miasma theory theory to the synthetic chemicals that pervade twenty-first century air, Hsu takes smell at face value to offer an evocative retelling of urbanization, public health, and environmental violence.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Our sense of smell is a uniquely visceral—and personal—form of experience. As Hsuan L. Hsu points out, smell has long been spurned by Western aesthetics as a lesser sense for its qualities of subjectivity, volatility, and materiality. But it is these very qualities that make olfaction a vital tool for sensing and staging environmental risk and inequality. Unlike the other senses, smell extends across space and reaches into our bodies. Hsu traces how writers, artists, and activists have deployed these embodied, biochemical qualities of smell in their efforts to critique and reshape modernity’s olfactory disparities. </p><p>Hsuan L. Hsu's <a href="https://bookshop.org/a/12343/9781479810093"><em>The Smell of Risk: Environmental Disparities and Olfactory Aesthetics</em></a> (NYU Press, 2020) outlines the many ways that our differentiated atmospheres unevenly distribute environmental risk. Reading everything from nineteenth-century detective fiction and naturalist novels to contemporary performance art and memoir, Hsu takes up modernity’s differentiated atmospheres as a subject worth sniffing out. From the industrial revolution to current-day environmental crises, Hsu uses ecocriticism, geography, and critical race studies to, for example, explore Latinx communities exposed to freeway exhaust and pesticides, Asian diasporic artists’ response to racialized discourse about Asiatic odors, and the devastation settler colonialism has reaped on Indigenous smellscapes. In each instance, Hsu demonstrates the violence that air maintenance, control, and conditioning enacts on the poor and the marginalized. From nineteenth-century miasma theory theory to the synthetic chemicals that pervade twenty-first century air, Hsu takes smell at face value to offer an evocative retelling of urbanization, public health, and environmental violence.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2998</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Roger Penrose, “The Cyclic Universe” (Open Agenda, 2021)</title>
      <description>In the last twenty years, cosmology has unexpectedly emerged as one of the most exciting and dynamic fields of modern science. From astoundingly precise measurements of the cosmic microwave background to the ongoing mysteries of dark energy and dark matter, modern cosmology is unquestionably in the midst of its Golden Age. And yet, one of the most eminent mathematical physicists of our age, Roger Penrose is convinced that there is one fundamental problem that is consistently being overlooked: why did our universe begin in such a particular state of extremely low entropy? His Conformal Cyclic Cosmology (CCC) is an attempt to directly address that question. The Cyclic Universe is based on an extensive conversation between Howard Burton and Roger Penrose, co-recipient of the 2020 Nobel Prize in Physics and Emeritus Rouse Ball Professor of Mathematics at the Mathematical Institute at the University of Oxford, and explores his motivation to come up with this theory in the first place and provides detailed insights into his groundbreaking research and Conformal Cyclic Cosmology.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
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      <pubDate>Tue, 19 Oct 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>72</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Rose Penrose</itunes:subtitle>
      <itunes:summary>In the last twenty years, cosmology has unexpectedly emerged as one of the most exciting and dynamic fields of modern science. From astoundingly precise measurements of the cosmic microwave background to the ongoing mysteries of dark energy and dark matter, modern cosmology is unquestionably in the midst of its Golden Age. And yet, one of the most eminent mathematical physicists of our age, Roger Penrose is convinced that there is one fundamental problem that is consistently being overlooked: why did our universe begin in such a particular state of extremely low entropy? His Conformal Cyclic Cosmology (CCC) is an attempt to directly address that question. The Cyclic Universe is based on an extensive conversation between Howard Burton and Roger Penrose, co-recipient of the 2020 Nobel Prize in Physics and Emeritus Rouse Ball Professor of Mathematics at the Mathematical Institute at the University of Oxford, and explores his motivation to come up with this theory in the first place and provides detailed insights into his groundbreaking research and Conformal Cyclic Cosmology.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In the last twenty years, cosmology has unexpectedly emerged as one of the most exciting and dynamic fields of modern science. From astoundingly precise measurements of the cosmic microwave background to the ongoing mysteries of dark energy and dark matter, modern cosmology is unquestionably in the midst of its Golden Age. And yet, one of the most eminent mathematical physicists of our age, Roger Penrose is convinced that there is one fundamental problem that is consistently being overlooked: why did our universe begin in such a particular state of extremely low entropy? His Conformal Cyclic Cosmology (CCC) is an attempt to directly address that question. <a href="https://ideas-on-film.com/roger-penrose/">The Cyclic Universe</a> is based on an extensive conversation between Howard Burton and Roger Penrose, co-recipient of the 2020 Nobel Prize in Physics and Emeritus Rouse Ball Professor of Mathematics at the Mathematical Institute at the University of Oxford, and explores his motivation to come up with this theory in the first place and provides detailed insights into his groundbreaking research and Conformal Cyclic Cosmology.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>9075</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Seth M. Siegel, "Troubled Water: What's Wrong with What We Drink" (Thomas Dunne, 2020)</title>
      <description>There’s nothing more vital to survival than water.
“Water water everywhere, and not a drop to drink!”, said the Ancient Mariner, in the poem by Samuel Taylor Coleridge.
Besides widespread water shortage, too much of America’s water is undrinkable. From big cities and suburbs to the rural heartland, chemicals linked to cancer, heart disease, obesity, birth defects, and lowered IQ routinely spill from our taps. The tragedy is that existing technologies could launch a new age of clean, healthy, and safe tap water for only a few dollars a week per person.
Scrupulously researched, Troubled Water: What's Wrong with What We Drink (Thomas Dunne, 2020) is full of shocking stories about contaminated water found throughout the U.S. and about the everyday heroes who have successfully forced changes in the quality and safety of our drinking water. Contamination is not the only critical water issue.  The U.S. government predicts that forty of our fifty states-and 60 percent of the earth's land surface-will soon face alarming gaps between available water and the growing demand for it. Without action, food prices will rise, economic growth will slow, and political instability is likely to follow.
Let There Be Water illustrates how Israel can serve as a model for the United States and countries everywhere by showing how to blunt the worst of the coming water calamities. Even with 60 percent of its country made of desert, Israel has not only solved its water problem; it also had an abundance of water. Israel even supplies water to its neighbors-the Palestinians and the Kingdom of Jordan-every day.
Based on meticulous research and hundreds of interviews, Let There Be Water reveals the methods and techniques of the often-offbeat inventors who enabled Israel to lead the world in cutting-edge water technology.
 Renee Garfinkel, Ph.D. is a psychologist, writer, Middle East television commentator and host of The New Books Network’s Van Leer Jerusalem Series on Ideas. Write her at r.garfinkel@yahoo.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 18 Oct 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>59</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Seth M. Siegel</itunes:subtitle>
      <itunes:summary>There’s nothing more vital to survival than water.
“Water water everywhere, and not a drop to drink!”, said the Ancient Mariner, in the poem by Samuel Taylor Coleridge.
Besides widespread water shortage, too much of America’s water is undrinkable. From big cities and suburbs to the rural heartland, chemicals linked to cancer, heart disease, obesity, birth defects, and lowered IQ routinely spill from our taps. The tragedy is that existing technologies could launch a new age of clean, healthy, and safe tap water for only a few dollars a week per person.
Scrupulously researched, Troubled Water: What's Wrong with What We Drink (Thomas Dunne, 2020) is full of shocking stories about contaminated water found throughout the U.S. and about the everyday heroes who have successfully forced changes in the quality and safety of our drinking water. Contamination is not the only critical water issue.  The U.S. government predicts that forty of our fifty states-and 60 percent of the earth's land surface-will soon face alarming gaps between available water and the growing demand for it. Without action, food prices will rise, economic growth will slow, and political instability is likely to follow.
Let There Be Water illustrates how Israel can serve as a model for the United States and countries everywhere by showing how to blunt the worst of the coming water calamities. Even with 60 percent of its country made of desert, Israel has not only solved its water problem; it also had an abundance of water. Israel even supplies water to its neighbors-the Palestinians and the Kingdom of Jordan-every day.
Based on meticulous research and hundreds of interviews, Let There Be Water reveals the methods and techniques of the often-offbeat inventors who enabled Israel to lead the world in cutting-edge water technology.
 Renee Garfinkel, Ph.D. is a psychologist, writer, Middle East television commentator and host of The New Books Network’s Van Leer Jerusalem Series on Ideas. Write her at r.garfinkel@yahoo.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>There’s nothing more vital to survival than water.</p><p>“<em>Water water everywhere, and not a drop to drink</em>!”, said the Ancient Mariner, in the poem by Samuel Taylor Coleridge.</p><p>Besides widespread water shortage, too much of America’s water is undrinkable. From big cities and suburbs to the rural heartland, chemicals linked to cancer, heart disease, obesity, birth defects, and lowered IQ routinely spill from our taps. The tragedy is that existing technologies could launch a new age of clean, healthy, and safe tap water for only a few dollars a week per person.</p><p>Scrupulously researched, <a href="https://bookshop.org/a/12343/9781250132543"><em>Troubled Water: What's Wrong with What We Drink</em></a><em> </em>(Thomas Dunne, 2020) is full of shocking stories about contaminated water found throughout the U.S. and about the everyday heroes who have successfully forced changes in the quality and safety of our drinking water. Contamination is not the only critical water issue.  The U.S. government predicts that forty of our fifty states-and 60 percent of the earth's land surface-will soon face alarming gaps between available water and the growing demand for it. Without action, food prices will rise, economic growth will slow, and political instability is likely to follow.</p><p><em>Let There Be Water </em>illustrates how Israel can serve as a model for the United States and countries everywhere by showing how to blunt the worst of the coming water calamities. Even with 60 percent of its country made of desert, Israel has not only solved its water problem; it also had an abundance of water. Israel even supplies water to its neighbors-the Palestinians and the Kingdom of Jordan-every day.</p><p>Based on meticulous research and hundreds of interviews, <em>Let There Be Water </em>reveals the methods and techniques of the often-offbeat inventors who enabled Israel to lead the world in cutting-edge water technology.</p><p><em> Renee Garfinkel, Ph.D. is a psychologist, writer, Middle East television commentator and host of The New Books Network’s </em><a href="https://www.vanleer.org.il/en/"><em>Van Leer Jerusalem</em></a><em> Series on Ideas. Write her at r.garfinkel@yahoo.com.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2316</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Jenny Nelson, “Harnessing the Sun” (Open Agenda, 2021)</title>
      <description>Harnessing the Sun is based on an in-depth filmed conversation between Howard Burton and Jenny Nelson, Professor of Physics and Head of the Climate Change mitigation team at the Grantham Institute at Imperial College London. After inspiring insights about Jenny Nelson’s academic journey, the conversation examines different solar energy processes, solar energy conversion technology, novel varieties of material for use in solar cells, and the materials used to build and improve photovoltaic, and other renewable, technologies, which convert energy from the sun into electricity.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 11 Oct 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>66</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Jenny Nelson</itunes:subtitle>
      <itunes:summary>Harnessing the Sun is based on an in-depth filmed conversation between Howard Burton and Jenny Nelson, Professor of Physics and Head of the Climate Change mitigation team at the Grantham Institute at Imperial College London. After inspiring insights about Jenny Nelson’s academic journey, the conversation examines different solar energy processes, solar energy conversion technology, novel varieties of material for use in solar cells, and the materials used to build and improve photovoltaic, and other renewable, technologies, which convert energy from the sun into electricity.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
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      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/jenny-nelson/">Harnessing the Sun</a> is based on an in-depth filmed conversation between Howard Burton and Jenny Nelson, Professor of Physics and Head of the Climate Change mitigation team at the Grantham Institute at Imperial College London. After inspiring insights about Jenny Nelson’s academic journey, the conversation examines different solar energy processes, solar energy conversion technology, novel varieties of material for use in solar cells, and the materials used to build and improve photovoltaic, and other renewable, technologies, which convert energy from the sun into electricity.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>7944</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Anne Bogart, "The Art of Resonance" (Methuen Drama, 2021)</title>
      <description>Anne Bogart's The Art of Resonance (Methuen Drama, 2021) locates the essence of theatre in the experience of resonant vibration among performers and between performers and audience members. The point of art, Bogart argues, is not to express oneself, but rather to create the conditions for "re-sounding," a process that requires both fully engaged performers and a fully engaged audience. Bogart draws on examples from music to physics to neuroscience in a book of essays that is animated by the same restless curiosity that characterizes her ground-breaking directing. This is a book for anyone interested in the profound question of why we are drawn to the theatre both as artists and as audiences.
Andy Boyd is a playwright based in Brooklyn, New York. He is a graduate of the playwriting MFA at Columbia University, Harvard University, and the Arizona School for the Arts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 06 Oct 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>82</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Anne Bogart</itunes:subtitle>
      <itunes:summary>Anne Bogart's The Art of Resonance (Methuen Drama, 2021) locates the essence of theatre in the experience of resonant vibration among performers and between performers and audience members. The point of art, Bogart argues, is not to express oneself, but rather to create the conditions for "re-sounding," a process that requires both fully engaged performers and a fully engaged audience. Bogart draws on examples from music to physics to neuroscience in a book of essays that is animated by the same restless curiosity that characterizes her ground-breaking directing. This is a book for anyone interested in the profound question of why we are drawn to the theatre both as artists and as audiences.
Andy Boyd is a playwright based in Brooklyn, New York. He is a graduate of the playwriting MFA at Columbia University, Harvard University, and the Arizona School for the Arts.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Anne Bogart's <a href="https://bookshop.org/a/12343/9781350155893"><em>The Art of Resonance</em></a><em> </em>(Methuen Drama, 2021) locates the essence of theatre in the experience of resonant vibration among performers and between performers and audience members. The point of art, Bogart argues, is not to express oneself, but rather to create the conditions for "re-sounding," a process that requires both fully engaged performers and a fully engaged audience. Bogart draws on examples from music to physics to neuroscience in a book of essays that is animated by the same restless curiosity that characterizes her ground-breaking directing. This is a book for anyone interested in the profound question of why we are drawn to the theatre both as artists and as audiences.</p><p><a href="https://www.andyjboyd.com/"><em>Andy Boyd</em></a><em> is a playwright based in Brooklyn, New York. He is a graduate of the playwriting MFA at Columbia University, Harvard University, and the Arizona School for the Arts.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3587</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Jonathan Rees, "The Chemistry of Fear: Harvey Wiley's Fight for Pure Food" (Johns Hopkins UP, 2021)</title>
      <description>Though trained as a medical doctor, chemist Harvey Wiley spent most of his professional life advocating for "pure food"—food free of both adulterants and preservatives. A strong proponent of the Pure Food and Drug Act of 1906, still the basis of food safety legislation in the United States, Wiley gained fame for what became known as the Poison Squad experiments—a series of tests in which, to learn more about the effects of various chemicals on the human body, Wiley's own employees at the Department of Agriculture agreed to consume food mixed with significant amounts of various additives, including borax, saltpeter, copper sulfate, sulfuric acid, and formaldehyde. One hundred years later, Wiley's influence lives on in many of our current popular ideas about food: that the wrong food can kill you; that the right food can extend your life; that additives are unnatural; and that unnatural food is unhealthy food. Eating—the process of taking something external in the world and putting it inside of you—has always been an intimate act, but it was Harvey Wiley who first turned it into a matter of life or death.
In The Chemistry of Fear: Harvey Wiley's Fight for Pure Food (Johns Hopkins UP, 2021), Jonathan Rees examines Wiley's many—and varied—conflicts and clashes over food safety, including the adulteration of honey and the addition of caffeine to Coca-Cola, formaldehyde to milk, and alum to baking powder. Although Wiley is often depicted as an unwavering champion of the consumer's interest, Rees argues that his critics rightfully questioned some of his motivations, as well as the conclusions that he drew from his most important scientific work. And although Wiley's fame and popularity gave him enormous influence, Rees reveals that his impact on what Americans eat depends more upon fear than it does upon the quality of his research.
Exploring in detail the battles Wiley picked over the way various foods and drinks were made and marketed, The Chemistry of Fear touches upon every stage of his career as a pure food advocate. From his initial work in Washington researching food adulteration, through the long interval at the end of his life when he worked for Good Housekeeping, Wiley often wrote about the people who prevented him from making the pure food law as effective as he thought it should have been. This engaging book will interest anyone who's curious about the pitfalls that eaters faced at the turn of the twentieth century.
 Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 28 Sep 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>89</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Jonathan Rees</itunes:subtitle>
      <itunes:summary>Though trained as a medical doctor, chemist Harvey Wiley spent most of his professional life advocating for "pure food"—food free of both adulterants and preservatives. A strong proponent of the Pure Food and Drug Act of 1906, still the basis of food safety legislation in the United States, Wiley gained fame for what became known as the Poison Squad experiments—a series of tests in which, to learn more about the effects of various chemicals on the human body, Wiley's own employees at the Department of Agriculture agreed to consume food mixed with significant amounts of various additives, including borax, saltpeter, copper sulfate, sulfuric acid, and formaldehyde. One hundred years later, Wiley's influence lives on in many of our current popular ideas about food: that the wrong food can kill you; that the right food can extend your life; that additives are unnatural; and that unnatural food is unhealthy food. Eating—the process of taking something external in the world and putting it inside of you—has always been an intimate act, but it was Harvey Wiley who first turned it into a matter of life or death.
In The Chemistry of Fear: Harvey Wiley's Fight for Pure Food (Johns Hopkins UP, 2021), Jonathan Rees examines Wiley's many—and varied—conflicts and clashes over food safety, including the adulteration of honey and the addition of caffeine to Coca-Cola, formaldehyde to milk, and alum to baking powder. Although Wiley is often depicted as an unwavering champion of the consumer's interest, Rees argues that his critics rightfully questioned some of his motivations, as well as the conclusions that he drew from his most important scientific work. And although Wiley's fame and popularity gave him enormous influence, Rees reveals that his impact on what Americans eat depends more upon fear than it does upon the quality of his research.
Exploring in detail the battles Wiley picked over the way various foods and drinks were made and marketed, The Chemistry of Fear touches upon every stage of his career as a pure food advocate. From his initial work in Washington researching food adulteration, through the long interval at the end of his life when he worked for Good Housekeeping, Wiley often wrote about the people who prevented him from making the pure food law as effective as he thought it should have been. This engaging book will interest anyone who's curious about the pitfalls that eaters faced at the turn of the twentieth century.
 Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Though trained as a medical doctor, chemist Harvey Wiley spent most of his professional life advocating for "pure food"—food free of both adulterants and preservatives. A strong proponent of the Pure Food and Drug Act of 1906, still the basis of food safety legislation in the United States, Wiley gained fame for what became known as the Poison Squad experiments—a series of tests in which, to learn more about the effects of various chemicals on the human body, Wiley's own employees at the Department of Agriculture agreed to consume food mixed with significant amounts of various additives, including borax, saltpeter, copper sulfate, sulfuric acid, and formaldehyde. One hundred years later, Wiley's influence lives on in many of our current popular ideas about food: that the wrong food can kill you; that the right food can extend your life; that additives are unnatural; and that unnatural food is unhealthy food. Eating—the process of taking something external in the world and putting it inside of you—has always been an intimate act, but it was Harvey Wiley who first turned it into a matter of life or death.</p><p>In <a href="https://bookshop.org/a/12343/9781421439952"><em>The Chemistry of Fear: Harvey Wiley's Fight for Pure Food</em></a><em> </em>(Johns Hopkins UP, 2021), Jonathan Rees examines Wiley's many—and varied—conflicts and clashes over food safety, including the adulteration of honey and the addition of caffeine to Coca-Cola, formaldehyde to milk, and alum to baking powder. Although Wiley is often depicted as an unwavering champion of the consumer's interest, Rees argues that his critics rightfully questioned some of his motivations, as well as the conclusions that he drew from his most important scientific work. And although Wiley's fame and popularity gave him enormous influence, Rees reveals that his impact on what Americans eat depends more upon fear than it does upon the quality of his research.</p><p>Exploring in detail the battles Wiley picked over the way various foods and drinks were made and marketed, <em>The Chemistry of Fear</em> touches upon every stage of his career as a pure food advocate. From his initial work in Washington researching food adulteration, through the long interval at the end of his life when he worked for <em>Good Housekeeping</em>, Wiley often wrote about the people who prevented him from making the pure food law as effective as he thought it should have been. This engaging book will interest anyone who's curious about the pitfalls that eaters faced at the turn of the twentieth century.</p><p><em> Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3288</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Tony Leggett, “The Problems of Physics, Reconsidered” (Open Agenda, 2021)</title>
      <description>The Problems of Physics, Reconsidered is based on an in-depth filmed conversation between Howard Burton and Physics Nobel Laureate Tony Leggett. The basis of this conversation is Tony Leggett’s book The Problems of Physics and further explores the insightful plain-speaking itemization that he developed of the physics landscape according to four basic categories—the very small (particle physics), the very large (cosmology), the very complex (condensed matter physics) and the very unclear (foundations of quantum theory)—while providing a thoughtful follow-up analysis from a contemporary perspective to assess how much progress we’ve made and which mysteries remain or have come on the scene since the book was published.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 27 Sep 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>56</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Tony Leggett</itunes:subtitle>
      <itunes:summary>The Problems of Physics, Reconsidered is based on an in-depth filmed conversation between Howard Burton and Physics Nobel Laureate Tony Leggett. The basis of this conversation is Tony Leggett’s book The Problems of Physics and further explores the insightful plain-speaking itemization that he developed of the physics landscape according to four basic categories—the very small (particle physics), the very large (cosmology), the very complex (condensed matter physics) and the very unclear (foundations of quantum theory)—while providing a thoughtful follow-up analysis from a contemporary perspective to assess how much progress we’ve made and which mysteries remain or have come on the scene since the book was published.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/tony-leggett/">The Problems of Physics, Reconsidered</a> is based on an in-depth filmed conversation between Howard Burton and Physics Nobel Laureate Tony Leggett. The basis of this conversation is Tony Leggett’s book The Problems of Physics and further explores the insightful plain-speaking itemization that he developed of the physics landscape according to four basic categories—the very small (particle physics), the very large (cosmology), the very complex (condensed matter physics) and the very unclear (foundations of quantum theory)—while providing a thoughtful follow-up analysis from a contemporary perspective to assess how much progress we’ve made and which mysteries remain or have come on the scene since the book was published.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>6090</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[58b03432-5db3-11ec-b125-6ba2aa61314a]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4925082788.mp3?updated=1624814660" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Justin Khoury, “Cosmological Conundrums” (Open Agenda, 2021)</title>
      <description>Cosmological Conundrums is based on an in-depth filmed conversation between Howard Burton and Justin Khoury, Professor of Physics at the University of Pennsylvania. This thoughtful, extensive conversation gives a window into the world of a practicing cosmologist, the often-considerable gap between formal scientific positions and personal scientific interests and examines a wide range of fascinating topics that his research covers such as the early universe, the Big Bang, dark matter, dark energy, Cosmic Microwave Background, the MOND (Modified Newtonian Dynamics) theory, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 21 Sep 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>52</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Justin Khoury</itunes:subtitle>
      <itunes:summary>Cosmological Conundrums is based on an in-depth filmed conversation between Howard Burton and Justin Khoury, Professor of Physics at the University of Pennsylvania. This thoughtful, extensive conversation gives a window into the world of a practicing cosmologist, the often-considerable gap between formal scientific positions and personal scientific interests and examines a wide range of fascinating topics that his research covers such as the early universe, the Big Bang, dark matter, dark energy, Cosmic Microwave Background, the MOND (Modified Newtonian Dynamics) theory, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/justin-khoury/">Cosmological Conundrums</a> is based on an in-depth filmed conversation between Howard Burton and Justin Khoury, Professor of Physics at the University of Pennsylvania. This thoughtful, extensive conversation gives a window into the world of a practicing cosmologist, the often-considerable gap between formal scientific positions and personal scientific interests and examines a wide range of fascinating topics that his research covers such as the early universe, the Big Bang, dark matter, dark energy, Cosmic Microwave Background, the MOND (Modified Newtonian Dynamics) theory, and more.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4712</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[d68f63a6-5db2-11ec-8d76-6fe714ed0533]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2884703452.mp3?updated=1629774595" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Joanna Haigh, “Solar Impact: Climate and the Sun” (Open Agenda, 2021)</title>
      <description>Solar Impact: Climate and the Sun is based on an in-depth filmed conversation between Howard Burton and Joanna Haigh, Professor Emerita of Atmospheric Physics at Imperial College London and Co-Director of the Grantham Institute until her retirement in 2019. After inspiring details about how she got into her field of study and how we can encourage more girls to get more interested in science, the conversation examines her research of the influence of the sun and solar variability on our climate, how energy emitted by the sun in the form of heat, light and ultraviolet radiation warms the earth and drives our climate, how data from satellites and modelling the processes helps us distinguish the warming effects of greenhouse gases from those of natural variations in solar energy, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 06 Sep 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>41</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Joanna Haigh</itunes:subtitle>
      <itunes:summary>Solar Impact: Climate and the Sun is based on an in-depth filmed conversation between Howard Burton and Joanna Haigh, Professor Emerita of Atmospheric Physics at Imperial College London and Co-Director of the Grantham Institute until her retirement in 2019. After inspiring details about how she got into her field of study and how we can encourage more girls to get more interested in science, the conversation examines her research of the influence of the sun and solar variability on our climate, how energy emitted by the sun in the form of heat, light and ultraviolet radiation warms the earth and drives our climate, how data from satellites and modelling the processes helps us distinguish the warming effects of greenhouse gases from those of natural variations in solar energy, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/joanna-haigh/">Solar Impact: Climate and the Sun</a> is based on an in-depth filmed conversation between Howard Burton and Joanna Haigh, Professor Emerita of Atmospheric Physics at Imperial College London and Co-Director of the Grantham Institute until her retirement in 2019. After inspiring details about how she got into her field of study and how we can encourage more girls to get more interested in science, the conversation examines her research of the influence of the sun and solar variability on our climate, how energy emitted by the sun in the form of heat, light and ultraviolet radiation warms the earth and drives our climate, how data from satellites and modelling the processes helps us distinguish the warming effects of greenhouse gases from those of natural variations in solar energy, and more.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>6809</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[c4e8e924-5db2-11ec-94bb-c31dfd59713f]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8134455419.mp3?updated=1624301593" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Michael Gordin, “Science and Pseudoscience” (Open Agenda, 2021)</title>
      <description>Science and Pseudoscience is based on an in-depth filmed conversation between Howard Burton and Michael Gordin, Rosengarten Professor of Modern and Contemporary History at Princeton University. This thought-provoking, extensive conversation examines the strange case of Immanuel Velikovsky, author of the bestselling book “Worlds in Collision” that managed to provocatively combine unbridled scientific speculation with ancient myth, as a way of probing the often-problematic boundary between science and pseudoscience. By all accounts, Velikovsky was a decidedly curious character. The notorious Russian-born doctor-turned psychoanalyst-turned astronomer-historian-autodidact not only had a flair for writing and boatloads of charisma and energy, he also was on record for making a couple of concrete predictions of his radical new theory of the solar system that turned out, much to the dismay of the authorities of the day, to actually be correct.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 30 Aug 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>36</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Michael Gordin</itunes:subtitle>
      <itunes:summary>Science and Pseudoscience is based on an in-depth filmed conversation between Howard Burton and Michael Gordin, Rosengarten Professor of Modern and Contemporary History at Princeton University. This thought-provoking, extensive conversation examines the strange case of Immanuel Velikovsky, author of the bestselling book “Worlds in Collision” that managed to provocatively combine unbridled scientific speculation with ancient myth, as a way of probing the often-problematic boundary between science and pseudoscience. By all accounts, Velikovsky was a decidedly curious character. The notorious Russian-born doctor-turned psychoanalyst-turned astronomer-historian-autodidact not only had a flair for writing and boatloads of charisma and energy, he also was on record for making a couple of concrete predictions of his radical new theory of the solar system that turned out, much to the dismay of the authorities of the day, to actually be correct.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/michael-gordin/">Science and Pseudoscience</a> is based on an in-depth filmed conversation between Howard Burton and Michael Gordin, Rosengarten Professor of Modern and Contemporary History at Princeton University. This thought-provoking, extensive conversation examines the strange case of Immanuel Velikovsky, author of the bestselling book “Worlds in Collision” that managed to provocatively combine unbridled scientific speculation with ancient myth, as a way of probing the often-problematic boundary between science and pseudoscience. By all accounts, Velikovsky was a decidedly curious character. The notorious Russian-born doctor-turned psychoanalyst-turned astronomer-historian-autodidact not only had a flair for writing and boatloads of charisma and energy, he also was on record for making a couple of concrete predictions of his radical new theory of the solar system that turned out, much to the dismay of the authorities of the day, to actually be correct.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>6512</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[f55be0e8-5db2-11ec-abf2-035ed13f155b]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4855700001.mp3?updated=1629775129" length="0" type="audio/mpeg"/>
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    <item>
      <title>Artur Ekert, “Cryptoreality” (Open Agenda, 2021)</title>
      <description>Cryptoreality is based on an in-depth filmed conversation between Howard Burton and Artur Ekert, Professor of Quantum Physics at the Mathematical Institute at the University of Oxford and Director of the Centre for Quantum Technologies and Lee Kong Chian Centennial Professor at the National University of Singapore. Artur Ekert is one of the pioneers of quantum cryptography. This wide-ranging conversation provides detailed insights into his research and covers many fascinating topics such as mathematical and physical intuition, a detailed history of cryptography from antiquity to the present day and how it works in practice, the development of quantum information science, the nature of reality, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 09 Aug 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>21</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Artur Ekert</itunes:subtitle>
      <itunes:summary>Cryptoreality is based on an in-depth filmed conversation between Howard Burton and Artur Ekert, Professor of Quantum Physics at the Mathematical Institute at the University of Oxford and Director of the Centre for Quantum Technologies and Lee Kong Chian Centennial Professor at the National University of Singapore. Artur Ekert is one of the pioneers of quantum cryptography. This wide-ranging conversation provides detailed insights into his research and covers many fascinating topics such as mathematical and physical intuition, a detailed history of cryptography from antiquity to the present day and how it works in practice, the development of quantum information science, the nature of reality, and more.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/artur-ekert/">Cryptoreality</a> is based on an in-depth filmed conversation between Howard Burton and Artur Ekert, Professor of Quantum Physics at the Mathematical Institute at the University of Oxford and Director of the Centre for Quantum Technologies and Lee Kong Chian Centennial Professor at the National University of Singapore. Artur Ekert is one of the pioneers of quantum cryptography. This wide-ranging conversation provides detailed insights into his research and covers many fascinating topics such as mathematical and physical intuition, a detailed history of cryptography from antiquity to the present day and how it works in practice, the development of quantum information science, the nature of reality, and more.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>10572</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[5c5a9aa6-5db2-11ec-b86b-2f3dd0e67386]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6419390893.mp3?updated=1624300632" length="0" type="audio/mpeg"/>
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    <item>
      <title>Chiara Marletto, "The Science of Can and Can't: A Physicist's Journey Through the Land of Counterfactuals" (Viking, 2021)</title>
      <description>There is a vast class of things that science has so far almost entirely neglected. They are central to the understanding of physical reality both at an everyday level and at the level of the most fundamental phenomena in physics, yet have traditionally been assumed to be impossible to incorporate into fundamental scientific explanations. They are facts not about what is (the actual) but about what could be (counterfactuals).
According to physicist Chiara Marletto, laws about things being possible or impossible may generate an alternative way of providing explanations. This fascinating, far-reaching approach holds promise for revolutionizing the way fundamental physics is formulated and for providing essential tools to face existing technological challenges–from delivering the next generation of information-processing devices beyond the universal quantum computer to designing AIs. Each chapter in The Science of Can and Can't: A Physicist's Journey Through the Land of Counterfactuals (Viking, 2021) delineates how an existing vexed open problem in science can be solved by this radically different approach and it is augmented by short fictional stories that explicate the main point of the chapter. As Marletto demonstrates, contemplating what is possible can give us a more complete and hopeful picture of the physical world.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 09 Aug 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>77</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Chiara Marletto</itunes:subtitle>
      <itunes:summary>There is a vast class of things that science has so far almost entirely neglected. They are central to the understanding of physical reality both at an everyday level and at the level of the most fundamental phenomena in physics, yet have traditionally been assumed to be impossible to incorporate into fundamental scientific explanations. They are facts not about what is (the actual) but about what could be (counterfactuals).
According to physicist Chiara Marletto, laws about things being possible or impossible may generate an alternative way of providing explanations. This fascinating, far-reaching approach holds promise for revolutionizing the way fundamental physics is formulated and for providing essential tools to face existing technological challenges–from delivering the next generation of information-processing devices beyond the universal quantum computer to designing AIs. Each chapter in The Science of Can and Can't: A Physicist's Journey Through the Land of Counterfactuals (Viking, 2021) delineates how an existing vexed open problem in science can be solved by this radically different approach and it is augmented by short fictional stories that explicate the main point of the chapter. As Marletto demonstrates, contemplating what is possible can give us a more complete and hopeful picture of the physical world.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>There is a vast class of things that science has so far almost entirely neglected. They are central to the understanding of physical reality both at an everyday level and at the level of the most fundamental phenomena in physics, yet have traditionally been assumed to be impossible to incorporate into fundamental scientific explanations. They are facts not about what is (the actual) but about what could be (counterfactuals).</p><p>According to physicist Chiara Marletto, laws about things being possible or impossible may generate an alternative way of providing explanations. This fascinating, far-reaching approach holds promise for revolutionizing the way fundamental physics is formulated and for providing essential tools to face existing technological challenges–from delivering the next generation of information-processing devices beyond the universal quantum computer to designing AIs. Each chapter in <a href="https://bookshop.org/a/12343/9780525521921"><em>The Science of Can and Can't: A Physicist's Journey Through the Land of Counterfactuals</em></a> (Viking, 2021) delineates how an existing vexed open problem in science can be solved by this radically different approach and it is augmented by short fictional stories that explicate the main point of the chapter. As Marletto demonstrates, contemplating what is possible can give us a more complete and hopeful picture of the physical world.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3968</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Freeman Dyson, “Pushing the Boundaries” (Open Agenda, 2021)</title>
      <description>Pushing the Boundaries is based on an in-depth filmed conversation between Howard Burton and former mathematical physicist and writer Freeman Dyson, who was one of the most celebrated polymaths of our age. Freeman Dyson had his academic home for more than 60 years at the Institute for Advanced Study in Princeton. He has reshaped thinking in fields from math to astrophysics to medicine, while pondering nuclear-propelled spaceships designed to transport human colonists to distant planets.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 06 Aug 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>20</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Freeman Dyson</itunes:subtitle>
      <itunes:summary>Pushing the Boundaries is based on an in-depth filmed conversation between Howard Burton and former mathematical physicist and writer Freeman Dyson, who was one of the most celebrated polymaths of our age. Freeman Dyson had his academic home for more than 60 years at the Institute for Advanced Study in Princeton. He has reshaped thinking in fields from math to astrophysics to medicine, while pondering nuclear-propelled spaceships designed to transport human colonists to distant planets.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/freeman-dyson/">Pushing the Boundaries</a> is based on an in-depth filmed conversation between Howard Burton and former mathematical physicist and writer Freeman Dyson, who was one of the most celebrated polymaths of our age. Freeman Dyson had his academic home for more than 60 years at the Institute for Advanced Study in Princeton. He has reshaped thinking in fields from math to astrophysics to medicine, while pondering nuclear-propelled spaceships designed to transport human colonists to distant planets.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>6343</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Nima Arkani-Hamed, “The Power of Principles: Physics Revealed” (Open Agenda, 2021)</title>
      <description>The Power of Principles: Physics Revealed is based on an in-depth filmed conversation between Howard Burton and Nima Arkani-Hamed, faculty member at the renowned Institute for Advanced Study in Princeton. Prof. Arkani-Hamed is one of today’s leading particle physicists. This extensive Ideas Roadshow conversation explores how we discover the laws of nature, the “scientific method”, the relation between theory and experiment and how we can push our understanding well beyond where experiments can currently reach.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 13 Jul 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>1</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Nima Arkani-Hamed</itunes:subtitle>
      <itunes:summary>The Power of Principles: Physics Revealed is based on an in-depth filmed conversation between Howard Burton and Nima Arkani-Hamed, faculty member at the renowned Institute for Advanced Study in Princeton. Prof. Arkani-Hamed is one of today’s leading particle physicists. This extensive Ideas Roadshow conversation explores how we discover the laws of nature, the “scientific method”, the relation between theory and experiment and how we can push our understanding well beyond where experiments can currently reach.
Howard Burton is the founder of the Ideas Roadshow, Ideas on Film and host of the Ideas Roadshow Podcast. He can be reached at howard@ideasroadshow.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://ideas-on-film.com/nima-arkani-hamed/">The Power of Principles: Physics Revealed</a> is based on an in-depth filmed conversation between Howard Burton and Nima Arkani-Hamed, faculty member at the renowned Institute for Advanced Study in Princeton. Prof. Arkani-Hamed is one of today’s leading particle physicists. This extensive Ideas Roadshow conversation explores how we discover the laws of nature, the “scientific method”, the relation between theory and experiment and how we can push our understanding well beyond where experiments can currently reach.</p><p><a href="https://howardburton.com/"><em>Howard Burton</em></a><em> is the founder of the </em><a href="https://www.ideasroadshow.com/"><em>Ideas Roadshow</em></a><em>, </em><a href="https://ideas-on-film.com/"><em>Ideas on Film</em></a><em> and host of the </em><a href="https://newbooksnetwork.com/category/academic-partners/ideas-roadshow-podcast"><em>Ideas Roadshow Podcast</em></a><em>. He can be reached at </em><a href="mailto:howard@ideasroadshow.com"><em>howard@ideasroadshow.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>7267</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN4889577169.mp3?updated=1624299406" length="0" type="audio/mpeg"/>
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    <item>
      <title>Alyssa Ney, "The World in the Wave Function: A Metaphysics for Quantum Physics" (Oxford UP, 2021)</title>
      <description>Quantum mechanics is full of weird findings – for example, that systems widely separated can somehow still be correlated, and that a system may be in two different possible states at the same time. Entanglement and superposition, among other phenomena, have prompted debate since the inception of QM about how, exactly, we should understand what it tells us about reality. In The World in the Wave Function (Oxford UP, 2021), Alyssa Ney defends wave function realism, the claim that the basic representation in QM, the wavefunction, corresponds to a field in a high-dimensional space, and that this field and its space is the fundamental reality. Ney, a leading philosopher of physics and metaphysics at the University of California at Davis, defends this controversial view by explaining how the particles of classical mechanics and the ordinary objects of familiar 3D space can plausibly arise from it. Ney makes the complications of QM accessible to non-physicists, and clearly explains the motivations for her view, the opposing positions, and the challenges that face any interpretation of the ontological implications of quantum mechanics.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 09 Jul 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>257</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Alyssa Ney</itunes:subtitle>
      <itunes:summary>Quantum mechanics is full of weird findings – for example, that systems widely separated can somehow still be correlated, and that a system may be in two different possible states at the same time. Entanglement and superposition, among other phenomena, have prompted debate since the inception of QM about how, exactly, we should understand what it tells us about reality. In The World in the Wave Function (Oxford UP, 2021), Alyssa Ney defends wave function realism, the claim that the basic representation in QM, the wavefunction, corresponds to a field in a high-dimensional space, and that this field and its space is the fundamental reality. Ney, a leading philosopher of physics and metaphysics at the University of California at Davis, defends this controversial view by explaining how the particles of classical mechanics and the ordinary objects of familiar 3D space can plausibly arise from it. Ney makes the complications of QM accessible to non-physicists, and clearly explains the motivations for her view, the opposing positions, and the challenges that face any interpretation of the ontological implications of quantum mechanics.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Quantum mechanics is full of weird findings – for example, that systems widely separated can somehow still be correlated, and that a system may be in two different possible states at the same time. Entanglement and superposition, among other phenomena, have prompted debate since the inception of QM about how, exactly, we should understand what it tells us about reality. In <a href="https://bookshop.org/a/12343/9780190097714"><em>The World in the Wave Function</em></a> (Oxford UP, 2021), Alyssa Ney defends wave function realism, the claim that the basic representation in QM, the wavefunction, corresponds to a field in a high-dimensional space, and that this field and its space is the fundamental reality. Ney, a leading philosopher of physics and metaphysics at the University of California at Davis, defends this controversial view by explaining how the particles of classical mechanics and the ordinary objects of familiar 3D space can plausibly arise from it. Ney makes the complications of QM accessible to non-physicists, and clearly explains the motivations for her view, the opposing positions, and the challenges that face any interpretation of the ontological implications of quantum mechanics.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4302</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN8776827959.mp3?updated=1624984077" length="0" type="audio/mpeg"/>
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    <item>
      <title>Howard Burton, "First Principles: Building Perimeter Institute" (Open Agenda Publishing, 2021)</title>
      <description>In this second edition of First Principles: Building Perimeter Institute, Howard Burton tells the remarkable and unconventional story—with a bold and biting humour and surprising candour—of the founding of Perimeter Institute for Theoretical Physics in Waterloo, Canada. Howard was the Founding Director of Perimeter Institute and his experiences at developing the research and outreach mandates of PI are described in this thought-provoking book featuring a foreword by Nobel Laureate Roger Penrose.
Howard Burton was a freshly-minted physics PhD from the University of Waterloo when a random job query resulted in a strange - albeit fateful - meeting with Research In Motion founder and co-CEO Mike Lazaridis. Mike had a crazy idea: he wanted to spend $100 million of his own recently-found wealth (Research In Motion had just gone public a year earlier and he suddenly found himself fabulously wealthy on paper) to do something new and transformative in the world of science. From these curious beginnings began the story of Canada's Perimeter Institute for Theoretical Physics and Howard's role as its founding director from 1999-2007.
Howard Burton is also the founder and host of all Ideas Roadshow Conversations. Ideas Roadshow is an award-winning initiative producing a wide range of innovative, multimedia resources, including several pedagogical databases and a wide range of books in both electronic and print format developed from in-depth conversations with more than 100 world-leading researchers, including 3 Nobel Laureates. Ideas Roadshow conversations reveal the inspirations and personal journeys behind the research while providing behind-the-scenes insights into the world of frontline researchers. You can check it out on ideasroadshow.com. Howard also spoke to me about the books Conversations about Astrophysics and Cosmology, Biology and Neuroscience on the NBN, so make sure to look those episodes on our website or any podcast app you use.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 21 Jun 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>63</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Howard Burton</itunes:subtitle>
      <itunes:summary>In this second edition of First Principles: Building Perimeter Institute, Howard Burton tells the remarkable and unconventional story—with a bold and biting humour and surprising candour—of the founding of Perimeter Institute for Theoretical Physics in Waterloo, Canada. Howard was the Founding Director of Perimeter Institute and his experiences at developing the research and outreach mandates of PI are described in this thought-provoking book featuring a foreword by Nobel Laureate Roger Penrose.
Howard Burton was a freshly-minted physics PhD from the University of Waterloo when a random job query resulted in a strange - albeit fateful - meeting with Research In Motion founder and co-CEO Mike Lazaridis. Mike had a crazy idea: he wanted to spend $100 million of his own recently-found wealth (Research In Motion had just gone public a year earlier and he suddenly found himself fabulously wealthy on paper) to do something new and transformative in the world of science. From these curious beginnings began the story of Canada's Perimeter Institute for Theoretical Physics and Howard's role as its founding director from 1999-2007.
Howard Burton is also the founder and host of all Ideas Roadshow Conversations. Ideas Roadshow is an award-winning initiative producing a wide range of innovative, multimedia resources, including several pedagogical databases and a wide range of books in both electronic and print format developed from in-depth conversations with more than 100 world-leading researchers, including 3 Nobel Laureates. Ideas Roadshow conversations reveal the inspirations and personal journeys behind the research while providing behind-the-scenes insights into the world of frontline researchers. You can check it out on ideasroadshow.com. Howard also spoke to me about the books Conversations about Astrophysics and Cosmology, Biology and Neuroscience on the NBN, so make sure to look those episodes on our website or any podcast app you use.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In this second edition of <a href="https://www.amazon.com/First-Principles-Building-Perimeter-Institute/dp/1771701374">First Principles: Building Perimeter Institute</a>, Howard Burton tells the remarkable and unconventional story—with a bold and biting humour and surprising candour—of the founding of Perimeter Institute for Theoretical Physics in Waterloo, Canada. Howard was the Founding Director of Perimeter Institute and his experiences at developing the research and outreach mandates of PI are described in this thought-provoking book featuring a foreword by Nobel Laureate Roger Penrose.</p><p>Howard Burton was a freshly-minted physics PhD from the University of Waterloo when a random job query resulted in a strange - albeit fateful - meeting with Research In Motion founder and co-CEO Mike Lazaridis. Mike had a crazy idea: he wanted to spend $100 million of his own recently-found wealth (Research In Motion had just gone public a year earlier and he suddenly found himself fabulously wealthy on paper) to do something new and transformative in the world of science. From these curious beginnings began the story of Canada's Perimeter Institute for Theoretical Physics and Howard's role as its founding director from 1999-2007.</p><p>Howard Burton is also the founder and host of all Ideas Roadshow Conversations. Ideas Roadshow is an award-winning initiative producing a wide range of innovative, multimedia resources, including several pedagogical databases and a wide range of books in both electronic and print format developed from in-depth conversations with more than 100 world-leading researchers, including 3 Nobel Laureates. Ideas Roadshow conversations reveal the inspirations and personal journeys behind the research while providing behind-the-scenes insights into the world of frontline researchers. You can check it out on <a href="http://ideasroadshow.com/">ideasroadshow.com</a>. Howard also spoke to me about the books Conversations about Astrophysics and Cosmology, Biology and Neuroscience on the NBN, so make sure to look those episodes on our website or any podcast app you use.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5747</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Skylar Tibbits, "Things Fall Together: A Guide to the New Materials Revolution" (Princeton UP, 2021)</title>
      <description>Things in life tend to fall apart. Cars break down. Buildings fall into disrepair. Personal items deteriorate. Yet today’s researchers are exploiting newly understood properties of matter to program materials that physically sense, adapt, and fall together instead of apart. These materials open new directions for industrial innovation and challenge us to rethink the way we build and collaborate with our environment. Things Fall Together: A Guide to the New Materials Revolution (Princeton UP, 2021) is a provocative guide to this emerging, often mind-bending reality, presenting a bold vision for harnessing the intelligence embedded in the material world.
Drawing on his pioneering work on self-assembly and programmable material technologies, Skylar Tibbits lays out the core, frequently counterintuitive ideas and strategies that animate this new approach to design and innovation. From furniture that builds itself to shoes printed flat that jump into shape to islands that grow themselves, he describes how matter can compute and exhibit behaviors that we typically associate with biological organisms, and challenges our fundamental assumptions about what physical materials can do and how we can interact with them. Intelligent products today often rely on electronics, batteries, and complicated mechanisms. Tibbits offers a different approach, showing how we can design simple and elegant material intelligence that may one day animate and improve itself—and along the way help us build a more sustainable future.
Compelling and beautifully designed, Things Fall Together provides an insider’s perspective on the materials revolution that lies ahead, revealing the spectacular possibilities for designing active materials that can self-assemble, collaborate, and one day even evolve and design on their own.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 01 Jun 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>17</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Skylar Tibbits</itunes:subtitle>
      <itunes:summary>Things in life tend to fall apart. Cars break down. Buildings fall into disrepair. Personal items deteriorate. Yet today’s researchers are exploiting newly understood properties of matter to program materials that physically sense, adapt, and fall together instead of apart. These materials open new directions for industrial innovation and challenge us to rethink the way we build and collaborate with our environment. Things Fall Together: A Guide to the New Materials Revolution (Princeton UP, 2021) is a provocative guide to this emerging, often mind-bending reality, presenting a bold vision for harnessing the intelligence embedded in the material world.
Drawing on his pioneering work on self-assembly and programmable material technologies, Skylar Tibbits lays out the core, frequently counterintuitive ideas and strategies that animate this new approach to design and innovation. From furniture that builds itself to shoes printed flat that jump into shape to islands that grow themselves, he describes how matter can compute and exhibit behaviors that we typically associate with biological organisms, and challenges our fundamental assumptions about what physical materials can do and how we can interact with them. Intelligent products today often rely on electronics, batteries, and complicated mechanisms. Tibbits offers a different approach, showing how we can design simple and elegant material intelligence that may one day animate and improve itself—and along the way help us build a more sustainable future.
Compelling and beautifully designed, Things Fall Together provides an insider’s perspective on the materials revolution that lies ahead, revealing the spectacular possibilities for designing active materials that can self-assemble, collaborate, and one day even evolve and design on their own.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Things in life tend to fall apart. Cars break down. Buildings fall into disrepair. Personal items deteriorate. Yet today’s researchers are exploiting newly understood properties of matter to program materials that physically sense, adapt, and fall together instead of apart. These materials open new directions for industrial innovation and challenge us to rethink the way we build and collaborate with our environment. <a href="https://press.princeton.edu/books/hardcover/9780691170336/things-fall-together"><em>Things Fall Together: A Guide to the New Materials Revolution</em></a> (Princeton UP, 2021) is a provocative guide to this emerging, often mind-bending reality, presenting a bold vision for harnessing the intelligence embedded in the material world.</p><p>Drawing on his pioneering work on self-assembly and programmable material technologies, Skylar Tibbits lays out the core, frequently counterintuitive ideas and strategies that animate this new approach to design and innovation. From furniture that builds itself to shoes printed flat that jump into shape to islands that grow themselves, he describes how matter can compute and exhibit behaviors that we typically associate with biological organisms, and challenges our fundamental assumptions about what physical materials can do and how we can interact with them. Intelligent products today often rely on electronics, batteries, and complicated mechanisms. Tibbits offers a different approach, showing how we can design simple and elegant material intelligence that may one day animate and improve itself—and along the way help us build a more sustainable future.</p><p>Compelling and beautifully designed, <em>Things Fall Together</em> provides an insider’s perspective on the materials revolution that lies ahead, revealing the spectacular possibilities for designing active materials that can self-assemble, collaborate, and one day even evolve and design on their own.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3030</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Howard Burton, "Conversations About Astrophysics &amp; Cosmology" (Open Agenda, 2020)</title>
      <description>This Ideas Roadshow Collection includes five Ideas Roadshow books that have been developed from filmed wide-ranging conversations with the following leading physicists: Roger Penrose (University of Oxford), Scott Tremaine (IAS), Paul Steinhardt (Princeton University), Justin Khoury (University of Pennsylvania) and Rocky Kolb (University of Chicago). Howard Burton is the founder and host of all Ideas Roadshow Conversations and was the Founding Executive Director of Perimeter Institute for Theoretical Physics. He holds a PhD in theoretical physics and an MA in philosophy.
This collection includes a detailed preface highlighting the connections between the different books which offer a uniquely accessible window into frontline research and scholarship while each individual book also includes a detailed introduction plus questions for discussion. The books explore a wide range of fascinating topics related to astrophysics and cosmology through an engaging dialogue format and will give a non-specialist a genuine sense of what questions the world's leading cosmologists are grappling with and what the world of scientific discovery is really like. Topics examined include black holes, dark matter, the process of discovery, dark energy, cosmic inflation, the multiverse, conformal cyclic cosmology, and much more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 31 May 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>58</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Howard Burton</itunes:subtitle>
      <itunes:summary>This Ideas Roadshow Collection includes five Ideas Roadshow books that have been developed from filmed wide-ranging conversations with the following leading physicists: Roger Penrose (University of Oxford), Scott Tremaine (IAS), Paul Steinhardt (Princeton University), Justin Khoury (University of Pennsylvania) and Rocky Kolb (University of Chicago). Howard Burton is the founder and host of all Ideas Roadshow Conversations and was the Founding Executive Director of Perimeter Institute for Theoretical Physics. He holds a PhD in theoretical physics and an MA in philosophy.
This collection includes a detailed preface highlighting the connections between the different books which offer a uniquely accessible window into frontline research and scholarship while each individual book also includes a detailed introduction plus questions for discussion. The books explore a wide range of fascinating topics related to astrophysics and cosmology through an engaging dialogue format and will give a non-specialist a genuine sense of what questions the world's leading cosmologists are grappling with and what the world of scientific discovery is really like. Topics examined include black holes, dark matter, the process of discovery, dark energy, cosmic inflation, the multiverse, conformal cyclic cosmology, and much more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>This Ideas Roadshow Collection includes five Ideas Roadshow books that have been developed from filmed wide-ranging conversations with the following leading physicists: Roger Penrose (University of Oxford), Scott Tremaine (IAS), Paul Steinhardt (Princeton University), Justin Khoury (University of Pennsylvania) and Rocky Kolb (University of Chicago). Howard Burton is the founder and host of all <a href="https://ideas-on-film.com/ideasroadshow/">Ideas Roadshow Conversations</a> and was the Founding Executive Director of Perimeter Institute for Theoretical Physics. He holds a PhD in theoretical physics and an MA in philosophy.</p><p>This collection includes a detailed preface highlighting the connections between the different books which offer a uniquely accessible window into frontline research and scholarship while each individual book also includes a detailed introduction plus questions for discussion. The books explore a wide range of fascinating topics related to astrophysics and cosmology through an engaging dialogue format and will give a non-specialist a genuine sense of what questions the world's leading cosmologists are grappling with and what the world of scientific discovery is really like. Topics examined include black holes, dark matter, the process of discovery, dark energy, cosmic inflation, the multiverse, conformal cyclic cosmology, and much more.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4033</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    </item>
    <item>
      <title>Alex Wellerstein, "Restricted Data: The History of Nuclear Secrecy in the United States" (U Chicago Press, 2021)</title>
      <description>Given the obsession with information and secrecy in today’s world, it can be difficult to imagine a time when governments held few secrets and worried little about what information was public knowledge. In Restricted Data: The History of Nuclear Secrecy in the United States (University of Chicago Press, 2021), Alex Wellerstein chronicles how much of this change can be traced to the development of atomic weapons in the 1940s and the efforts both then and since to restrict the details about them. Secrecy was a factor in nuclear technology from the start, as scientists argued amongst themselves about the need for self-censorship about the possibility of atomic weapons. By the start of the Manhattan Project the United States government had assumed responsibility for maintaining secrets, which they often did in ways that frustrated the scientists involved. What was hoped to be a temporary restriction because of the war became permanent with the onset of the Cold War, as the government fought to restrict any knowledge which they thought might aid the Soviet Union in the construction of nuclear weapons. While this effort came under attack from an increasingly aggressive group of anti-secrecy activists in the post-Watergate era, the government identified new threats in the post-Cold War era that justified the need to maintain nuclear secrets down to the present day.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 24 May 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>989</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Alex Wellerstein</itunes:subtitle>
      <itunes:summary>Given the obsession with information and secrecy in today’s world, it can be difficult to imagine a time when governments held few secrets and worried little about what information was public knowledge. In Restricted Data: The History of Nuclear Secrecy in the United States (University of Chicago Press, 2021), Alex Wellerstein chronicles how much of this change can be traced to the development of atomic weapons in the 1940s and the efforts both then and since to restrict the details about them. Secrecy was a factor in nuclear technology from the start, as scientists argued amongst themselves about the need for self-censorship about the possibility of atomic weapons. By the start of the Manhattan Project the United States government had assumed responsibility for maintaining secrets, which they often did in ways that frustrated the scientists involved. What was hoped to be a temporary restriction because of the war became permanent with the onset of the Cold War, as the government fought to restrict any knowledge which they thought might aid the Soviet Union in the construction of nuclear weapons. While this effort came under attack from an increasingly aggressive group of anti-secrecy activists in the post-Watergate era, the government identified new threats in the post-Cold War era that justified the need to maintain nuclear secrets down to the present day.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Given the obsession with information and secrecy in today’s world, it can be difficult to imagine a time when governments held few secrets and worried little about what information was public knowledge. In <a href="https://bookshop.org/a/12343/9780226020389"><em>Restricted Data: The History of Nuclear Secrecy in the United States</em></a> (University of Chicago Press, 2021), Alex Wellerstein chronicles how much of this change can be traced to the development of atomic weapons in the 1940s and the efforts both then and since to restrict the details about them. Secrecy was a factor in nuclear technology from the start, as scientists argued amongst themselves about the need for self-censorship about the possibility of atomic weapons. By the start of the Manhattan Project the United States government had assumed responsibility for maintaining secrets, which they often did in ways that frustrated the scientists involved. What was hoped to be a temporary restriction because of the war became permanent with the onset of the Cold War, as the government fought to restrict any knowledge which they thought might aid the Soviet Union in the construction of nuclear weapons. While this effort came under attack from an increasingly aggressive group of anti-secrecy activists in the post-Watergate era, the government identified new threats in the post-Cold War era that justified the need to maintain nuclear secrets down to the present day.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3656</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[dd3523f4-5db1-11ec-b3f6-d3d0abd829bd]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN7111018099.mp3?updated=1620322563" length="0" type="audio/mpeg"/>
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    <item>
      <title>Michael D. Gordin, "On the Fringe: Where Science Meets Pseudoscience" (Oxford UP, 2021)</title>
      <description>Everyone has heard of the term "pseudoscience", typically used to describe something that looks like science, but is somehow false, misleading, or unproven. Many would be able to agree on a list of things that fall under its umbrella-- astrology, phrenology, UFOlogy, creationism, and eugenics might come to mind. But defining what makes these fields "pseudo" is a far more complex issue. It has proved impossible to come up with a simple criterion that enables us to differentiate pseudoscience from genuine science. Given the virulence of contemporary disputes over the denial of climate change and anti-vaccination movements--both of which display allegations of "pseudoscience" on all sides-- there is a clear need to better understand issues of scientific demarcation.
On the Fringe: Where Science Meets Pseudoscience (Oxford UP, 2021) explores the philosophical and historical attempts to address this problem of demarcation. This book argues that by understanding doctrines that are often seen as antithetical to science, we can learn a great deal about how science operated in the past and does today. This exploration raises several questions: How does a doctrine become demonized as pseudoscientific? Who has the authority to make these pronouncements? How is the status of science shaped by political or cultural contexts? How does pseudoscience differ from scientific fraud?
Michael D. Gordin both answers these questions and guides readers along a bewildering array of marginalized doctrines, looking at parapsychology (ESP), Lysenkoism, scientific racism, and alchemy, among others, to better understand the struggle to define what science is and is not, and how the controversies have shifted over the centuries. On the Fringe provides a historical tour through many of these fringe fields in order to provide tools to think deeply about scientific controversies both in the past and in our present.
Marshall Poe is the founder and editor of the New Books Network. He can be reached at marshallpoe@newbooksnetwork.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 17 May 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>5</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Michael D. Gordin</itunes:subtitle>
      <itunes:summary>Everyone has heard of the term "pseudoscience", typically used to describe something that looks like science, but is somehow false, misleading, or unproven. Many would be able to agree on a list of things that fall under its umbrella-- astrology, phrenology, UFOlogy, creationism, and eugenics might come to mind. But defining what makes these fields "pseudo" is a far more complex issue. It has proved impossible to come up with a simple criterion that enables us to differentiate pseudoscience from genuine science. Given the virulence of contemporary disputes over the denial of climate change and anti-vaccination movements--both of which display allegations of "pseudoscience" on all sides-- there is a clear need to better understand issues of scientific demarcation.
On the Fringe: Where Science Meets Pseudoscience (Oxford UP, 2021) explores the philosophical and historical attempts to address this problem of demarcation. This book argues that by understanding doctrines that are often seen as antithetical to science, we can learn a great deal about how science operated in the past and does today. This exploration raises several questions: How does a doctrine become demonized as pseudoscientific? Who has the authority to make these pronouncements? How is the status of science shaped by political or cultural contexts? How does pseudoscience differ from scientific fraud?
Michael D. Gordin both answers these questions and guides readers along a bewildering array of marginalized doctrines, looking at parapsychology (ESP), Lysenkoism, scientific racism, and alchemy, among others, to better understand the struggle to define what science is and is not, and how the controversies have shifted over the centuries. On the Fringe provides a historical tour through many of these fringe fields in order to provide tools to think deeply about scientific controversies both in the past and in our present.
Marshall Poe is the founder and editor of the New Books Network. He can be reached at marshallpoe@newbooksnetwork.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Everyone has heard of the term "pseudoscience", typically used to describe something that looks like science, but is somehow false, misleading, or unproven. Many would be able to agree on a list of things that fall under its umbrella-- astrology, phrenology, UFOlogy, creationism, and eugenics might come to mind. But defining what makes these fields "pseudo" is a far more complex issue. It has proved impossible to come up with a simple criterion that enables us to differentiate pseudoscience from genuine science. Given the virulence of contemporary disputes over the denial of climate change and anti-vaccination movements--both of which display allegations of "pseudoscience" on all sides-- there is a clear need to better understand issues of scientific demarcation.</p><p><a href="https://global.oup.com/academic/product/on-the-fringe-9780197555767?cc=us&amp;lang=en&amp;"><em>On the Fringe: Where Science Meets Pseudoscience</em></a><em> </em>(Oxford UP, 2021) explores the philosophical and historical attempts to address this problem of demarcation. This book argues that by understanding doctrines that are often seen as antithetical to science, we can learn a great deal about how science operated in the past and does today. This exploration raises several questions: How does a doctrine become demonized as pseudoscientific? Who has the authority to make these pronouncements? How is the status of science shaped by political or cultural contexts? How does pseudoscience differ from scientific fraud?</p><p>Michael D. Gordin both answers these questions and guides readers along a bewildering array of marginalized doctrines, looking at parapsychology (ESP), Lysenkoism, scientific racism, and alchemy, among others, to better understand the struggle to define what science is and is not, and how the controversies have shifted over the centuries. <em>On the Fringe</em> provides a historical tour through many of these fringe fields in order to provide tools to think deeply about scientific controversies both in the past and in our present.</p><p><em>Marshall Poe is the founder and editor of the New Books Network. He can be reached at marshallpoe@newbooksnetwork.com.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3275</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[b139183e-5db4-11ec-a31a-dfd718b48556]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9280949452.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Philip Ball, "The Beauty of Chemistry: Art, Wonder, and Science" (MIT Press, 2021)</title>
      <description>Chemistry is not just about microscopic atoms doing inscrutable things; it is the process that makes flowers and galaxies. We rely on it for bread-baking, vegetable-growing, and producing the materials of daily life. In stunning images and illuminating text, this book captures chemistry as it unfolds. Using such techniques as microphotography, time-lapse photography, and infrared thermal imaging, The Beauty of Chemistry: Art, Wonder, and Science (MIT Press, 2021) shows us how chemistry underpins the formation of snowflakes, the science of champagne, the colors of flowers, and other wonders of nature and technology. We see the marvelous configurations of chemical gardens; the amazing transformations of evaporation, distillation, and precipitation; heat made visible; and more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 10 May 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>51</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Philip Ball</itunes:subtitle>
      <itunes:summary>Chemistry is not just about microscopic atoms doing inscrutable things; it is the process that makes flowers and galaxies. We rely on it for bread-baking, vegetable-growing, and producing the materials of daily life. In stunning images and illuminating text, this book captures chemistry as it unfolds. Using such techniques as microphotography, time-lapse photography, and infrared thermal imaging, The Beauty of Chemistry: Art, Wonder, and Science (MIT Press, 2021) shows us how chemistry underpins the formation of snowflakes, the science of champagne, the colors of flowers, and other wonders of nature and technology. We see the marvelous configurations of chemical gardens; the amazing transformations of evaporation, distillation, and precipitation; heat made visible; and more.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Chemistry is not just about microscopic atoms doing inscrutable things; it is the process that makes flowers and galaxies. We rely on it for bread-baking, vegetable-growing, and producing the materials of daily life. In stunning images and illuminating text, this book captures chemistry as it unfolds. Using such techniques as microphotography, time-lapse photography, and infrared thermal imaging, <a href="https://bookshop.org/a/12343/9780262044417"><em>The Beauty of Chemistry: Art, Wonder, and Science</em></a> (MIT Press, 2021) shows us how chemistry underpins the formation of snowflakes, the science of champagne, the colors of flowers, and other wonders of nature and technology. We see the marvelous configurations of chemical gardens; the amazing transformations of evaporation, distillation, and precipitation; heat made visible; and more.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3807</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[885a6876-5db6-11ec-934d-2bfe39142f1e]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2088699204.mp3?updated=1618680219" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Lukas Engelmann and Christos Lynteris, "Sulphuric Utopias: A History of Maritime Fumigation" (MIT Press, 2020)</title>
      <description>As we mark the one-year anniversary of the COIVD-19 pandemic, take the time to listen to this discussion of previous efforts to fight yellow fever, cholera, and plague pandemics. Lukas Engelmann and Christos Lynteris’s Sulfuric Utopias: A History Maritime Fumigation (MIT Press, 2020) tells the story of the international dream of stopping the spread of infectious disease in global shipping networks. Their work shows how the interests of capitalism clashed with the efforts of public health officials. At the center of their narrative lies the Clayton, a machine which combined technocratic enthusiasm and necropolitical logic. Sulfuric Utopias brings together the history disease, capitalism, public health, and science. It is both a contribution to maritime history and urban history. Personally, I was so excited to interview two authors who know more about the history of rat killing than I do.
Lukas Engelmann is a Chancellor's Fellow in the History and Sociology of Biomedicine, in the department of Science, Technology and Innovation Studies at the University of Edinburgh. 
Christos Lynteris is a Senior Lecturer in Social Anthropology at the University of St. Andrews. 
Michael G. Vann is a professor of world history at California State University, Sacramento. A specialist in imperialism and the Cold War in Southeast Asia, he is the author of The Great Hanoi Rat Hunt: Empires, Disease, and Modernity in French Colonial Vietnam (Oxford University Press, 2018). When he’s not reading or talking about new books with smart people, Mike can be found surfing in Santa Cruz, California.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 26 Mar 2021 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>947</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Lukas Engelmann and Christos Lynteris</itunes:subtitle>
      <itunes:summary>As we mark the one-year anniversary of the COIVD-19 pandemic, take the time to listen to this discussion of previous efforts to fight yellow fever, cholera, and plague pandemics. Lukas Engelmann and Christos Lynteris’s Sulfuric Utopias: A History Maritime Fumigation (MIT Press, 2020) tells the story of the international dream of stopping the spread of infectious disease in global shipping networks. Their work shows how the interests of capitalism clashed with the efforts of public health officials. At the center of their narrative lies the Clayton, a machine which combined technocratic enthusiasm and necropolitical logic. Sulfuric Utopias brings together the history disease, capitalism, public health, and science. It is both a contribution to maritime history and urban history. Personally, I was so excited to interview two authors who know more about the history of rat killing than I do.
Lukas Engelmann is a Chancellor's Fellow in the History and Sociology of Biomedicine, in the department of Science, Technology and Innovation Studies at the University of Edinburgh. 
Christos Lynteris is a Senior Lecturer in Social Anthropology at the University of St. Andrews. 
Michael G. Vann is a professor of world history at California State University, Sacramento. A specialist in imperialism and the Cold War in Southeast Asia, he is the author of The Great Hanoi Rat Hunt: Empires, Disease, and Modernity in French Colonial Vietnam (Oxford University Press, 2018). When he’s not reading or talking about new books with smart people, Mike can be found surfing in Santa Cruz, California.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>As we mark the one-year anniversary of the COIVD-19 pandemic, take the time to listen to this discussion of previous efforts to fight yellow fever, cholera, and plague pandemics. Lukas Engelmann and Christos Lynteris’s <a href="https://bookshop.org/a/12343/9780262538732"><em>Sulfuric Utopias: A History Maritime Fumigation</em></a> (MIT Press, 2020) tells the story of the international dream of stopping the spread of infectious disease in global shipping networks. Their work shows how the interests of capitalism clashed with the efforts of public health officials. At the center of their narrative lies the Clayton, a machine which combined technocratic enthusiasm and necropolitical logic. <em>Sulfuric Utopias</em> brings together the history disease, capitalism, public health, and science. It is both a contribution to maritime history and urban history. Personally, I was so excited to interview two authors who know more about the history of rat killing than I do.</p><p>Lukas Engelmann is a Chancellor's Fellow in the History and Sociology of Biomedicine, in the department of Science, Technology and Innovation Studies at the University of Edinburgh. </p><p>Christos Lynteris is a Senior Lecturer in Social Anthropology at the University of St. Andrews. </p><p><a href="https://michaelvann.academia.edu/"><em>Michael G. Vann</em></a><em> is a professor of world history at California State University, Sacramento. A specialist in imperialism and the Cold War in Southeast Asia, he is the author of </em><a href="https://global.oup.com/ushe/product/the-great-hanoi-rat-hunt-9780190602697?cc=us&amp;lang=en&amp;"><em>The Great Hanoi Rat Hunt: Empires, Disease, and Modernity in French Colonial Vietnam</em></a><em> (Oxford University Press, 2018). When he’s not reading or talking about new books with smart people, Mike can be found surfing in Santa Cruz, California.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5293</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Alan Lightman, "Probable Impossibilities: Musings on Beginnings and Endings" (Pantheon, 2021)</title>
      <description>Imagination with a Straight Jacket
Alan Lightman is a writer, physicist, and social entrepreneur. He has served on the faculties of Harvard and the Massachusetts Institute of Technology (MIT) and was the first person at MIT to receive dual faculty appointments in science and in the humanities. He is the author of many books, both fiction and nonfiction, including the international best seller Einstein’s Dreams and The Diagnosis, a finalist for the National Book Award.
This episode goes to both what’s epic in scope and to what’s more intimate and personal. Epic is knowledge now about how the universe began and that it will end with the sun basically engulfing the earth and then burning out. More personal is that the book explores the moral, even religious issues that scientific knowledge brings with it. Most of all, this episode explores the act of intellectual inquiry and exploration through the careers of leading scientists.
Dan Hill, PhD, is the author of eight books and leads Sensory Logic, Inc. (https://www.sensorylogic.com). To check out his related “Dan Hill’s EQ Spotlight” blog, visit https://emotionswizard.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 18 Feb 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>42</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Alan Lightman</itunes:subtitle>
      <itunes:summary>Imagination with a Straight Jacket
Alan Lightman is a writer, physicist, and social entrepreneur. He has served on the faculties of Harvard and the Massachusetts Institute of Technology (MIT) and was the first person at MIT to receive dual faculty appointments in science and in the humanities. He is the author of many books, both fiction and nonfiction, including the international best seller Einstein’s Dreams and The Diagnosis, a finalist for the National Book Award.
This episode goes to both what’s epic in scope and to what’s more intimate and personal. Epic is knowledge now about how the universe began and that it will end with the sun basically engulfing the earth and then burning out. More personal is that the book explores the moral, even religious issues that scientific knowledge brings with it. Most of all, this episode explores the act of intellectual inquiry and exploration through the careers of leading scientists.
Dan Hill, PhD, is the author of eight books and leads Sensory Logic, Inc. (https://www.sensorylogic.com). To check out his related “Dan Hill’s EQ Spotlight” blog, visit https://emotionswizard.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Imagination with a Straight Jacket</p><p>Alan Lightman is a writer, physicist, and social entrepreneur. He has served on the faculties of Harvard and the Massachusetts Institute of Technology (MIT) and was the first person at MIT to receive dual faculty appointments in science and in the humanities. He is the author of many books, both fiction and nonfiction, including the international best seller <em>Einstein’s Dreams</em> and <em>The Diagnosis</em>, a finalist for the National Book Award.</p><p>This episode goes to both what’s epic in scope and to what’s more intimate and personal. Epic is knowledge now about how the universe began and that it will end with the sun basically engulfing the earth and then burning out. More personal is that the book explores the moral, even religious issues that scientific knowledge brings with it. Most of all, this episode explores the act of intellectual inquiry and exploration through the careers of leading scientists.</p><p>Dan Hill, PhD, is the author of eight books and leads Sensory Logic, Inc. (<a href="https://www.sensorylogic.com/">https://www.sensorylogic.com</a>). To check out his related “Dan Hill’s EQ Spotlight” blog, visit <a href="https://emotionswizard.com/">https://emotionswizard.com</a>.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1972</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[a671ee56-5db1-11ec-8024-c7f6abf536c4]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9335623378.mp3?updated=1613570970" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Hannah Marcus, "Forbidden Knowledge: Medicine, Science, and Censorship in Early Modern Italy" (U Chicago Press, 2020)</title>
      <description>Today we speak to Hannah Marcus, Assistant Professor in the Department of the History of Science at Harvard University in Cambridge, Massachusetts, about her new monograph, Forbidden Knowledge: Medicine, Science, and Censorship in Early Modern Italy (University of Chicago Press, 2020).
Forbidden Knowledge explores the censorship of medical books from their proliferation in print through the prohibitions placed on them during the Counter-Reformation. How and why did books banned in Italy in the sixteenth century end up back on library shelves in the seventeenth? Historian Hannah Marcus uncovers how early modern physicians evaluated the utility of banned books and facilitated their continued circulation in conversation with Catholic authorities.
Through extensive archival research, Marcus highlights how talk of scientific utility, once thought to have begun during the Scientific Revolution, in fact began earlier, emerging from ecclesiastical censorship and the desire to continue to use banned medical books. What’s more, this censorship in medicine, which preceded the Copernican debate in astronomy by sixty years, has had a lasting impact on how we talk about new and controversial developments in scientific knowledge. Beautiful illustrations accompany this masterful, timely book about the interplay between efforts at intellectual control and the utility of knowledge.
 Jana Byars is the Academic Director of Netherlands: International Perspectives on Sexuality and Gender.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 16 Feb 2021 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>914</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Hannah Marcus</itunes:subtitle>
      <itunes:summary>Today we speak to Hannah Marcus, Assistant Professor in the Department of the History of Science at Harvard University in Cambridge, Massachusetts, about her new monograph, Forbidden Knowledge: Medicine, Science, and Censorship in Early Modern Italy (University of Chicago Press, 2020).
Forbidden Knowledge explores the censorship of medical books from their proliferation in print through the prohibitions placed on them during the Counter-Reformation. How and why did books banned in Italy in the sixteenth century end up back on library shelves in the seventeenth? Historian Hannah Marcus uncovers how early modern physicians evaluated the utility of banned books and facilitated their continued circulation in conversation with Catholic authorities.
Through extensive archival research, Marcus highlights how talk of scientific utility, once thought to have begun during the Scientific Revolution, in fact began earlier, emerging from ecclesiastical censorship and the desire to continue to use banned medical books. What’s more, this censorship in medicine, which preceded the Copernican debate in astronomy by sixty years, has had a lasting impact on how we talk about new and controversial developments in scientific knowledge. Beautiful illustrations accompany this masterful, timely book about the interplay between efforts at intellectual control and the utility of knowledge.
 Jana Byars is the Academic Director of Netherlands: International Perspectives on Sexuality and Gender.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Today we speak to <a href="https://histsci.fas.harvard.edu/people/hannah-marcus">Hannah Marcus</a>, Assistant Professor in the Department of the History of Science at Harvard University in Cambridge, Massachusetts, about her new monograph, <a href="https://bookshop.org/a/12343/9780226736587"><em>Forbidden Knowledge: Medicine, Science, and Censorship in Early Modern Italy</em></a><em> </em>(University of Chicago Press, 2020).</p><p><em>Forbidden Knowledge</em> explores the censorship of medical books from their proliferation in print through the prohibitions placed on them during the Counter-Reformation. How and why did books banned in Italy in the sixteenth century end up back on library shelves in the seventeenth? Historian Hannah Marcus uncovers how early modern physicians evaluated the utility of banned books and facilitated their continued circulation in conversation with Catholic authorities.</p><p>Through extensive archival research, Marcus highlights how talk of scientific utility, once thought to have begun during the Scientific Revolution, in fact began earlier, emerging from ecclesiastical censorship and the desire to continue to use banned medical books. What’s more, this censorship in medicine, which preceded the Copernican debate in astronomy by sixty years, has had a lasting impact on how we talk about new and controversial developments in scientific knowledge. Beautiful illustrations accompany this masterful, timely book about the interplay between efforts at intellectual control and the utility of knowledge.</p><p><em> </em><a href="https://www.sit.edu/sit_faculty/jana-byars-phd/"><em>Jana Byars</em></a><em> is the Academic Director of Netherlands: International Perspectives on Sexuality and Gender.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3109</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Jacqueline Mitton and Simon Mitton, "Vera Rubin: A Life" (Harvard UP, 2021)</title>
      <description>Few astronomers in the 20th century did as much to expand our understanding of the universe as Vera Rubin. To tell her remarkable story in their biography Vera Rubin: A Life (Belknap Press, 2021), authors Jacqueline and Simon Mitton describe both the range of her accomplishments as well as the barriers she overcame in order to achieve them. 
As they explain, Rubin was drawn early to the study of the stars, determining early in her life that she wanted to be an astronomer. To become one she had to overcome the assumptions of many of her peers that science was not an appropriate field of study for a woman, or that she would abandon her studies once she married and had children. 
Defying their expectations, Rubin balanced child-rearing with earning her doctorate in astronomy and undertaking observational work. Though she participated in a number of different studies, her passion was for understanding galaxies, and her discoveries proved critical for the acceptance of the existence of dark matter in the universe. 
Acclaimed for her work, she used her position to fight for improve the status of women in the sciences, a fight that she continued alongside her research for the rest of her life.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 16 Feb 2021 04:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>196</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Interview with Jacqueline Mitton and Simon Mitton</itunes:subtitle>
      <itunes:summary>Few astronomers in the 20th century did as much to expand our understanding of the universe as Vera Rubin. To tell her remarkable story in their biography Vera Rubin: A Life (Belknap Press, 2021), authors Jacqueline and Simon Mitton describe both the range of her accomplishments as well as the barriers she overcame in order to achieve them. 
As they explain, Rubin was drawn early to the study of the stars, determining early in her life that she wanted to be an astronomer. To become one she had to overcome the assumptions of many of her peers that science was not an appropriate field of study for a woman, or that she would abandon her studies once she married and had children. 
Defying their expectations, Rubin balanced child-rearing with earning her doctorate in astronomy and undertaking observational work. Though she participated in a number of different studies, her passion was for understanding galaxies, and her discoveries proved critical for the acceptance of the existence of dark matter in the universe. 
Acclaimed for her work, she used her position to fight for improve the status of women in the sciences, a fight that she continued alongside her research for the rest of her life.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Few astronomers in the 20th century did as much to expand our understanding of the universe as Vera Rubin. To tell her remarkable story in their biography <a href="https://bookshop.org/a/12343/9780674919198"><em>Vera Rubin: A Life</em></a> (Belknap Press, 2021), authors <a href="https://en.wikipedia.org/wiki/Jacqueline_Mitton">Jacqueline </a>and <a href="https://en.wikipedia.org/wiki/Simon_Mitton">Simon Mitton</a> describe both the range of her accomplishments as well as the barriers she overcame in order to achieve them. </p><p>As they explain, Rubin was drawn early to the study of the stars, determining early in her life that she wanted to be an astronomer. To become one she had to overcome the assumptions of many of her peers that science was not an appropriate field of study for a woman, or that she would abandon her studies once she married and had children. </p><p>Defying their expectations, Rubin balanced child-rearing with earning her doctorate in astronomy and undertaking observational work. Though she participated in a number of different studies, her passion was for understanding galaxies, and her discoveries proved critical for the acceptance of the existence of dark matter in the universe. </p><p>Acclaimed for her work, she used her position to fight for improve the status of women in the sciences, a fight that she continued alongside her research for the rest of her life.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3790</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[96fbb006-5db1-11ec-9938-4bc3bf8ed53d]]></guid>
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    <item>
      <title>Jennifer M. Rampling, "The Experimental Fire: Inventing English Alchemy, 1300-1700" (U Chicago Press, 2020)</title>
      <description>A four-hundred-year history of the development of alchemy in England that brings to light the evolution of the practice. Tracing the development of alchemy in England from the beginning of the fourteenth century to the end of the seventeenth, Jennifer M. Rampling illuminates the role of alchemical reading and experimental practice in the broader context of national and scientific history. 
Using new manuscript sources, she shows how practitioners like George Ripley, John Dee, and Edward Kelley, as well as many previously unknown alchemists, devised new practical approaches to alchemy while seeking the support of English monarchs. By reconstructing their alchemical ideas, practices, and disputes, Rampling reveals how English alchemy was continually reinvented over the space of four centuries, resulting in changes to the science itself. In so doing, The Experimental Fire The Experimental Fire: Inventing English Alchemy, 1300-1700 (University of Chicago Press, 2020) bridges the intellectual history of chemistry and the wider worlds of early modern patronage, medicine, and science.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 08 Feb 2021 04:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Interview with Jennifer M. Rampling</itunes:subtitle>
      <itunes:summary>A four-hundred-year history of the development of alchemy in England that brings to light the evolution of the practice. Tracing the development of alchemy in England from the beginning of the fourteenth century to the end of the seventeenth, Jennifer M. Rampling illuminates the role of alchemical reading and experimental practice in the broader context of national and scientific history. 
Using new manuscript sources, she shows how practitioners like George Ripley, John Dee, and Edward Kelley, as well as many previously unknown alchemists, devised new practical approaches to alchemy while seeking the support of English monarchs. By reconstructing their alchemical ideas, practices, and disputes, Rampling reveals how English alchemy was continually reinvented over the space of four centuries, resulting in changes to the science itself. In so doing, The Experimental Fire The Experimental Fire: Inventing English Alchemy, 1300-1700 (University of Chicago Press, 2020) bridges the intellectual history of chemistry and the wider worlds of early modern patronage, medicine, and science.
Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at galina.limorenko@epfl.ch.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>A four-hundred-year history of the development of alchemy in England that brings to light the evolution of the practice. Tracing the development of alchemy in England from the beginning of the fourteenth century to the end of the seventeenth, <a href="https://history.princeton.edu/people/jennifer-m-rampling">Jennifer M. Rampling</a> illuminates the role of alchemical reading and experimental practice in the broader context of national and scientific history. </p><p>Using new manuscript sources, she shows how practitioners like George Ripley, John Dee, and Edward Kelley, as well as many previously unknown alchemists, devised new practical approaches to alchemy while seeking the support of English monarchs. By reconstructing their alchemical ideas, practices, and disputes, Rampling reveals how English alchemy was continually reinvented over the space of four centuries, resulting in changes to the science itself. In so doing, The Experimental Fire <a href="https://bookshop.org/a/12343/9780226710709"><em>The Experimental Fire: Inventing English Alchemy, 1300-1700</em></a> (University of Chicago Press, 2020) bridges the intellectual history of chemistry and the wider worlds of early modern patronage, medicine, and science.</p><p><em>Galina Limorenko is a doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. To discuss and propose the book for an interview you can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3943</itunes:duration>
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    <item>
      <title>Paul Davies, "The Demon in the Machine: How Hidden Webs of Information Are Solving the Mystery of Life" (U Chicago Press, 2020)</title>
      <description>What is life? For generations, scientists have struggled to make sense of this fundamental question, for life really does look like magic: even a humble bacterium accomplishes things so dazzling that no human engineer can match it. Huge advances in molecular biology over the past few decades have served only to deepen the mystery. In this penetrating and wide-ranging book, world-renowned physicist and science communicator Paul Davies searches for answers in a field so new and fast-moving that it lacks a name; it is a domain where biology, computing, logic, chemistry, quantum physics, and nanotechnology intersect. At the heart of these diverse fields, Davies explains, is the concept of information: a quantity which has the power to unify biology with physics, transform technology and medicine, and force us to fundamentally reconsider what it means to be alive—even illuminating the age-old question of whether we are alone in the universe. 
From life’s murky origins to the microscopic engines that run the cells of our bodies, The Demon in the Machine: How Hidden Webs of Information Are Solving the Mystery of Life (U Chicago Press, 2020) journeys across an astounding landscape of cutting-edge science. Weaving together cancer and consciousness, two-headed worms and bird navigation, Davies reveals how biological organisms garner and process information to conjure order out of chaos, opening a window onto the secret of life itself.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 24 Dec 2020 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>272</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Paul Davies</itunes:subtitle>
      <itunes:summary>What is life? For generations, scientists have struggled to make sense of this fundamental question, for life really does look like magic: even a humble bacterium accomplishes things so dazzling that no human engineer can match it. Huge advances in molecular biology over the past few decades have served only to deepen the mystery. In this penetrating and wide-ranging book, world-renowned physicist and science communicator Paul Davies searches for answers in a field so new and fast-moving that it lacks a name; it is a domain where biology, computing, logic, chemistry, quantum physics, and nanotechnology intersect. At the heart of these diverse fields, Davies explains, is the concept of information: a quantity which has the power to unify biology with physics, transform technology and medicine, and force us to fundamentally reconsider what it means to be alive—even illuminating the age-old question of whether we are alone in the universe. 
From life’s murky origins to the microscopic engines that run the cells of our bodies, The Demon in the Machine: How Hidden Webs of Information Are Solving the Mystery of Life (U Chicago Press, 2020) journeys across an astounding landscape of cutting-edge science. Weaving together cancer and consciousness, two-headed worms and bird navigation, Davies reveals how biological organisms garner and process information to conjure order out of chaos, opening a window onto the secret of life itself.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>What is life? For generations, scientists have struggled to make sense of this fundamental question, for life really does look like magic: even a humble bacterium accomplishes things so dazzling that no human engineer can match it. Huge advances in molecular biology over the past few decades have served only to deepen the mystery. In this penetrating and wide-ranging book, world-renowned physicist and science communicator Paul Davies searches for answers in a field so new and fast-moving that it lacks a name; it is a domain where biology, computing, logic, chemistry, quantum physics, and nanotechnology intersect. At the heart of these diverse fields, Davies explains, is the concept of information: a quantity which has the power to unify biology with physics, transform technology and medicine, and force us to fundamentally reconsider what it means to be alive—even illuminating the age-old question of whether we are alone in the universe. </p><p>From life’s murky origins to the microscopic engines that run the cells of our bodies, <a href="https://bookshop.org/a/12343/9780226669700"><em>The Demon in the Machine: How Hidden Webs of Information Are Solving the Mystery of Life</em></a><em> </em>(U Chicago Press, 2020) journeys across an astounding landscape of cutting-edge science. Weaving together cancer and consciousness, two-headed worms and bird navigation, Davies reveals how biological organisms garner and process information to conjure order out of chaos, opening a window onto the secret of life itself.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4540</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Jimena Canales, "Bedeviled: A Shadow History of Demons in Science" (Princeton UP, 2020)</title>
      <description>Science may be known for banishing the demons of superstition from the modern world. Yet just as the demon-haunted world was being exorcized by the enlightening power of reason, a new kind of demon mischievously materialized in the scientific imagination itself. Scientists began to employ hypothetical beings to perform certain roles in thought experiments—experiments that can only be done in the imagination—and these impish assistants helped scientists achieve major breakthroughs that pushed forward the frontiers of science and technology.
Spanning four centuries of discovery—from René Descartes, whose demon could hijack sensorial reality, to James Clerk Maxwell, whose molecular-sized demon deftly broke the second law of thermodynamics, to Darwin, Einstein, Feynman, and beyond—Jimena Canales tells a shadow history of science and the demons that bedevil it. 
In Bedeviled: A Shadow History of Demons in Science (Princeton UP, 2020), she reveals how the greatest scientific thinkers used demons to explore problems, test the limits of what is possible, and better understand nature. Their imaginary familiars helped unlock the secrets of entropy, heredity, relativity, quantum mechanics, and other scientific wonders—and continue to inspire breakthroughs in the realms of computer science, artificial intelligence, and economics today.

The world may no longer be haunted as it once was, but the demons of the scientific imagination are alive and well, continuing to play a vital role in scientists’ efforts to explore the unknown and make the impossible real.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 16 Nov 2020 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>100</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Just as the demon-haunted world was being exorcized by the enlightening power of reason, a new kind of demon mischievously materialized in the scientific imagination itself....</itunes:subtitle>
      <itunes:summary>Science may be known for banishing the demons of superstition from the modern world. Yet just as the demon-haunted world was being exorcized by the enlightening power of reason, a new kind of demon mischievously materialized in the scientific imagination itself. Scientists began to employ hypothetical beings to perform certain roles in thought experiments—experiments that can only be done in the imagination—and these impish assistants helped scientists achieve major breakthroughs that pushed forward the frontiers of science and technology.
Spanning four centuries of discovery—from René Descartes, whose demon could hijack sensorial reality, to James Clerk Maxwell, whose molecular-sized demon deftly broke the second law of thermodynamics, to Darwin, Einstein, Feynman, and beyond—Jimena Canales tells a shadow history of science and the demons that bedevil it. 
In Bedeviled: A Shadow History of Demons in Science (Princeton UP, 2020), she reveals how the greatest scientific thinkers used demons to explore problems, test the limits of what is possible, and better understand nature. Their imaginary familiars helped unlock the secrets of entropy, heredity, relativity, quantum mechanics, and other scientific wonders—and continue to inspire breakthroughs in the realms of computer science, artificial intelligence, and economics today.

The world may no longer be haunted as it once was, but the demons of the scientific imagination are alive and well, continuing to play a vital role in scientists’ efforts to explore the unknown and make the impossible real.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Science may be known for banishing the demons of superstition from the modern world. Yet just as the demon-haunted world was being exorcized by the enlightening power of reason, a new kind of demon mischievously materialized in the scientific imagination itself. Scientists began to employ hypothetical beings to perform certain roles in thought experiments—experiments that can only be done in the imagination—and these impish assistants helped scientists achieve major breakthroughs that pushed forward the frontiers of science and technology.</p><p>Spanning four centuries of discovery—from René Descartes, whose demon could hijack sensorial reality, to James Clerk Maxwell, whose molecular-sized demon deftly broke the second law of thermodynamics, to Darwin, Einstein, Feynman, and beyond—Jimena Canales tells a shadow history of science and the demons that bedevil it. </p><p>In<em> </em><a href="https://bookshop.org/a/12343/9780691175324"><em>Bedeviled: A Shadow History of Demons in Science</em></a> (Princeton UP, 2020), she reveals how the greatest scientific thinkers used demons to explore problems, test the limits of what is possible, and better understand nature. Their imaginary familiars helped unlock the secrets of entropy, heredity, relativity, quantum mechanics, and other scientific wonders—and continue to inspire breakthroughs in the realms of computer science, artificial intelligence, and economics today.</p><p><br></p><p>The world may no longer be haunted as it once was, but the demons of the scientific imagination are alive and well, continuing to play a vital role in scientists’ efforts to explore the unknown and make the impossible real.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2526</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>D. Bilak and T. Nummedal, "Furnace and Fugue. A Digital Edition of Michael Maier’s 'Atalanta fugiens' (1618)" (U Virginia Press, 2020)</title>
      <description>In 1618, on the eve of the Thirty Years’ War, the German alchemist and physician Michael Maier published Atalanta fugiens, an intriguing and complex musical alchemical emblem book designed to engage the ear, eye, and intellect. The book unfolds as a series of fifty emblems, each of which contains an accompanying "fugue" music scored for three voices. Historians of alchemy have long understood this virtuoso work as an ambitious demonstration of the art’s literary potential and of the possibilities of the early modern printed book.
Atalanta fugiens lends itself unusually well to today’s digital tools. Re-rendering Maier’s multimedia alchemical project as an enhanced online publication, Furnace and Fugue allows contemporary readers to hear, see, manipulate, and investigate Atalanta fugiens in ways that Maier perhaps imagined but that were impossible to fully realize before now. An interactive, layered digital edition provides accessibility and flexibility, presenting all the elements of the original book along with significant enhancements that allow for deep engagement by specialists and nonspecialists alike.
Three short introductory essays invite readers to get acquainted with early modern alchemy, and Michael Maier. Eight extended interpretive essays explore Atalanta fugiens and its place in the history of music, science, print, and visual culture in early modern Europe. These interdisciplinary essays also include interactive features that clarify and/or advance the authors’ arguments while positioning Furnace and Fugue as an original, uniquely engaging contribution to our understanding of early modern culture.
Drs. Bilak and Nummedal are the editors of this innovative digital edition of a seventeenth-century alchemical text that combines text, image, and music. Furnace &amp; Fugue was developed by Brown University’s Mellon-supported Digital Publications Initiative, and published by the University of Virginia Press (2020) as an open-access edition.
Supported by the Andrew W. Mellon Foundation, the Gladys Krieble Delmas Foundation, and the Office of the Vice President for Research and the Social Science Research Institute at Brown University.
Dr. Bilak is an academic and a goldsmith. She is the Creative Director of 12 Keys Consultancy &amp; Design, LLC, and an Independent Scholar. She is an historian of early modern science Donna's research extends to the cross-cultural examination of jewellery, artisanal technologies, and meaning-making with materials. Dr. Nummedal is Professor of History and of Italian Studies at Brown University. She is the author of Alchemy and Authority in the Holy Roman Empire (University of Chicago Press, 2007), Anna Zieglerin and the Lion’s Blood: Alchemy and End Times in Reformation Germany (University of Pennsylvania Press, 2019). With Janice Neri and John V. Calhoun, she published John Abbot and William Swainson: Art, Science, and Commerce in Nineteenth-Century Natural History.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 21 Oct 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>824</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>In 1618, on the eve of the Thirty Years’ War, the German alchemist and physician Michael Maier published Atalanta fugiens, an intriguing and complex musical alchemical emblem book designed to engage the ear, eye, and intellect..,</itunes:subtitle>
      <itunes:summary>In 1618, on the eve of the Thirty Years’ War, the German alchemist and physician Michael Maier published Atalanta fugiens, an intriguing and complex musical alchemical emblem book designed to engage the ear, eye, and intellect. The book unfolds as a series of fifty emblems, each of which contains an accompanying "fugue" music scored for three voices. Historians of alchemy have long understood this virtuoso work as an ambitious demonstration of the art’s literary potential and of the possibilities of the early modern printed book.
Atalanta fugiens lends itself unusually well to today’s digital tools. Re-rendering Maier’s multimedia alchemical project as an enhanced online publication, Furnace and Fugue allows contemporary readers to hear, see, manipulate, and investigate Atalanta fugiens in ways that Maier perhaps imagined but that were impossible to fully realize before now. An interactive, layered digital edition provides accessibility and flexibility, presenting all the elements of the original book along with significant enhancements that allow for deep engagement by specialists and nonspecialists alike.
Three short introductory essays invite readers to get acquainted with early modern alchemy, and Michael Maier. Eight extended interpretive essays explore Atalanta fugiens and its place in the history of music, science, print, and visual culture in early modern Europe. These interdisciplinary essays also include interactive features that clarify and/or advance the authors’ arguments while positioning Furnace and Fugue as an original, uniquely engaging contribution to our understanding of early modern culture.
Drs. Bilak and Nummedal are the editors of this innovative digital edition of a seventeenth-century alchemical text that combines text, image, and music. Furnace &amp; Fugue was developed by Brown University’s Mellon-supported Digital Publications Initiative, and published by the University of Virginia Press (2020) as an open-access edition.
Supported by the Andrew W. Mellon Foundation, the Gladys Krieble Delmas Foundation, and the Office of the Vice President for Research and the Social Science Research Institute at Brown University.
Dr. Bilak is an academic and a goldsmith. She is the Creative Director of 12 Keys Consultancy &amp; Design, LLC, and an Independent Scholar. She is an historian of early modern science Donna's research extends to the cross-cultural examination of jewellery, artisanal technologies, and meaning-making with materials. Dr. Nummedal is Professor of History and of Italian Studies at Brown University. She is the author of Alchemy and Authority in the Holy Roman Empire (University of Chicago Press, 2007), Anna Zieglerin and the Lion’s Blood: Alchemy and End Times in Reformation Germany (University of Pennsylvania Press, 2019). With Janice Neri and John V. Calhoun, she published John Abbot and William Swainson: Art, Science, and Commerce in Nineteenth-Century Natural History.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
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        <![CDATA[<p>In 1618, on the eve of the Thirty Years’ War, the German alchemist and physician Michael Maier published<em> Atalanta fugiens</em>, an intriguing and complex musical alchemical emblem book designed to engage the ear, eye, and intellect. The book unfolds as a series of fifty emblems, each of which contains an accompanying "fugue" music scored for three voices. Historians of alchemy have long understood this virtuoso work as an ambitious demonstration of the art’s literary potential and of the possibilities of the early modern printed book.</p><p><em>Atalanta fugiens</em> lends itself unusually well to today’s digital tools. Re-rendering Maier’s multimedia alchemical project as an enhanced online publication, <em>Furnace and Fugue</em> allows contemporary readers to hear, see, manipulate, and investigate <em>Atalanta fugiens</em> in ways that Maier perhaps imagined but that were impossible to fully realize before now. An interactive, layered digital edition provides accessibility and flexibility, presenting all the elements of the original book along with significant enhancements that allow for deep engagement by specialists and nonspecialists alike.</p><p>Three short introductory essays invite readers to get acquainted with early modern alchemy, and Michael Maier. Eight extended interpretive essays explore <em>Atalanta fugiens</em> and its place in the history of music, science, print, and visual culture in early modern Europe. These interdisciplinary essays also include interactive features that clarify and/or advance the authors’ arguments while positioning<em> Furnace and Fugue</em> as an original, uniquely engaging contribution to our understanding of early modern culture.</p><p>Drs. Bilak and Nummedal are the editors of this innovative digital edition of a seventeenth-century alchemical text that combines text, image, and music. <em>Furnace &amp; Fugue</em> was developed by Brown University’s Mellon-supported Digital Publications Initiative, and published by the University of Virginia Press (2020) as an <a href="https://www.upress.virginia.edu/content/furnace-and-fugue">open-access edition.</a></p><p>Supported by the Andrew W. Mellon Foundation, the Gladys Krieble Delmas Foundation, and the Office of the Vice President for Research and the Social Science Research Institute at Brown University.</p><p><a href="https://dbilakpraxis.com/">Dr. Bilak</a> is an academic and a goldsmith. She is the Creative Director of 12 Keys Consultancy &amp; Design, LLC, and an Independent Scholar. She is an historian of early modern science Donna's research extends to the cross-cultural examination of jewellery, artisanal technologies, and meaning-making with materials. <a href="https://www.brown.edu/academics/history/people/tara-e-nummedal">Dr. Nummedal</a> is Professor of History and of Italian Studies at Brown University. She is the author of <em>Alchemy and Authority in the Holy Roman Empire</em> (University of Chicago Press, 2007), <em>Anna</em> <em>Zieglerin and the Lion’s Blood: Alchemy and End Times in Reformation Germany</em> (University of Pennsylvania Press, 2019). With Janice Neri and John V. Calhoun, she published <em>John Abbot and William Swainson: Art, Science, and Commerce in Nineteenth-Century Natural History.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <title>John Whysner, "The Alchemy of Disease" (Columbia UP, 2020)</title>
      <description>Since the dawn of the industrial age, we have unleashed a bewildering number of potentially harmful chemicals. But out of this vast array, how do we identify the actual threats? What does it take to prove that a certain chemical causes cancer? How do we translate academic knowledge of the toxic effects of particular substances into understanding real-world health consequences? The science that answers these questions is toxicology.
In The Alchemy of Disease: How Chemicals and Toxins Cause Cancer and Other Illnesses (Columbia University Press), John Whysner offers an accessible and compelling history of toxicology and its key findings. He details the experiments and discoveries that revealed the causal connections between chemical exposures and diseases. Balancing clear accounts of groundbreaking science with human drama and public-policy relevance, Whysner describes key moments in the development of toxicology and their thorny social and political implications.
The book features discussions of toxicological problems past and present, including DDT, cigarettes and other carcinogens, lead poisoning, fossil fuels, chemical warfare, pharmaceuticals—including opioids—and the efficacy of animal testing. Offering valuable insight into the science and politics of crucial public-health concerns, The Alchemy of Disease shows that toxicology’s task—pinpointing the chemical cause of an illness—is as compelling as any detective story.
John Whysner was formerly an associate clinical professor of environmental health sciences at the Mailman School of Public Health, Columbia University. A board-certified toxicologist, he has consulted for the International Agency for Research on Cancer and federal agencies, including the Centers for Disease Control and Prevention, and was director of biomedical research for the Special Action Office for Drug Abuse Prevention, Executive Office of the President.
Claire Clark is a medical educator, historian of medicine, and associate professor at the University of Kentucky’s College of Medicine.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 08 Oct 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>95</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Whysner offers an accessible and compelling history of toxicology and its key findings....</itunes:subtitle>
      <itunes:summary>Since the dawn of the industrial age, we have unleashed a bewildering number of potentially harmful chemicals. But out of this vast array, how do we identify the actual threats? What does it take to prove that a certain chemical causes cancer? How do we translate academic knowledge of the toxic effects of particular substances into understanding real-world health consequences? The science that answers these questions is toxicology.
In The Alchemy of Disease: How Chemicals and Toxins Cause Cancer and Other Illnesses (Columbia University Press), John Whysner offers an accessible and compelling history of toxicology and its key findings. He details the experiments and discoveries that revealed the causal connections between chemical exposures and diseases. Balancing clear accounts of groundbreaking science with human drama and public-policy relevance, Whysner describes key moments in the development of toxicology and their thorny social and political implications.
The book features discussions of toxicological problems past and present, including DDT, cigarettes and other carcinogens, lead poisoning, fossil fuels, chemical warfare, pharmaceuticals—including opioids—and the efficacy of animal testing. Offering valuable insight into the science and politics of crucial public-health concerns, The Alchemy of Disease shows that toxicology’s task—pinpointing the chemical cause of an illness—is as compelling as any detective story.
John Whysner was formerly an associate clinical professor of environmental health sciences at the Mailman School of Public Health, Columbia University. A board-certified toxicologist, he has consulted for the International Agency for Research on Cancer and federal agencies, including the Centers for Disease Control and Prevention, and was director of biomedical research for the Special Action Office for Drug Abuse Prevention, Executive Office of the President.
Claire Clark is a medical educator, historian of medicine, and associate professor at the University of Kentucky’s College of Medicine.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Since the dawn of the industrial age, we have unleashed a bewildering number of potentially harmful chemicals. But out of this vast array, how do we identify the actual threats? What does it take to prove that a certain chemical causes cancer? How do we translate academic knowledge of the toxic effects of particular substances into understanding real-world health consequences? The science that answers these questions is toxicology.</p><p>In <a href="https://bookshop.org/a/12343/9780231191661"><em>The Alchemy of Disease: How Chemicals and Toxins Cause Cancer and Other Illnesses</em></a> (Columbia University Press), John Whysner offers an accessible and compelling history of toxicology and its key findings. He details the experiments and discoveries that revealed the causal connections between chemical exposures and diseases. Balancing clear accounts of groundbreaking science with human drama and public-policy relevance, Whysner describes key moments in the development of toxicology and their thorny social and political implications.</p><p>The book features discussions of toxicological problems past and present, including DDT, cigarettes and other carcinogens, lead poisoning, fossil fuels, chemical warfare, pharmaceuticals—including opioids—and the efficacy of animal testing. Offering valuable insight into the science and politics of crucial public-health concerns, <em>The Alchemy of Disease</em> shows that toxicology’s task—pinpointing the chemical cause of an illness—is as compelling as any detective story.</p><p><a href="https://www.linkedin.com/in/john-whysner-md-phd-dabt-06b8b8a3/">John Whysner</a> was formerly an associate clinical professor of environmental health sciences at the Mailman School of Public Health, Columbia University. A board-certified toxicologist, he has consulted for the International Agency for Research on Cancer and federal agencies, including the Centers for Disease Control and Prevention, and was director of biomedical research for the Special Action Office for Drug Abuse Prevention, Executive Office of the President.</p><p><a href="https://www.clairedclark.com/"><em>Claire Clark</em></a><em> is a medical educator, historian of medicine, and associate professor at the University of Kentucky’s College of Medicine.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <title>Jeremy England, "Every Life is on Fire: How Thermodynamics Explains the Origins of Living Things" (Basic Books, 2020)</title>
      <description>“How did life begin? Most things in the universe aren't alive, and yet if you trace the evolutionary history of plants and animals back far enough, you will find that, at some point, neither were we. Scientists have wrestled with the problem through the ages, and yet they still don’t agree on what kind of answer they are even looking for. But in 2013, at just 30 years old, physicist Jeremy England published a paper that has utterly upended the ongoing study of life’s origins.
In Every Life is on Fire: How Thermodynamics Explains the Origins of Living Things (Basic Books, 2020), England presents, for the first time for a general audience, his groundbreaking theory of dissipative adaptation. Described simply, in any disordered system, matter clumps together and breaks apart mostly randomly. But some of the clumps that form momentarily dissipate more energy, and these structures are less likely to fall apart. Over time, they become better at both withstanding the disorder surrounding them and creating copies of themselves. From this deep insight, grounded in thermodynamics, England isolates the emergence of the first life-like behaviors. As he shows, rather than being a stroke of miraculous luck, life-like fine-tuning can emerge in matter under a variety of fairly generic experimental conditions.
In this fascinating account, England walks readers through a range of different concepts in physics and biology to sketch out his novel description of how life might emerge. One of the beauties of his approach is the way it matches recognizably with the messy complexity of the everyday world, from the way sleet slides down a windshield in cold rain to how salt and pepper grains dance together in a pan of heated oil.
But that is not the whole story. While the difference between being alive or not may seem as obvious as night and day, physics does not in fact make a clear distinction. That, as England argues, is a matter of perspective, and throughout the book he describes what he sees as the remarkable synergy between the account of life’s origins given by physics, and the account given in the Hebrew Bible. In so doing, England reckons with what, if anything, science can really tell us about life’s great mysteries.
Full of scientific and philosophical insight, Every Life is on Fire is a singular book from one of the most exciting physicists of his generation.
Jeremy England is senior director in artificial intelligence at GlaxoSmithKline, principal research scientist at Georgia Tech, and is the former Thomas D. &amp; Virginia W. Cabot Career Development Associate Professor of Physics at MIT. He was a Rhodes Scholar, a Hertz Fellow, and was named one of Forbes 30 Under 30 Rising Stars in Science. He lives in Brookline, MA.
Galina Limorenko is a post-doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. You can reach her at galina.limorenko@epfl.ch
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 05 Oct 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>27</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>“How did life begin? Most things in the universe aren't alive, and yet if you trace the evolutionary history of plants and animals back far enough, you will find that, at some point, neither were we....</itunes:subtitle>
      <itunes:summary>“How did life begin? Most things in the universe aren't alive, and yet if you trace the evolutionary history of plants and animals back far enough, you will find that, at some point, neither were we. Scientists have wrestled with the problem through the ages, and yet they still don’t agree on what kind of answer they are even looking for. But in 2013, at just 30 years old, physicist Jeremy England published a paper that has utterly upended the ongoing study of life’s origins.
In Every Life is on Fire: How Thermodynamics Explains the Origins of Living Things (Basic Books, 2020), England presents, for the first time for a general audience, his groundbreaking theory of dissipative adaptation. Described simply, in any disordered system, matter clumps together and breaks apart mostly randomly. But some of the clumps that form momentarily dissipate more energy, and these structures are less likely to fall apart. Over time, they become better at both withstanding the disorder surrounding them and creating copies of themselves. From this deep insight, grounded in thermodynamics, England isolates the emergence of the first life-like behaviors. As he shows, rather than being a stroke of miraculous luck, life-like fine-tuning can emerge in matter under a variety of fairly generic experimental conditions.
In this fascinating account, England walks readers through a range of different concepts in physics and biology to sketch out his novel description of how life might emerge. One of the beauties of his approach is the way it matches recognizably with the messy complexity of the everyday world, from the way sleet slides down a windshield in cold rain to how salt and pepper grains dance together in a pan of heated oil.
But that is not the whole story. While the difference between being alive or not may seem as obvious as night and day, physics does not in fact make a clear distinction. That, as England argues, is a matter of perspective, and throughout the book he describes what he sees as the remarkable synergy between the account of life’s origins given by physics, and the account given in the Hebrew Bible. In so doing, England reckons with what, if anything, science can really tell us about life’s great mysteries.
Full of scientific and philosophical insight, Every Life is on Fire is a singular book from one of the most exciting physicists of his generation.
Jeremy England is senior director in artificial intelligence at GlaxoSmithKline, principal research scientist at Georgia Tech, and is the former Thomas D. &amp; Virginia W. Cabot Career Development Associate Professor of Physics at MIT. He was a Rhodes Scholar, a Hertz Fellow, and was named one of Forbes 30 Under 30 Rising Stars in Science. He lives in Brookline, MA.
Galina Limorenko is a post-doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. You can reach her at galina.limorenko@epfl.ch
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>“How did life begin? Most things in the universe aren't alive, and yet if you trace the evolutionary history of plants and animals back far enough, you will find that, at some point, neither were we. Scientists have wrestled with the problem through the ages, and yet they still don’t agree on what kind of answer they are even looking for. But in 2013, at just 30 years old, physicist Jeremy England published a paper that has utterly upended the ongoing study of life’s origins.</p><p>In <a href="https://bookshop.org/a/12343/9781541699014"><em>Every Life is on Fire: How Thermodynamics Explains the Origins of Living Things</em></a> (Basic Books, 2020), England presents, for the first time for a general audience, his groundbreaking theory of dissipative adaptation. Described simply, in any disordered system, matter clumps together and breaks apart mostly randomly. But some of the clumps that form momentarily dissipate more energy, and these structures are less likely to fall apart. Over time, they become better at both withstanding the disorder surrounding them and creating copies of themselves. From this deep insight, grounded in thermodynamics, England isolates the emergence of the first life-like behaviors. As he shows, rather than being a stroke of miraculous luck, life-like fine-tuning can emerge in matter under a variety of fairly generic experimental conditions.</p><p>In this fascinating account, England walks readers through a range of different concepts in physics and biology to sketch out his novel description of how life might emerge. One of the beauties of his approach is the way it matches recognizably with the messy complexity of the everyday world, from the way sleet slides down a windshield in cold rain to how salt and pepper grains dance together in a pan of heated oil.</p><p>But that is not the whole story. While the difference between being alive or not may seem as obvious as night and day, physics does not in fact make a clear distinction. That, as England argues, is a matter of perspective, and throughout the book he describes what he sees as the remarkable synergy between the account of life’s origins given by physics, and the account given in the Hebrew Bible. In so doing, England reckons with what, if anything, science can really tell us about life’s great mysteries.</p><p>Full of scientific and philosophical insight, <em>Every Life is on Fire</em> is a singular book from one of the most exciting physicists of his generation.</p><p>Jeremy England is senior director in artificial intelligence at GlaxoSmithKline, principal research scientist at Georgia Tech, and is the former Thomas D. &amp; Virginia W. Cabot Career Development Associate Professor of Physics at MIT. He was a Rhodes Scholar, a Hertz Fellow, and was named one of Forbes 30 Under 30 Rising Stars in Science. He lives in Brookline, MA.</p><p><em>Galina Limorenko is a post-doctoral candidate in Neuroscience with a focus on biochemistry and molecular biology of neurodegenerative diseases at EPFL in Switzerland. You can reach her at </em><a href="mailto:galina.limorenko@epfl.ch"><em>galina.limorenko@epfl.ch</em></a></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <title>James L. Nolan, Jr., "Atomic Doctors: Conscience and Complicity at the Dawn of the Nuclear Age" (Harvard UP, 2020)</title>
      <description>After his father died, James L. Nolan, Jr., took possession of a box of private family materials. To his surprise, the small secret archive contained a treasure trove of information about his grandfather’s role as a doctor in the Manhattan Project. Dr. Nolan, it turned out, had been a significant figure. A talented ob-gyn radiologist, he cared for the scientists on the project, organized safety and evacuation plans for the Trinity test at Alamogordo, escorted the “Little Boy” bomb from Los Alamos to the Pacific Islands, and was one of the first Americans to enter the irradiated ruins of Hiroshima and Nagasaki.
Participation on the project challenged Dr. Nolan’s instincts as a healer. He and his medical colleagues were often conflicted, torn between their duty and desire to win the war and their oaths to protect life. Atomic Doctors: Conscience and Complicity at the Dawn of the Nuclear Age (Harvard UP, 2020) follows these physicians as they sought to maximize the health and safety of those exposed to nuclear radiation, all the while serving leaders determined to minimize delays and maintain secrecy. Called upon both to guard against the harmful effects of radiation and to downplay its hazards, doctors struggled with the ethics of ending the deadliest of all wars using the most lethal of all weapons. Their work became a very human drama of ideals, co-optation, and complicity.
A vital and vivid account of a largely unknown chapter in atomic history, Atomic Doctors is a profound meditation on the moral dilemmas that ordinary people face in extraordinary times.
James L. Nolan, Jr., is Washington Gladden 1859 Professor of Sociology at Williams College. His previous books include What They Saw in America: Alexis de Tocqueville, Max Weber, G. K. Chesterton, and Sayyid Qutb and Reinventing Justice: The American Drug Court Movement.
Claire Clark is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine. She teaches and writes about health behavior in historical context. 
 
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 24 Sep 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>92</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>After his father died, James L. Nolan, Jr., took possession of a box of private family materials. To his surprise, the small secret archive contained a treasure trove of information about his grandfather’s role as a doctor in the Manhattan Project...</itunes:subtitle>
      <itunes:summary>After his father died, James L. Nolan, Jr., took possession of a box of private family materials. To his surprise, the small secret archive contained a treasure trove of information about his grandfather’s role as a doctor in the Manhattan Project. Dr. Nolan, it turned out, had been a significant figure. A talented ob-gyn radiologist, he cared for the scientists on the project, organized safety and evacuation plans for the Trinity test at Alamogordo, escorted the “Little Boy” bomb from Los Alamos to the Pacific Islands, and was one of the first Americans to enter the irradiated ruins of Hiroshima and Nagasaki.
Participation on the project challenged Dr. Nolan’s instincts as a healer. He and his medical colleagues were often conflicted, torn between their duty and desire to win the war and their oaths to protect life. Atomic Doctors: Conscience and Complicity at the Dawn of the Nuclear Age (Harvard UP, 2020) follows these physicians as they sought to maximize the health and safety of those exposed to nuclear radiation, all the while serving leaders determined to minimize delays and maintain secrecy. Called upon both to guard against the harmful effects of radiation and to downplay its hazards, doctors struggled with the ethics of ending the deadliest of all wars using the most lethal of all weapons. Their work became a very human drama of ideals, co-optation, and complicity.
A vital and vivid account of a largely unknown chapter in atomic history, Atomic Doctors is a profound meditation on the moral dilemmas that ordinary people face in extraordinary times.
James L. Nolan, Jr., is Washington Gladden 1859 Professor of Sociology at Williams College. His previous books include What They Saw in America: Alexis de Tocqueville, Max Weber, G. K. Chesterton, and Sayyid Qutb and Reinventing Justice: The American Drug Court Movement.
Claire Clark is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine. She teaches and writes about health behavior in historical context. 
 
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>After his father died, James L. Nolan, Jr., took possession of a box of private family materials. To his surprise, the small secret archive contained a treasure trove of information about his grandfather’s role as a doctor in the Manhattan Project. Dr. Nolan, it turned out, had been a significant figure. A talented ob-gyn radiologist, he cared for the scientists on the project, organized safety and evacuation plans for the Trinity test at Alamogordo, escorted the “Little Boy” bomb from Los Alamos to the Pacific Islands, and was one of the first Americans to enter the irradiated ruins of Hiroshima and Nagasaki.</p><p>Participation on the project challenged Dr. Nolan’s instincts as a healer. He and his medical colleagues were often conflicted, torn between their duty and desire to win the war and their oaths to protect life. <a href="https://bookshop.org/a/12343/9780674248632"><em>Atomic Doctors: Conscience and Complicity at the Dawn of the Nuclear Age</em></a> (Harvard UP, 2020) follows these physicians as they sought to maximize the health and safety of those exposed to nuclear radiation, all the while serving leaders determined to minimize delays and maintain secrecy. Called upon both to guard against the harmful effects of radiation and to downplay its hazards, doctors struggled with the ethics of ending the deadliest of all wars using the most lethal of all weapons. Their work became a very human drama of ideals, co-optation, and complicity.</p><p>A vital and vivid account of a largely unknown chapter in atomic history, <em>Atomic Doctors</em> is a profound meditation on the moral dilemmas that ordinary people face in extraordinary times.</p><p><a href="https://anso.williams.edu/profile/jnolan/">James L. Nolan, Jr.,</a> is Washington Gladden 1859 Professor of Sociology at Williams College. His previous books include <em>What They Saw in America: Alexis de Tocqueville, Max Weber, G. K. Chesterton, and Sayyid Qutb</em> and <em>Reinventing Justice: The American Drug Court Movement</em>.</p><p><a href="http://www.clairedclark.com/"><em>Claire Clark</em></a><em> is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine. She teaches and writes about health behavior in historical context. </em></p><p><em> </em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <title>Joseph E. Davis, "Chemically Imbalanced: Everyday Suffering, Medication, and Our Troubled Quest for Self-Mastery" (U Chicago Press, 2020)</title>
      <description>Everyday suffering—those conditions or feelings brought on by trying circumstances that arise in everyone’s lives—is something that humans have grappled with for millennia. But the last decades have seen a drastic change in the way we approach it. In the past, a person going through a time of difficulty might keep a journal or see a therapist, but now the psychological has been replaced by the biological: instead of treating the heart, soul, and mind, we take a pill to treat the brain.
Chemically Imbalanced: Everyday Suffering, Medication, and Our Troubled Quest for Self-Mastery (University of Chicago Press) is a field report on how ordinary people dealing with common problems explain their suffering, how they’re increasingly turning to the thin and mechanistic language of the “body/brain,” and what these encounters might tell us.
Drawing on interviews with people dealing with struggles such as underperformance in school or work, grief after the end of a relationship, or disappointment with how their life is unfolding, Joseph E. Davis reveals the profound revolution in consciousness that is underway. We now see suffering as an imbalance in the brain that needs to be fixed, usually through chemical means. This has rippled into our social and cultural conversations, and it has affected how we, as a society, imagine ourselves and envision what constitutes a good life.
Davis warns that what we envision as a neurological revolution, in which suffering is a mechanistic problem, has troubling and entrapping consequences. And he makes the case that by turning away from an interpretive, meaning-making view of ourselves, we thwart our chances to enrich our souls and learn important truths about ourselves and the social conditions under which we live.
Joe Davis is Research Professor of Sociology at the University of Virginia
Claire Clark is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine. She teaches and writes about health behavior in historical context.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 18 Sep 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>91</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Davis offers a field report on how ordinary people dealing with common problems explain their suffering, how they’re increasingly turning to the thin and mechanistic language of the “body/brain,” and what these encounters might tell us....</itunes:subtitle>
      <itunes:summary>Everyday suffering—those conditions or feelings brought on by trying circumstances that arise in everyone’s lives—is something that humans have grappled with for millennia. But the last decades have seen a drastic change in the way we approach it. In the past, a person going through a time of difficulty might keep a journal or see a therapist, but now the psychological has been replaced by the biological: instead of treating the heart, soul, and mind, we take a pill to treat the brain.
Chemically Imbalanced: Everyday Suffering, Medication, and Our Troubled Quest for Self-Mastery (University of Chicago Press) is a field report on how ordinary people dealing with common problems explain their suffering, how they’re increasingly turning to the thin and mechanistic language of the “body/brain,” and what these encounters might tell us.
Drawing on interviews with people dealing with struggles such as underperformance in school or work, grief after the end of a relationship, or disappointment with how their life is unfolding, Joseph E. Davis reveals the profound revolution in consciousness that is underway. We now see suffering as an imbalance in the brain that needs to be fixed, usually through chemical means. This has rippled into our social and cultural conversations, and it has affected how we, as a society, imagine ourselves and envision what constitutes a good life.
Davis warns that what we envision as a neurological revolution, in which suffering is a mechanistic problem, has troubling and entrapping consequences. And he makes the case that by turning away from an interpretive, meaning-making view of ourselves, we thwart our chances to enrich our souls and learn important truths about ourselves and the social conditions under which we live.
Joe Davis is Research Professor of Sociology at the University of Virginia
Claire Clark is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine. She teaches and writes about health behavior in historical context.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Everyday suffering—those conditions or feelings brought on by trying circumstances that arise in everyone’s lives—is something that humans have grappled with for millennia. But the last decades have seen a drastic change in the way we approach it. In the past, a person going through a time of difficulty might keep a journal or see a therapist, but now the psychological has been replaced by the biological: instead of treating the heart, soul, and mind, we take a pill to treat the brain.</p><p><a href="https://bookshop.org/a/12343/9780226686684"><em>Chemically Imbalanced: Everyday Suffering, Medication, and Our Troubled Quest for Self-Mastery</em></a> (University of Chicago Press) is a field report on how ordinary people dealing with common problems explain their suffering, how they’re increasingly turning to the thin and mechanistic language of the “body/brain,” and what these encounters might tell us.</p><p>Drawing on interviews with people dealing with struggles such as underperformance in school or work, grief after the end of a relationship, or disappointment with how their life is unfolding, Joseph E. Davis reveals the profound revolution in consciousness that is underway. We now see suffering as an imbalance in the brain that needs to be fixed, usually through chemical means. This has rippled into our social and cultural conversations, and it has affected how we, as a society, imagine ourselves and envision what constitutes a good life.</p><p>Davis warns that what we envision as a neurological revolution, in which suffering is a mechanistic problem, has troubling and entrapping consequences. And he makes the case that by turning away from an interpretive, meaning-making view of ourselves, we thwart our chances to enrich our souls and learn important truths about ourselves and the social conditions under which we live.</p><p><a href="https://iasculture.org/scholars/profiles/davis">Joe Davis</a> is Research Professor of Sociology at the University of Virginia</p><p><a href="http://www.clairedclark.com/"><em>Claire Clark</em></a><em> is a medical educator, historian of medicine, and associate professor in the University of Kentucky’s College of Medicine. She teaches and writes about health behavior in historical context.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3367</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN3157954447.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Mel Schwartz, "The Possibility Principle: How Quantum Physics Can Improve the Way You Think, Live, and Love" (Sounds True, 2017)</title>
      <description>How would you like to experience your life? It’s an intriguing question, and yet we’ve been conditioned to believe our life visions and goals are often unattainable—until now. With The Possibility Principle: How Quantum Physics Can Improve the Way You Think, Live, and Love (Sounds True, 2017), psychotherapist Mel Schwartz offers a revolutionary approach to living the life we choose.
Though science has vastly expanded our knowledge, it has also led us to adopt a worldview where we see ourselves as insignificant specks living in a mechanical universe. Now, insights from quantum physics reveal that our universe is, in fact, a vibrantly intelligent reality and that each of us plays a vital role in shaping it. In this groundbreaking book, Schwartz shows us how to integrate this new quantum worldview into our everyday lives, allowing us to transcend our limitations and open to infinite possibilities.
The Possibility Principle reveals how we can apply the three core tenets of quantum physics—inseparability, uncertainty, and potentiality—to live the life we choose, free from the wounds of our past and the constraints of our old beliefs. You can learn to:

Develop a mastery of your thinking as you free yourself from the replication of old thought patterns

Utilize the concept of wave collapse to realize that you are not imprisoned by your genes, brain chemistry, or past traumas

Overcome anxiety and depression through a shift of mind

Thrive in resilient relationships and develop powerful communication skills that foster empowerment and intimate connection

Embrace uncertainty to ride the waves of personal change

Mel Schwartz is a psychotherapist, marriage counselor, author, speaker, and corporate leadership and communications consultant. He practices in Westport, CT and Manhattan and works globally by Skype. He has written two books, The Possibility Principle: How Quantum Physics Can Improve the Way You Think, Live, and Love and The Art of Intimacy, The Pleasure of Passion.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 01 Sep 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>112</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>How would you like to experience your life? It’s an intriguing question, and yet we’ve been conditioned to believe our life visions and goals are often unattainable—until now....</itunes:subtitle>
      <itunes:summary>How would you like to experience your life? It’s an intriguing question, and yet we’ve been conditioned to believe our life visions and goals are often unattainable—until now. With The Possibility Principle: How Quantum Physics Can Improve the Way You Think, Live, and Love (Sounds True, 2017), psychotherapist Mel Schwartz offers a revolutionary approach to living the life we choose.
Though science has vastly expanded our knowledge, it has also led us to adopt a worldview where we see ourselves as insignificant specks living in a mechanical universe. Now, insights from quantum physics reveal that our universe is, in fact, a vibrantly intelligent reality and that each of us plays a vital role in shaping it. In this groundbreaking book, Schwartz shows us how to integrate this new quantum worldview into our everyday lives, allowing us to transcend our limitations and open to infinite possibilities.
The Possibility Principle reveals how we can apply the three core tenets of quantum physics—inseparability, uncertainty, and potentiality—to live the life we choose, free from the wounds of our past and the constraints of our old beliefs. You can learn to:

Develop a mastery of your thinking as you free yourself from the replication of old thought patterns

Utilize the concept of wave collapse to realize that you are not imprisoned by your genes, brain chemistry, or past traumas

Overcome anxiety and depression through a shift of mind

Thrive in resilient relationships and develop powerful communication skills that foster empowerment and intimate connection

Embrace uncertainty to ride the waves of personal change

Mel Schwartz is a psychotherapist, marriage counselor, author, speaker, and corporate leadership and communications consultant. He practices in Westport, CT and Manhattan and works globally by Skype. He has written two books, The Possibility Principle: How Quantum Physics Can Improve the Way You Think, Live, and Love and The Art of Intimacy, The Pleasure of Passion.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>How would you like to experience your life? It’s an intriguing question, and yet we’ve been conditioned to believe our life visions and goals are often unattainable—until now. With <a href="https://bookshop.org/a/12343/9781622038633"><em>The Possibility Principle: How Quantum Physics Can Improve the Way You Think, Live, and Love</em></a><em> </em>(Sounds True, 2017)<em>, </em>psychotherapist Mel Schwartz offers a revolutionary approach to living the life we choose.</p><p>Though science has vastly expanded our knowledge, it has also led us to adopt a worldview where we see ourselves as insignificant specks living in a mechanical universe. Now, insights from quantum physics reveal that our universe is, in fact, a vibrantly intelligent reality and that each of us plays a vital role in shaping it. In this groundbreaking book, Schwartz shows us how to integrate this new quantum worldview into our everyday lives, allowing us to transcend our limitations and open to infinite possibilities.</p><p><em>The Possibility Principle</em> reveals how we can apply the three core tenets of quantum physics—inseparability, uncertainty, and potentiality—to live the life we choose, free from the wounds of our past and the constraints of our old beliefs. You can learn to:</p><ul>
<li>Develop a mastery of your thinking as you free yourself from the replication of old thought patterns</li>
<li>Utilize the concept of wave collapse to realize that you are not imprisoned by your genes, brain chemistry, or past traumas</li>
<li>Overcome anxiety and depression through a shift of mind</li>
<li>Thrive in resilient relationships and develop powerful communication skills that foster empowerment and intimate connection</li>
<li>Embrace uncertainty to ride the waves of personal change</li>
</ul><p><a href="https://melschwartz.com/">Mel Schwartz</a> is a psychotherapist, marriage counselor, author, speaker, and corporate leadership and communications consultant. He practices in Westport, CT and Manhattan and works globally by Skype. He has written two books, <em>The Possibility Principle: How Quantum Physics Can Improve the Way You Think, Live, and Love</em> and <em>The Art of Intimacy, The Pleasure of Passion</em>.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3328</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>Joshua Nall, "News from Mars: Mass Media and the Forging of a New Astronomy, 1860-1910" (U Pittsburgh Press, 2019)</title>
      <description>In the midst of the COVID-19 pandemic, we’re hearing an awful lot about the fraught relationship between science and media. In his book, News from Mars: Mass Media and the Forging of a New Astronomy, 1860-1910 (University of Pittsburgh Press, 2019), historian of science Joshua Nall shows us that a blurry boundary between science and journalism was a key feature—not a bug—of the emergence of modern astronomy.
Focusing on objects and media, such as newspapers, encyclopedias, cigarette cards, and globes, Nall offers a history of how astronomers’ cultivation of a mass public shaped their discipline as it managed controversies over the possibility of canals on Mars, and even interplanetary communication. This book is strongly recommended for historians of science and communication, as well as those with an eye for material culture.
Joshua Nall is curator of modern sciences at the Whipple Museum of the History of Science in the Department of the History and Philosophy of Science at the University of Cambridge.
Mikey McGovern is a PhD candidate in Princeton University’s Program in the History of Science. He is writing a dissertation on how people used statistics to make claims of discrimination in 1970s America, and how the relationship between rights and num- bers became a flashpoint in political struggles over bureaucracy, race, and law.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 06 Aug 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>266</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Nall shows us that a blurry boundary between science and journalism was a key feature—not a bug—of the emergence of modern astronomy....</itunes:subtitle>
      <itunes:summary>In the midst of the COVID-19 pandemic, we’re hearing an awful lot about the fraught relationship between science and media. In his book, News from Mars: Mass Media and the Forging of a New Astronomy, 1860-1910 (University of Pittsburgh Press, 2019), historian of science Joshua Nall shows us that a blurry boundary between science and journalism was a key feature—not a bug—of the emergence of modern astronomy.
Focusing on objects and media, such as newspapers, encyclopedias, cigarette cards, and globes, Nall offers a history of how astronomers’ cultivation of a mass public shaped their discipline as it managed controversies over the possibility of canals on Mars, and even interplanetary communication. This book is strongly recommended for historians of science and communication, as well as those with an eye for material culture.
Joshua Nall is curator of modern sciences at the Whipple Museum of the History of Science in the Department of the History and Philosophy of Science at the University of Cambridge.
Mikey McGovern is a PhD candidate in Princeton University’s Program in the History of Science. He is writing a dissertation on how people used statistics to make claims of discrimination in 1970s America, and how the relationship between rights and num- bers became a flashpoint in political struggles over bureaucracy, race, and law.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In the midst of the COVID-19 pandemic, we’re hearing an awful lot about the fraught relationship between science and media. In his book, <a href="https://www.amazon.com/News-Mars-Astronomy-1860-1910-Nineteenth/dp/0822945525/?tag=newbooinhis-20"><em>News from Mars: Mass Media and the Forging of a New Astronomy, 1860-1910</em></a> (University of Pittsburgh Press, 2019), historian of science Joshua Nall shows us that a blurry boundary between science and journalism was a key feature—not a bug—of the emergence of modern astronomy.</p><p>Focusing on objects and media, such as newspapers, encyclopedias, cigarette cards, and globes, Nall offers a history of how astronomers’ cultivation of a mass public shaped their discipline as it managed controversies over the possibility of canals on Mars, and even interplanetary communication. This book is strongly recommended for historians of science and communication, as well as those with an eye for material culture.</p><p><a href="https://www.people.hps.cam.ac.uk/index/support-staff/nall">Joshua Nall</a> is curator of modern sciences at the Whipple Museum of the History of Science in the Department of the History and Philosophy of Science at the University of Cambridge.</p><p><a href="https://history.princeton.edu/people/michael-mcgovern"><em>Mikey McGovern</em></a><em> is a PhD candidate in Princeton University’s Program in the History of Science. He is writing a dissertation on how people used statistics to make claims of discrimination in 1970s America, and how the relationship between rights and num- bers became a flashpoint in political struggles over bureaucracy, race, and law.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3844</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[a613a9ac-5dcc-11ec-a235-07de999576cc]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6818047802.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>David Kaiser, "Quantum Legacies: Dispatches from an Uncertain World" (U Chicago Press, 2020)</title>
      <description>David Kaiser is a truly unique scholar: he is simultaneously a physics researcher and a historian of science whose writing beautifully melds the past and future of science.
As a historian, he studies mostly 20th-century physics, and in particular the history of quantum mechanics, Feynman diagrams, physics in the counterculture era, and much more. As a physicist, he studies particle physics and theories of cosmology, focused mostly on the early expansion of the universe.
In this New Books Network podcast, I speak to David Kaiser about his new book, Quantum Legacies: Dispatches from an Uncertain World (University of Chicago Press, 2020). It’s a collection of essays, many of them adapted from magazine and newspaper articles he’s penned over the years.
The book paints intimate portraits of some incredible luminaries—Albert Einstein, Richard Feynman, and Paul Dirac, among many others—explains how physics has changed as a discipline in the last century, and demonstrates how science is inseparable from its social context. David Kaiser is an incredible ambassador for physics and its history, and it was a delight to speak with him.
David Kaiser is the Germeshausen Professor of the History of Science and professor of physics at the Massachusetts Institute of Technology.
Matthew Jordan is an instructor at McMaster University, where he teaches courses on AI and the history of science. You can follow him on Twitter @mattyj612 or his website matthewleejordan.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 13 Jul 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>253</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>David Kaiser is a truly unique scholar: he is simultaneously a physics researcher and a historian of science whose writing beautifully melds the past and future of science....</itunes:subtitle>
      <itunes:summary>David Kaiser is a truly unique scholar: he is simultaneously a physics researcher and a historian of science whose writing beautifully melds the past and future of science.
As a historian, he studies mostly 20th-century physics, and in particular the history of quantum mechanics, Feynman diagrams, physics in the counterculture era, and much more. As a physicist, he studies particle physics and theories of cosmology, focused mostly on the early expansion of the universe.
In this New Books Network podcast, I speak to David Kaiser about his new book, Quantum Legacies: Dispatches from an Uncertain World (University of Chicago Press, 2020). It’s a collection of essays, many of them adapted from magazine and newspaper articles he’s penned over the years.
The book paints intimate portraits of some incredible luminaries—Albert Einstein, Richard Feynman, and Paul Dirac, among many others—explains how physics has changed as a discipline in the last century, and demonstrates how science is inseparable from its social context. David Kaiser is an incredible ambassador for physics and its history, and it was a delight to speak with him.
David Kaiser is the Germeshausen Professor of the History of Science and professor of physics at the Massachusetts Institute of Technology.
Matthew Jordan is an instructor at McMaster University, where he teaches courses on AI and the history of science. You can follow him on Twitter @mattyj612 or his website matthewleejordan.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>David Kaiser is a truly unique scholar: he is simultaneously a physics researcher and a historian of science whose writing beautifully melds the past and future of science.</p><p>As a historian, he studies mostly 20th-century physics, and in particular the history of quantum mechanics, Feynman diagrams, physics in the counterculture era, and much more. As a physicist, he studies particle physics and theories of cosmology, focused mostly on the early expansion of the universe.</p><p>In this New Books Network podcast, I speak to David Kaiser about his new book, <a href="https://www.amazon.com/Quantum-Legacies-Dispatches-Uncertain-World/dp/022669805X/?tag=newbooinhis-20"><em>Quantum Legacies: Dispatches from an Uncertain World</em></a><em> </em>(University of Chicago Press, 2020). It’s a collection of essays, many of them adapted from magazine and newspaper articles he’s penned over the years.</p><p>The book paints intimate portraits of some incredible luminaries—Albert Einstein, Richard Feynman, and Paul Dirac, among many others—explains how physics has changed as a discipline in the last century, and demonstrates how science is inseparable from its social context. David Kaiser is an incredible ambassador for physics and its history, and it was a delight to speak with him.</p><p><a href="http://web.mit.edu/dikaiser/www/">David Kaiser</a> is the Germeshausen Professor of the History of Science and professor of physics at the Massachusetts Institute of Technology.</p><p><em>Matthew Jordan is an instructor at McMaster University, where he teaches courses on AI and the history of science. You can follow him on Twitter @mattyj612 or his website </em><a href="http://matthewleejordan.com"><em>matthewleejordan.com</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4901</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    </item>
    <item>
      <title>Matthew Duncombe, "Ancient Relativity: Plato, Aristotle, Stoics and Skeptics" (Oxford UP, 2020)</title>
      <description>As a matter of basic metaphysics, we classify individuals in terms of their relations to other things – for example, a parent is a parent of someone, a larger object is larger than a smaller object. The nature of relativity – the question of how things relate to other things – is a topic that winds its way through the history of philosophy to the present day.
In Ancient Relativity: Plato, Aristotle, Stoics and Skeptics (Oxford University Press, 2020), Matthew Duncombe considers ancient views of relativity from Plato, Aristotle, the Skeptics (particularly Simplicius), and the Stoics (particularly Sextus Empiricus). Duncombe, an assistant professor of philosophy at the University of Nottingham, defends the view that these thinkers shared a common basic position that he calls “constitutive relativity” – the idea that relativity is a matter of the relative being a certain way, rather than having a certain predicate true of it or having a certain feature. He argues that this reading is in the background in a number of arguments in these thinkers, including Parmenides’ main objection to Plato’s Theory of the Forms, and that it comes into its own as a key element of the Skeptics’ opposition to dogmatic belief.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 10 Jun 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>220</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Duncombe considers ancient views of relativity from Plato, Aristotle, the Skeptics (particularly Simplicius), and the Stoics (particularly Sextus Empiricus)...</itunes:subtitle>
      <itunes:summary>As a matter of basic metaphysics, we classify individuals in terms of their relations to other things – for example, a parent is a parent of someone, a larger object is larger than a smaller object. The nature of relativity – the question of how things relate to other things – is a topic that winds its way through the history of philosophy to the present day.
In Ancient Relativity: Plato, Aristotle, Stoics and Skeptics (Oxford University Press, 2020), Matthew Duncombe considers ancient views of relativity from Plato, Aristotle, the Skeptics (particularly Simplicius), and the Stoics (particularly Sextus Empiricus). Duncombe, an assistant professor of philosophy at the University of Nottingham, defends the view that these thinkers shared a common basic position that he calls “constitutive relativity” – the idea that relativity is a matter of the relative being a certain way, rather than having a certain predicate true of it or having a certain feature. He argues that this reading is in the background in a number of arguments in these thinkers, including Parmenides’ main objection to Plato’s Theory of the Forms, and that it comes into its own as a key element of the Skeptics’ opposition to dogmatic belief.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>As a matter of basic metaphysics, we classify individuals in terms of their relations to other things – for example, a parent is a parent of someone, a larger object is larger than a smaller object. The nature of relativity – the question of how things relate to other things – is a topic that winds its way through the history of philosophy to the present day.</p><p>In <a href="https://www.amazon.com/dp/0198846185/?tag=newbooinhis-20"><em>Ancient Relativity: Plato, Aristotle, Stoics and Skeptics</em></a> (Oxford University Press, 2020), <a href="https://www.nottingham.ac.uk/humanities/departments/philosophy/people/matthew.duncombe">Matthew Duncombe</a> considers ancient views of relativity from Plato, Aristotle, the Skeptics (particularly Simplicius), and the Stoics (particularly Sextus Empiricus). Duncombe, an assistant professor of philosophy at the University of Nottingham, defends the view that these thinkers shared a common basic position that he calls “constitutive relativity” – the idea that relativity is a matter of the relative being a certain way, rather than having a certain predicate true of it or having a certain feature. He argues that this reading is in the background in a number of arguments in these thinkers, including Parmenides’ main objection to Plato’s Theory of the Forms, and that it comes into its own as a key element of the Skeptics’ opposition to dogmatic belief.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3740</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[127ae9ba-5db5-11ec-92a1-e73851ac25b2]]></guid>
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      <title>Brian Greene, "Until the End of Time: Mind, Matter, and Our Search for Meaning in an Evolving Universe" (Random House, 2020)</title>
      <description>Brian Greene is a Professor of Mathematics and Physics at Columbia University in the City of New York, where he is the Director of the Institute for Strings, Cosmology, and Astroparticle Physics, and co-founder and chair of the World Science Festival. He is well known for his TV mini-series about string theory and the nature of reality, including the Elegant Universe, which tied in with his best-selling 2000 book of the same name. In this episode, we talk about his latest popular book Until the End of Time: Mind, Matter, and Our Search for Meaning in an Evolving Universe (Random House, 2020)
Until the End of Time gives the reader a theory of everything, both in the sense of a “state of the academic union”, covering cosmology and evolution, consciousness and computation, and art and religion, and in the sense of showing us a way to apprehend the often existentially challenging subject matter. Greene uses evocative autobiographical vignettes in the book to personalize his famously lucid and accessible explanations, and we discuss these episodes further in the interview. Greene also reiterates his arguments for embedding a form of spiritual reverie within the multiple naturalistic descriptions of reality that different areas of human knowledge have so far produced.
John Weston is a University Teacher of English in the Language Centre at Aalto University, Finland. His research focuses on academic communication. He can be reached at john.weston@aalto.fi and @johnwphd.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 02 Jun 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>20</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Greene offers the the reader a theory of everything...</itunes:subtitle>
      <itunes:summary>Brian Greene is a Professor of Mathematics and Physics at Columbia University in the City of New York, where he is the Director of the Institute for Strings, Cosmology, and Astroparticle Physics, and co-founder and chair of the World Science Festival. He is well known for his TV mini-series about string theory and the nature of reality, including the Elegant Universe, which tied in with his best-selling 2000 book of the same name. In this episode, we talk about his latest popular book Until the End of Time: Mind, Matter, and Our Search for Meaning in an Evolving Universe (Random House, 2020)
Until the End of Time gives the reader a theory of everything, both in the sense of a “state of the academic union”, covering cosmology and evolution, consciousness and computation, and art and religion, and in the sense of showing us a way to apprehend the often existentially challenging subject matter. Greene uses evocative autobiographical vignettes in the book to personalize his famously lucid and accessible explanations, and we discuss these episodes further in the interview. Greene also reiterates his arguments for embedding a form of spiritual reverie within the multiple naturalistic descriptions of reality that different areas of human knowledge have so far produced.
John Weston is a University Teacher of English in the Language Centre at Aalto University, Finland. His research focuses on academic communication. He can be reached at john.weston@aalto.fi and @johnwphd.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://www.briangreene.org/">Brian Greene</a> is a Professor of Mathematics and Physics at Columbia University in the City of New York, where he is the Director of the Institute for Strings, Cosmology, and Astroparticle Physics, and co-founder and chair of the <a href="https://www.worldsciencefestival.com/">World Science Festival</a>. He is well known for his TV mini-series about string theory and the nature of reality, including the Elegant Universe, which tied in with his best-selling 2000 book of the same name. In this episode, we talk about his latest popular book <a href="https://www.amazon.com/dp/0593171721/?tag=newbooinhis-20"><em>Until the End of Time: Mind, Matter, and Our Search for Meaning in an Evolving Universe</em></a> (Random House, 2020)</p><p><em>Until the End of Time</em> gives the reader a theory of everything, both in the sense of a “state of the academic union”, covering cosmology and evolution, consciousness and computation, and art and religion, and in the sense of showing us a way to apprehend the often existentially challenging subject matter. Greene uses evocative autobiographical vignettes in the book to personalize his famously lucid and accessible explanations, and we discuss these episodes further in the interview. Greene also reiterates his arguments for embedding a form of spiritual reverie within the multiple naturalistic descriptions of reality that different areas of human knowledge have so far produced.</p><p><a href="https://www.aalto.fi/en/people/john-weston"><em>John Weston</em></a><em> is a University Teacher of English in the Language Centre at Aalto University, Finland. His research focuses on academic communication. He can be reached at </em><a href="mailto:john.weston@aalto.fi"><em>john.weston@aalto.fi</em></a><em> and </em><a href="https://twitter.com/johnwphd"><em>@johnwphd</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>7237</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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    <item>
      <title>B. Earp and J. Savulescu, "Love Drugs: The Chemical Future of Relationships" (Stanford UP, 2020) )</title>
      <description>Consider a couple with an infant (or two) whose lives have become so harried and difficult the marriage is falling apart. Would it be ethical for them to take oxytocin to help them renew their emotional bonds, or would this be an unethical evasion of the hard work that keeping a marriage going requires? What if someone has sexual desires that they consider immoral – should they be able to take a drug to suppress those desires, or alternatively can society force them to? Debates about the ethics of using drugs for enhancement rather than treatment usually focus on the individual, such as doping in sports.
In Love Drugs: The Chemical Future of Relationships (Stanford University Press, 2020), Brian Earp and Julian Savulescu consider the case for using drugs to alter our love relationships. Earp, who is Associate Director of the Yale-Hastings Program in Ethics and and Health Policy at Yale University, and Savulescu, the Uehiro Chair in Practical Ethics at the University of Oxford, note that drugs that alter sexual desire and attachment are already available, although are restricted or illegal. What is needed, they argue, is more research into the interpersonal effects of drugs, and more discussion of the ethics of their use for non-medical purposes. Let’s turn to a fascinating interview on a complex topic with no easy answers.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 11 May 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>218</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The authors consider the case for using drugs to alter our love relationships...</itunes:subtitle>
      <itunes:summary>Consider a couple with an infant (or two) whose lives have become so harried and difficult the marriage is falling apart. Would it be ethical for them to take oxytocin to help them renew their emotional bonds, or would this be an unethical evasion of the hard work that keeping a marriage going requires? What if someone has sexual desires that they consider immoral – should they be able to take a drug to suppress those desires, or alternatively can society force them to? Debates about the ethics of using drugs for enhancement rather than treatment usually focus on the individual, such as doping in sports.
In Love Drugs: The Chemical Future of Relationships (Stanford University Press, 2020), Brian Earp and Julian Savulescu consider the case for using drugs to alter our love relationships. Earp, who is Associate Director of the Yale-Hastings Program in Ethics and and Health Policy at Yale University, and Savulescu, the Uehiro Chair in Practical Ethics at the University of Oxford, note that drugs that alter sexual desire and attachment are already available, although are restricted or illegal. What is needed, they argue, is more research into the interpersonal effects of drugs, and more discussion of the ethics of their use for non-medical purposes. Let’s turn to a fascinating interview on a complex topic with no easy answers.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Consider a couple with an infant (or two) whose lives have become so harried and difficult the marriage is falling apart. Would it be ethical for them to take oxytocin to help them renew their emotional bonds, or would this be an unethical evasion of the hard work that keeping a marriage going requires? What if someone has sexual desires that they consider immoral – should they be able to take a drug to suppress those desires, or alternatively can society force them to? Debates about the ethics of using drugs for enhancement rather than treatment usually focus on the individual, such as doping in sports.</p><p>In <a href="https://www.amazon.com/dp/0804798192/?tag=newbooinhis-20"><em>Love Drugs: The Chemical Future of Relationships</em></a> (Stanford University Press, 2020), <a href="https://philosophy.yale.edu/people/brian-earp">Brian Earp</a> and Julian Savulescu consider the case for using drugs to alter our love relationships. Earp, who is Associate Director of the Yale-Hastings Program in Ethics and and Health Policy at Yale University, and Savulescu, the Uehiro Chair in Practical Ethics at the University of Oxford, note that drugs that alter sexual desire and attachment are already available, although are restricted or illegal. What is needed, they argue, is more research into the interpersonal effects of drugs, and more discussion of the ethics of their use for non-medical purposes. Let’s turn to a fascinating interview on a complex topic with no easy answers.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4302</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN7658796215.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Paul Nahin, "Hot Molecules, Cold Electrons" (Princeton UP, 2020)</title>
      <description>Hot Molecules, Cold Electrons: From the Mathematics of Heat to the Development of the Trans-Atlantic Telegraph Cable (Princeton University Press, 2020), by Paul Nahin, is a book that is meant for someone who is comfortable with calculus, but for those readers who are, it is a treat. It is a thorough study of the history and mathematics of the heat equation, which is not only important as an analysis of heat, its analysis marked the beginning of Fourier series. It came as a surprise to me that the heat equation was also instrumental in analyzing the problem of laying the transatlantic cable that was one of the great engineering feats of the nineteenth century. Although it isn’t necessary to work through the math to appreciate this book, I think that students studying this material would not only find Paul’s treatments easy to follow, but would benefit greatly by learning something of the history that surrounds the development of the analysis and applications of the heat equation.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 03 Apr 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>47</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Nahin offers a thorough study of the history and mathematics of the heat equation, which is not only important as an analysis of heat, its analysis marked the beginning of Fourier series...</itunes:subtitle>
      <itunes:summary>Hot Molecules, Cold Electrons: From the Mathematics of Heat to the Development of the Trans-Atlantic Telegraph Cable (Princeton University Press, 2020), by Paul Nahin, is a book that is meant for someone who is comfortable with calculus, but for those readers who are, it is a treat. It is a thorough study of the history and mathematics of the heat equation, which is not only important as an analysis of heat, its analysis marked the beginning of Fourier series. It came as a surprise to me that the heat equation was also instrumental in analyzing the problem of laying the transatlantic cable that was one of the great engineering feats of the nineteenth century. Although it isn’t necessary to work through the math to appreciate this book, I think that students studying this material would not only find Paul’s treatments easy to follow, but would benefit greatly by learning something of the history that surrounds the development of the analysis and applications of the heat equation.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://www.amazon.com/dp/0691191727/?tag=newbooinhis-20"><em>Hot Molecules, Cold Electrons: From the Mathematics of Heat to the Development of the Trans-Atlantic Telegraph Cable</em></a> (Princeton University Press, 2020), by <a href="https://en.wikipedia.org/wiki/Paul_J._Nahin">Paul Nahin</a>, is a book that is meant for someone who is comfortable with calculus, but for those readers who are, it is a treat. It is a thorough study of the history and mathematics of the heat equation, which is not only important as an analysis of heat, its analysis marked the beginning of Fourier series. It came as a surprise to me that the heat equation was also instrumental in analyzing the problem of laying the transatlantic cable that was one of the great engineering feats of the nineteenth century. Although it isn’t necessary to work through the math to appreciate this book, I think that students studying this material would not only find Paul’s treatments easy to follow, but would benefit greatly by learning something of the history that surrounds the development of the analysis and applications of the heat equation.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3122</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN4032421337.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Matt Cook, "Sleight of Mind: 75 Ingenious Paradoxes in Mathematics, Physics, and Philosophy" (MIT Press, 2020)</title>
      <description>Paradox is a sophisticated kind of magic trick. A magician's purpose is to create the appearance of impossibility, to pull a rabbit from an empty hat. Yet paradox doesn't require tangibles, like rabbits or hats. Paradox works in the abstract, with words and concepts and symbols, to create the illusion of contradiction. There are no contradictions in reality, but there can appear to be. In Sleight of Mind: 75 Ingenious Paradoxes in Mathematics, Physics, and Philosophy (MIT Press, 2020), Matt Cook and a few collaborators dive deeply into more than 75 paradoxes in mathematics, physics, philosophy, and the social sciences. As each paradox is discussed and resolved, Cook helps readers discover the meaning of knowledge and the proper formation of concepts―and how reason can dispel the illusion of contradiction.
The journey begins with “a most ingenious paradox” from Gilbert and Sullivan's Pirates of Penzance. Readers will then travel from Ancient Greece to cutting-edge laboratories, encounter infinity and its different sizes, and discover mathematical impossibilities inherent in elections. They will tackle conundrums in probability, induction, geometry, and game theory; perform “supertasks”; build apparent perpetual motion machines; meet twins living in different millennia; explore the strange quantum world―and much more.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 30 Mar 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>46</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>According to Cook, a paradox paradox is a sophisticated kind of magic trick...</itunes:subtitle>
      <itunes:summary>Paradox is a sophisticated kind of magic trick. A magician's purpose is to create the appearance of impossibility, to pull a rabbit from an empty hat. Yet paradox doesn't require tangibles, like rabbits or hats. Paradox works in the abstract, with words and concepts and symbols, to create the illusion of contradiction. There are no contradictions in reality, but there can appear to be. In Sleight of Mind: 75 Ingenious Paradoxes in Mathematics, Physics, and Philosophy (MIT Press, 2020), Matt Cook and a few collaborators dive deeply into more than 75 paradoxes in mathematics, physics, philosophy, and the social sciences. As each paradox is discussed and resolved, Cook helps readers discover the meaning of knowledge and the proper formation of concepts―and how reason can dispel the illusion of contradiction.
The journey begins with “a most ingenious paradox” from Gilbert and Sullivan's Pirates of Penzance. Readers will then travel from Ancient Greece to cutting-edge laboratories, encounter infinity and its different sizes, and discover mathematical impossibilities inherent in elections. They will tackle conundrums in probability, induction, geometry, and game theory; perform “supertasks”; build apparent perpetual motion machines; meet twins living in different millennia; explore the strange quantum world―and much more.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Paradox is a sophisticated kind of magic trick. A magician's purpose is to create the appearance of impossibility, to pull a rabbit from an empty hat. Yet paradox doesn't require tangibles, like rabbits or hats. Paradox works in the abstract, with words and concepts and symbols, to create the illusion of contradiction. There are no contradictions in reality, but there can appear to be. In <a href="https://www.amazon.com/dp/0262043467/?tag=newbooinhis-20"><em>Sleight of Mind: 75 Ingenious Paradoxes in Mathematics, Physics, and Philosophy</em></a> (MIT Press, 2020), <a href="https://www.linkedin.com/in/matt-cook-349811132/">Matt Cook</a> and a few collaborators dive deeply into more than 75 paradoxes in mathematics, physics, philosophy, and the social sciences. As each paradox is discussed and resolved, Cook helps readers discover the meaning of knowledge and the proper formation of concepts―and how reason can dispel the illusion of contradiction.</p><p>The journey begins with “a most ingenious paradox” from Gilbert and Sullivan's <em>Pirates of Penzance. </em>Readers will then travel from Ancient Greece to cutting-edge laboratories, encounter infinity and its different sizes, and discover mathematical impossibilities inherent in elections. They will tackle conundrums in probability, induction, geometry, and game theory; perform “supertasks”; build apparent perpetual motion machines; meet twins living in different millennia; explore the strange quantum world―and much more.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3094</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <title>Maurice Finocchiaro, "On Trial for Reason: Science, Religion, and Culture in the Galileo Affair" (Oxford UP, 2019)</title>
      <description>In his new book On Trial for Reason: Science, Religion, and Culture in the Galileo Affair (Oxford University Press, 2019), Maurice Finocchiaro shows that there were (and are) really two Galileo “affairs.” Galileo’s original trial and condemnation forms the first affair, the cultural history of controversies about the meaning of the original trial, forms the second. With scrupulous attention to evidence and the argumentation employed by various participants, Dr. Finocchiaro’s book is at once an accessible primer on a key event in the 16th- and 17th-century Scientific Revolution, and a thought provoking look at how the subsequent controversies resonate down to the present day.
Aaron Weinacht is Professor of History at the University of Montana Western, in Dillon, MT. He teaches courses on Russian and Soviet History, World History, and Philosophy of History. His research interests include the sociological theorist Philip Rieff and the influence of Russian nihilism on American libertarianism.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 26 Mar 2020 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>712</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Finocchiaro shows that there were (and are) really two Galileo “affairs.”</itunes:subtitle>
      <itunes:summary>In his new book On Trial for Reason: Science, Religion, and Culture in the Galileo Affair (Oxford University Press, 2019), Maurice Finocchiaro shows that there were (and are) really two Galileo “affairs.” Galileo’s original trial and condemnation forms the first affair, the cultural history of controversies about the meaning of the original trial, forms the second. With scrupulous attention to evidence and the argumentation employed by various participants, Dr. Finocchiaro’s book is at once an accessible primer on a key event in the 16th- and 17th-century Scientific Revolution, and a thought provoking look at how the subsequent controversies resonate down to the present day.
Aaron Weinacht is Professor of History at the University of Montana Western, in Dillon, MT. He teaches courses on Russian and Soviet History, World History, and Philosophy of History. His research interests include the sociological theorist Philip Rieff and the influence of Russian nihilism on American libertarianism.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In his new book <em>On Trial for Reason: Science, Religion, and Culture in the Galileo Affair</em> (Oxford University Press, 2019), <a href="https://www.unlv.edu/people/maurice-finocchiaro">Maurice Finocchiaro</a> shows that there were (and are) really two Galileo “affairs.” Galileo’s original trial and condemnation forms the first affair, the cultural history of controversies about the meaning of the original trial, forms the second. With scrupulous attention to evidence and the argumentation employed by various participants, Dr. Finocchiaro’s book is at once an accessible primer on a key event in the 16th- and 17th-century Scientific Revolution, and a thought provoking look at how the subsequent controversies resonate down to the present day.</p><p><em>Aaron Weinacht is Professor of History at the University of Montana Western, in Dillon, MT. He teaches courses on Russian and Soviet History, World History, and Philosophy of History. His research interests include the sociological theorist Philip Rieff and the influence of Russian nihilism on American libertarianism.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3850</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[4db2efa8-5db2-11ec-a87a-dbd3144883c0]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN7776215998.mp3" length="0" type="audio/mpeg"/>
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      <title>Ellen Griffith Spears, "Baptized in PCBs: Race, Pollution, and Justice in an All-American Town" (UNC Press, 2016)</title>
      <description>Professor Ellen Griffith Spears of the University of Alabama, author of Baptized in PCBs: Race, Pollution, and Justice in an All-American Town (University of North Carolina Press, 2016) discusses the decades long struggle for environmental and civil rights justice in Anniston, Alabama, and broader lessons to be learned from this fight to address one community's exposure to toxic chemicals.
In the mid-1990s, residents of Anniston, Alabama, began a legal fight against the agrochemical company Monsanto over the dumping of PCBs in the city's historically African American and white working-class west side. Simultaneously, Anniston environmentalists sought to safely eliminate chemical weaponry that had been secretly stockpiled near the city during the Cold War. In this probing work, Ellen Griffith Spears offers a compelling narrative of Anniston's battles for environmental justice, exposing how systemic racial and class inequalities reinforced during the Jim Crow era played out in these intense contemporary social movements.
Spears focuses attention on key figures who shaped Anniston--from Monsanto's founders, to white and African American activists, to the ordinary Anniston residents whose lives and health were deeply affected by the town's military-industrial history and the legacy of racism. Situating the personal struggles and triumphs of Anniston residents within a larger national story of regulatory regimes and legal strategies that have affected toxic towns across America, Spears unflinchingly explores the causes and implications of environmental inequalities, showing how civil rights movement activism undergirded Anniston's campaigns for redemption and justice.
Beth A. English is director of the Liechtenstein Institute's Project on Gender in the Global Community at Princeton University. She also is a past president of the Southern Labor History Association.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 28 Feb 2020 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>22</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Griffen Spears discusses the decades long struggle for environmental and civil rights justice in Anniston, Alabama...</itunes:subtitle>
      <itunes:summary>Professor Ellen Griffith Spears of the University of Alabama, author of Baptized in PCBs: Race, Pollution, and Justice in an All-American Town (University of North Carolina Press, 2016) discusses the decades long struggle for environmental and civil rights justice in Anniston, Alabama, and broader lessons to be learned from this fight to address one community's exposure to toxic chemicals.
In the mid-1990s, residents of Anniston, Alabama, began a legal fight against the agrochemical company Monsanto over the dumping of PCBs in the city's historically African American and white working-class west side. Simultaneously, Anniston environmentalists sought to safely eliminate chemical weaponry that had been secretly stockpiled near the city during the Cold War. In this probing work, Ellen Griffith Spears offers a compelling narrative of Anniston's battles for environmental justice, exposing how systemic racial and class inequalities reinforced during the Jim Crow era played out in these intense contemporary social movements.
Spears focuses attention on key figures who shaped Anniston--from Monsanto's founders, to white and African American activists, to the ordinary Anniston residents whose lives and health were deeply affected by the town's military-industrial history and the legacy of racism. Situating the personal struggles and triumphs of Anniston residents within a larger national story of regulatory regimes and legal strategies that have affected toxic towns across America, Spears unflinchingly explores the causes and implications of environmental inequalities, showing how civil rights movement activism undergirded Anniston's campaigns for redemption and justice.
Beth A. English is director of the Liechtenstein Institute's Project on Gender in the Global Community at Princeton University. She also is a past president of the Southern Labor History Association.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Professor <a href="https://nc.as.ua.edu/profiles/ellen-spears/">Ellen Griffith Spears</a> of the University of Alabama, author of <a href="http://www.amazon.com/dp/1469627299/?tag=newbooinhis-20"><em>Baptized in PCBs: Race, Pollution, and Justice in an All-American Town</em></a> (University of North Carolina Press, 2016) discusses the decades long struggle for environmental and civil rights justice in Anniston, Alabama, and broader lessons to be learned from this fight to address one community's exposure to toxic chemicals.</p><p>In the mid-1990s, residents of Anniston, Alabama, began a legal fight against the agrochemical company Monsanto over the dumping of PCBs in the city's historically African American and white working-class west side. Simultaneously, Anniston environmentalists sought to safely eliminate chemical weaponry that had been secretly stockpiled near the city during the Cold War. In this probing work, Ellen Griffith Spears offers a compelling narrative of Anniston's battles for environmental justice, exposing how systemic racial and class inequalities reinforced during the Jim Crow era played out in these intense contemporary social movements.</p><p>Spears focuses attention on key figures who shaped Anniston--from Monsanto's founders, to white and African American activists, to the ordinary Anniston residents whose lives and health were deeply affected by the town's military-industrial history and the legacy of racism. Situating the personal struggles and triumphs of Anniston residents within a larger national story of regulatory regimes and legal strategies that have affected toxic towns across America, Spears unflinchingly explores the causes and implications of environmental inequalities, showing how civil rights movement activism undergirded Anniston's campaigns for redemption and justice.</p><p><a href="https://wws.princeton.edu/faculty-research/faculty/baenglis"><em>Beth A. English</em></a><em> is director of the Liechtenstein Institute's Project on Gender in the Global Community at Princeton University. She also is a past president of the </em><a href="https://southernlaborstudies.org/"><em>Southern Labor History Association</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1959</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[521ef060-5db1-11ec-8d39-9b2ead8d867d]]></guid>
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      <title>Daniel Kennefick, "No Shadow of Doubt: The 1919 Eclipse that Confirmed Einstein’s Theory of Relativity" (Princeton UP, 2019)</title>
      <description>Daniel Kennefick talks about resistance to relativity theory in the early twentieth century and the huge challenges that faced British astronomers who wanted to test the theory during the solar eclipse of 1919. Kennefick is an associate professor of physics at the University of Arkansas, Fayetteville. He’s the author of No Shadow of Doubt: The 1919 Eclipse that Confirmed Einstein’s Theory of Relativity (Princeton University Press, 2019).
Michael F. Robinson is professor of history at Hillyer College, University of Hartford. He's the author of The Coldest Crucible: Arctic Exploration and American Culture (University of Chicago Press, 2006) and The Lost White Tribe: Scientists, Explorers, and the Theory that Changed a Continent (Oxford University Press, 2016). He's also the host of the podcast Time to Eat the Dogs, a weekly podcast about science, history, and exploration.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 17 Jan 2020 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>209</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Daniel Kennefick talks about resistance to relativity theory in the early twentieth century and the huge challenges that faced British astronomers who wanted to test the theory during the solar eclipse of 1919...</itunes:subtitle>
      <itunes:summary>Daniel Kennefick talks about resistance to relativity theory in the early twentieth century and the huge challenges that faced British astronomers who wanted to test the theory during the solar eclipse of 1919. Kennefick is an associate professor of physics at the University of Arkansas, Fayetteville. He’s the author of No Shadow of Doubt: The 1919 Eclipse that Confirmed Einstein’s Theory of Relativity (Princeton University Press, 2019).
Michael F. Robinson is professor of history at Hillyer College, University of Hartford. He's the author of The Coldest Crucible: Arctic Exploration and American Culture (University of Chicago Press, 2006) and The Lost White Tribe: Scientists, Explorers, and the Theory that Changed a Continent (Oxford University Press, 2016). He's also the host of the podcast Time to Eat the Dogs, a weekly podcast about science, history, and exploration.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="https://fulbright.uark.edu/departments/physics/directory/index/uid/danielk/name/Daniel-Kennefick/">Daniel Kennefick</a> talks about resistance to relativity theory in the early twentieth century and the huge challenges that faced British astronomers who wanted to test the theory during the solar eclipse of 1919. Kennefick is an associate professor of physics at the University of Arkansas, Fayetteville. He’s the author of <a href="http://www.amazon.com/dp/0691183864/?tag=newbooinhis-20"><em>No Shadow of Doubt: The 1919 Eclipse that Confirmed Einstein’s Theory of Relativity</em></a> (Princeton University Press, 2019).</p><p><a href="http://www.hartford.edu/hillyer/about-us/meet-our-faculty-and-staff/department-of-humanities/06-michael-robinson.aspx"><em>Michael F. Robinson</em></a><em> is professor of history at Hillyer College, University of Hartford. He's the author of </em>The Coldest Crucible: Arctic Exploration and American Culture<em> (University of Chicago Press, 2006) and </em>The Lost White Tribe: Scientists, Explorers, and the Theory that Changed a Continent<em> (Oxford University Press, 2016). He's also the host of the podcast </em><a href="https://timetoeatthedogs.com/"><em>Time to Eat the Dogs</em></a><em>, a weekly podcast about science, history, and exploration.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2354</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[5eeb42c4-5dcc-11ec-b0af-2725654de39a]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4540335353.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Sarah Marie Wiebe, "Everyday Exposure: Indigenous Mobilization and Environmental Justice in Canada’s Chemical Valley" (UBC Press, 2016)</title>
      <description>In a foreword to Everyday Exposure: Indigenous Mobilization and Environmental Justice in Canada’s Chemical Valley (University of British Columbia Press, 2016), the public philosopher James Tully writes that, “Every once in a while, an outstanding work of scholarship comes along that transforms the way a seemingly intractable injustice is seen and, in so doing, also transforms the way it should be approached and addressed by all concerned.” In this second episode in our new series, New Books in Interpretive Political and Social Science, we hear from the book’s author, Sarah Marie Wiebe, about what that intractable injustice is, and why hers is one such work of scholarship, which won the 2017 Charles Taylor Book Award. Along the way she discusses environmental reproductive justice, political ethnography, her method of “sensing policy”, and her new book project, Life against a State of Emergency: Interrupting the Gendered Biopolitics of Settler-Colonialism, about which you can read and view more on the University of Minnesota manifold website.
Sarah also talks about the remarkable photographic essays in the book, which are the work of her friend and collaborator, Laurence Butet-Roch, who has kindly provided a number of them for New Books network listeners to view online, here, here and here.
Listeners interested in the series should also check out the first episode, with Dvora Yanow and Peregrine Schwartz-Shea, on their Interpretive Research Design. 
Nick Cheesman is a fellow in the Department of Political and Social Change, Australian National University, and currently a project researcher at Ritsumeikan University, Kyoto. He co-hosts the New Books in Southeast Asian Studies channel.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 29 Nov 2019 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Wiebe discusses environmental reproductive justice, political ethnography, her method of “sensing policy”...</itunes:subtitle>
      <itunes:summary>In a foreword to Everyday Exposure: Indigenous Mobilization and Environmental Justice in Canada’s Chemical Valley (University of British Columbia Press, 2016), the public philosopher James Tully writes that, “Every once in a while, an outstanding work of scholarship comes along that transforms the way a seemingly intractable injustice is seen and, in so doing, also transforms the way it should be approached and addressed by all concerned.” In this second episode in our new series, New Books in Interpretive Political and Social Science, we hear from the book’s author, Sarah Marie Wiebe, about what that intractable injustice is, and why hers is one such work of scholarship, which won the 2017 Charles Taylor Book Award. Along the way she discusses environmental reproductive justice, political ethnography, her method of “sensing policy”, and her new book project, Life against a State of Emergency: Interrupting the Gendered Biopolitics of Settler-Colonialism, about which you can read and view more on the University of Minnesota manifold website.
Sarah also talks about the remarkable photographic essays in the book, which are the work of her friend and collaborator, Laurence Butet-Roch, who has kindly provided a number of them for New Books network listeners to view online, here, here and here.
Listeners interested in the series should also check out the first episode, with Dvora Yanow and Peregrine Schwartz-Shea, on their Interpretive Research Design. 
Nick Cheesman is a fellow in the Department of Political and Social Change, Australian National University, and currently a project researcher at Ritsumeikan University, Kyoto. He co-hosts the New Books in Southeast Asian Studies channel.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In a foreword to <a href="https://www.amazon.com/Everyday-Exposure-Indigenous-Mobilization-Environmental/dp/0774832649"><em>Everyday Exposure: Indigenous Mobilization and Environmental Justice in Canada’s Chemical Valley</em></a> (University of British Columbia Press, 2016), the public philosopher James Tully writes that, “Every once in a while, an outstanding work of scholarship comes along that transforms the way a seemingly intractable injustice is seen and, in so doing, also transforms the way it should be approached and addressed by all concerned.” In this second episode in our new series, <a href="https://newbooksnetwork.com/?s=%22interpretive+political+social+science%22">New Books in Interpretive Political and Social Science</a>, we hear from the book’s author, <a href="http://www.politicalscience.hawaii.edu/faculty/wiebe.html">Sarah Marie Wiebe</a>, about what that intractable injustice is, and why hers is one such work of scholarship, which won the 2017 Charles Taylor Book Award. Along the way she discusses environmental reproductive justice, political ethnography, her method of “sensing policy”, and her new book project, <em>Life against a State of Emergency: Interrupting the Gendered Biopolitics of Settler-Colonialism</em>, about which you can read and view more on the <a href="https://manifold.umn.edu/projects/life-against-a-state-of-emergency">University of Minnesota manifold website</a>.</p><p>Sarah also talks about the remarkable photographic essays in the book, which are the work of her friend and collaborator, <a href="https://www.lbrphoto.ca/">Laurence Butet-Roch</a>, who has kindly provided a number of them for New Books network listeners to view online, here, here and here.</p><p>Listeners interested in the series should also check out the <a href="https://newbooksnetwork.com/peregrine-schwartz-shea-and-dvora-yanow-interpretive-research-design-concepts-and-processes-routledge-2012/">first episode</a>, with Dvora Yanow and Peregrine Schwartz-Shea, on their <em>Interpretive Research Design. </em></p><p><a href="https://researchers.anu.edu.au/researchers/cheesman-nw"><em>Nick Cheesman</em></a><em> is a fellow in the Department of Political and Social Change, Australian National University, and currently a project researcher at Ritsumeikan University, Kyoto. He co-hosts the </em><a href="https://newbooksnetwork.com/category/southeast-asian-studies/"><em>New Books in Southeast Asian Studies</em></a><em> channel.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2685</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN2085144981.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>John Gribbin, "Six Impossible Things: The ‘Quanta of Solace’ and the Mysteries of the Subatomic World" (Icon Books, 2019)</title>
      <description>Today's podcast is on the book Six Impossible Things: The ‘Quanta of Solace’ and the Mysteries of the Subatomic World (Icon Book, 2019) by the noted author John Gribbin. Although there have been a number of good books on quantum mechanics, this short book is my favorite, and I recommend it highly.  The book details the central mystery of quantum mechanics, and outlines several interpretations that have been proposed.  I’ve never seen these interpretations so clearly and succinctly stated, and I’d recommend it to anyone who wants to understand how physicists have tried to come to grips with one of the Universe’s most perplexing mysteries.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 05 Nov 2019 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>17</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Gribbin details the central mystery of quantum mechanics, and outlines several interpretations that have been proposed...</itunes:subtitle>
      <itunes:summary>Today's podcast is on the book Six Impossible Things: The ‘Quanta of Solace’ and the Mysteries of the Subatomic World (Icon Book, 2019) by the noted author John Gribbin. Although there have been a number of good books on quantum mechanics, this short book is my favorite, and I recommend it highly.  The book details the central mystery of quantum mechanics, and outlines several interpretations that have been proposed.  I’ve never seen these interpretations so clearly and succinctly stated, and I’d recommend it to anyone who wants to understand how physicists have tried to come to grips with one of the Universe’s most perplexing mysteries.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Today's podcast is on the book <a href="http://www.amazon.com/dp/1785784994/?tag=newbooinhis-20"><em>Six Impossible Things: The ‘Quanta of Solace’ and the Mysteries of the Subatomic World</em></a><em> </em>(Icon Book, 2019) by the noted author <a href="https://en.wikipedia.org/wiki/John_Gribbin">John Gribbin</a>. Although there have been a number of good books on quantum mechanics, this short book is my favorite, and I recommend it highly.  The book details the central mystery of quantum mechanics, and outlines several interpretations that have been proposed.  I’ve never seen these interpretations so clearly and succinctly stated, and I’d recommend it to anyone who wants to understand how physicists have tried to come to grips with one of the Universe’s most perplexing mysteries.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3296</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[4ebc427e-5db6-11ec-b1e8-8326fffe4f6b]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3463163750.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Cara New Daggett, "Birth of Energy: Fossil Fuels, Thermodynamics, and the Politics of Work" (Duke UP, 2019)</title>
      <description>In Birth of Energy: Fossil Fuels, Thermodynamics, and the Politics of Work (Duke UP, 2019), Cara New Daggett suggests that reassessing our relationships with fossil fuels in the face of climate change also requires that we rethink the concept of energy itself. Although a seemingly self-evident and natural scientific object, the idea of energy that informed the development of fossil fueled capitalism is a surprisingly modern invention. In the 19th century, as tinkerers sought to explain mystical steam power, they rehashed this ancient word to conceptualize limitless potential and ceaseless expansion. Daggett demonstrates that not only did this new abstraction explain and empower novel technologies and fields of physics, but also became an ideological fulcrum with which to describe and proscribe the emerging societies of industrial capitalism. The harnessing of energy and maximizing its efficiency became not only the principles of mechanical engineering, but also of workplace organization and worker discipline. At home, energy served as a measure of virtue, self-control, and good citizenship; and abroad agents of empire used it to inculcate colonized peoples with those values and habits of supposed modernity. The historical knotting together of virtue, labor, and fossil fuel power – argues Daggett – means that reimagining the role of energy in society requires a fuller transformation of the politics of work.
Cara New Daggett is Assistant Professor of Political Science at Virginia Tech.
Lance C. Thurner teaches history at Rutgers Newark.  His research and writing address the production of knowledge, political subjectivities, and racial and national identities in eighteenth and nineteenth-century Mexico. He is broadly interested in the methods and politics of applying a global perspective to the history of science and medicine and the role of the humanities in the age of the Anthropocene. More at http://empiresprogeny.org.
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      <pubDate>Mon, 04 Nov 2019 09:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>221</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Daggett suggests that reassessing our relationships with fossil fuels in the face of climate change also requires that we rethink the concept of energy itself...</itunes:subtitle>
      <itunes:summary>In Birth of Energy: Fossil Fuels, Thermodynamics, and the Politics of Work (Duke UP, 2019), Cara New Daggett suggests that reassessing our relationships with fossil fuels in the face of climate change also requires that we rethink the concept of energy itself. Although a seemingly self-evident and natural scientific object, the idea of energy that informed the development of fossil fueled capitalism is a surprisingly modern invention. In the 19th century, as tinkerers sought to explain mystical steam power, they rehashed this ancient word to conceptualize limitless potential and ceaseless expansion. Daggett demonstrates that not only did this new abstraction explain and empower novel technologies and fields of physics, but also became an ideological fulcrum with which to describe and proscribe the emerging societies of industrial capitalism. The harnessing of energy and maximizing its efficiency became not only the principles of mechanical engineering, but also of workplace organization and worker discipline. At home, energy served as a measure of virtue, self-control, and good citizenship; and abroad agents of empire used it to inculcate colonized peoples with those values and habits of supposed modernity. The historical knotting together of virtue, labor, and fossil fuel power – argues Daggett – means that reimagining the role of energy in society requires a fuller transformation of the politics of work.
Cara New Daggett is Assistant Professor of Political Science at Virginia Tech.
Lance C. Thurner teaches history at Rutgers Newark.  His research and writing address the production of knowledge, political subjectivities, and racial and national identities in eighteenth and nineteenth-century Mexico. He is broadly interested in the methods and politics of applying a global perspective to the history of science and medicine and the role of the humanities in the age of the Anthropocene. More at http://empiresprogeny.org.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="http://www.amazon.com/dp/1478006323/?tag=newbooinhis-20"><em>Birth of Energy: Fossil Fuels, Thermodynamics, and the Politics of Work</em></a> (Duke UP, 2019)<em>, </em><a href="https://www.caranewdaggett.com/">Cara New Daggett</a> suggests that reassessing our relationships with fossil fuels in the face of climate change also requires that we rethink the concept of energy itself. Although a seemingly self-evident and natural scientific object, the idea of energy that informed the development of fossil fueled capitalism is a surprisingly modern invention. In the 19th century, as tinkerers sought to explain mystical steam power, they rehashed this ancient word to conceptualize limitless potential and ceaseless expansion. Daggett demonstrates that not only did this new abstraction explain and empower novel technologies and fields of physics, but also became an ideological fulcrum with which to describe and proscribe the emerging societies of industrial capitalism. The harnessing of energy and maximizing its efficiency became not only the principles of mechanical engineering, but also of workplace organization and worker discipline. At home, energy served as a measure of virtue, self-control, and good citizenship; and abroad agents of empire used it to inculcate colonized peoples with those values and habits of supposed modernity. The historical knotting together of virtue, labor, and fossil fuel power – argues Daggett – means that reimagining the role of energy in society requires a fuller transformation of the politics of work.</p><p><a href="https://liberalarts.vt.edu/departments-and-schools/department-of-political-science/faculty/cara-daggett.html">Cara New Daggett</a> is Assistant Professor of Political Science at Virginia Tech.</p><p><em>Lance C. Thurner teaches history at Rutgers Newark.  His research and writing address the production of knowledge, political subjectivities, and racial and national identities in eighteenth and nineteenth-century Mexico. He is broadly interested in the methods and politics of applying a global perspective to the history of science and medicine and the role of the humanities in the age of the Anthropocene. More at </em><a href="http://empiresprogeny.org"><em>http://empiresprogeny.org</em></a><em>.</em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2609</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN7175339955.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>David D. Vail, "Chemical Lands: Pesticides, Aerial Spraying, and Health in North America’s Grasslands since 1945" (U Alabama Press, 2019)</title>
      <description>Over fifty years ago, Rachel Carson’s Silent Spring (1962) scolded the agricultural industry for its profligate spread of “poison” and pesticides “indiscriminately from the skies.” Now, in Chemical Lands: Pesticides, Aerial Spraying, and Health in North America’s Grasslands since 1945 (University of Alabama Press, 2018), David D. Vail re-examines aerial spraying in the North American Grasslands and the political and environmental controversies it provoked. He reveals how aircraft sprayers and practices emerged within the context of local environments and scientific experiments by regional universities and chemical companies. His pragmatic assessment of application technologies provides a nuanced perspective of pesticide use and environmental change.
Ryan Driskell Tate is a Ph.D. candidate in American history at Rutgers University. He teaches courses on modern US history, environmental history, and histories of labor and capitalism. He is completing a book on energy development in the American West. @rydriskelltate
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      <pubDate>Tue, 15 Oct 2019 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>40</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Over fifty years ago, Rachel Carson’s Silent Spring (1962) scolded the agricultural industry for its profligate spread of “poison” and pesticides “indiscriminately from the skies"...</itunes:subtitle>
      <itunes:summary>Over fifty years ago, Rachel Carson’s Silent Spring (1962) scolded the agricultural industry for its profligate spread of “poison” and pesticides “indiscriminately from the skies.” Now, in Chemical Lands: Pesticides, Aerial Spraying, and Health in North America’s Grasslands since 1945 (University of Alabama Press, 2018), David D. Vail re-examines aerial spraying in the North American Grasslands and the political and environmental controversies it provoked. He reveals how aircraft sprayers and practices emerged within the context of local environments and scientific experiments by regional universities and chemical companies. His pragmatic assessment of application technologies provides a nuanced perspective of pesticide use and environmental change.
Ryan Driskell Tate is a Ph.D. candidate in American history at Rutgers University. He teaches courses on modern US history, environmental history, and histories of labor and capitalism. He is completing a book on energy development in the American West. @rydriskelltate
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Over fifty years ago, Rachel Carson’s <em>Silent Spring</em> (1962) scolded the agricultural industry for its profligate spread of “poison” and pesticides “indiscriminately from the skies.” Now, in <a href="http://www.amazon.com/dp/0817319735/?tag=newbooinhis-20"><em>Chemical Lands: Pesticides, Aerial Spraying, and Health in North America’s Grasslands since 1945</em></a> (University of Alabama Press, 2018), <a href="https://www.davidvail.net/">David D. Vail</a> re-examines aerial spraying in the North American Grasslands and the political and environmental controversies it provoked. He reveals how aircraft sprayers and practices emerged within the context of local environments and scientific experiments by regional universities and chemical companies. His pragmatic assessment of application technologies provides a nuanced perspective of pesticide use and environmental change.</p><p><em>Ryan Driskell Tate is a Ph.D. candidate in American history at Rutgers University. He teaches courses on modern US history, environmental history, and histories of labor and capitalism. He is completing a book on energy development in the American West. </em><a href="https://twitter.com/rydriskelltate"><em>@rydriskelltate</em></a></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2334</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[6145fc5a-5db1-11ec-b86b-139ef173f77d]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8093482532.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Sharra L. Vostral, "Toxic Shock: A Social History" (NYU Press, 2018)</title>
      <description>In 1978, doctors in Denver, Colorado observed several healthy children who suddenly and mysteriously developed a serious, life-threatening illness with no visible source. Their condition, which doctors dubbed ‘toxic shock syndrome’ (TSS) was rare, but observed with increasing frequency over the next few years in young women, and was soon learned to be associated with a bacterium and the use of high-absorbency tampons that had only recently gone on the market. In 1980, the Centers for Disease Control identified Rely tampons, produced by Procter &amp; Gamble, as having the greatest association with TSS over every other tampon, and the company withdrew them from the market. To this day, however, women are frequently warned about contracting TSS through tampon use, even though very few cases are diagnosed each year.
Historian Sharra Vostral’s Toxic Shock: A Social History (NYU Press, 2018) is the first and definitive history of TSS. Vostral shows how commercial interests negatively affected women’s health outcomes; the insufficient testing of the first super-absorbency tampon; how TSS became a ‘women’s disease,’ for which women must constantly monitor their own bodies. Further, Vostral discusses the awkward, veiled and vague ways public health officials and the media discussed the risks of contracting TSS through tampon use because of social taboos around discussing menstruation, and how this has hampered regulatory actions and health communication around TSS, tampon use, and product safety.
A study at the intersection of public health and social history, Toxic Shock brings to light the complexities behind a stigmatized and under-discussed issue in women’s reproductive health. Importantly, Vostral warns that as we move forward with more and more joint replacements, implants, and internal medical devices, we must understand the relationship of technology to bacteria and recognize that both can be active agents within the human body. In other words, unexpected consequences and risks of bacteria and technology interacting with each other remain.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 02 Aug 2019 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>68</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>In 1978, doctors in Denver, Colorado observed several healthy children who suddenly and mysteriously developed a serious, life-threatening illness with no visible source...</itunes:subtitle>
      <itunes:summary>In 1978, doctors in Denver, Colorado observed several healthy children who suddenly and mysteriously developed a serious, life-threatening illness with no visible source. Their condition, which doctors dubbed ‘toxic shock syndrome’ (TSS) was rare, but observed with increasing frequency over the next few years in young women, and was soon learned to be associated with a bacterium and the use of high-absorbency tampons that had only recently gone on the market. In 1980, the Centers for Disease Control identified Rely tampons, produced by Procter &amp; Gamble, as having the greatest association with TSS over every other tampon, and the company withdrew them from the market. To this day, however, women are frequently warned about contracting TSS through tampon use, even though very few cases are diagnosed each year.
Historian Sharra Vostral’s Toxic Shock: A Social History (NYU Press, 2018) is the first and definitive history of TSS. Vostral shows how commercial interests negatively affected women’s health outcomes; the insufficient testing of the first super-absorbency tampon; how TSS became a ‘women’s disease,’ for which women must constantly monitor their own bodies. Further, Vostral discusses the awkward, veiled and vague ways public health officials and the media discussed the risks of contracting TSS through tampon use because of social taboos around discussing menstruation, and how this has hampered regulatory actions and health communication around TSS, tampon use, and product safety.
A study at the intersection of public health and social history, Toxic Shock brings to light the complexities behind a stigmatized and under-discussed issue in women’s reproductive health. Importantly, Vostral warns that as we move forward with more and more joint replacements, implants, and internal medical devices, we must understand the relationship of technology to bacteria and recognize that both can be active agents within the human body. In other words, unexpected consequences and risks of bacteria and technology interacting with each other remain.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In 1978, doctors in Denver, Colorado observed several healthy children who suddenly and mysteriously developed a serious, life-threatening illness with no visible source. Their condition, which doctors dubbed ‘toxic shock syndrome’ (TSS) was rare, but observed with increasing frequency over the next few years in young women, and was soon learned to be associated with a bacterium and the use of high-absorbency tampons that had only recently gone on the market. In 1980, the Centers for Disease Control identified Rely tampons, produced by Procter &amp; Gamble, as having the greatest association with TSS over every other tampon, and the company withdrew them from the market. To this day, however, women are frequently warned about contracting TSS through tampon use, even though very few cases are diagnosed each year.</p><p>Historian <a href="https://cla.purdue.edu/facultyStaff/profiles/new/newfaculty-13/Vostral,_Sharra.html">Sharra Vostral</a>’s <a href="http://www.amazon.com/dp/1479815497/?tag=newbooinhis-20"><em>Toxic Shock: A Social History</em></a> (NYU Press, 2018) is the first and definitive history of TSS. Vostral shows how commercial interests negatively affected women’s health outcomes; the insufficient testing of the first super-absorbency tampon; how TSS became a ‘women’s disease,’ for which women must constantly monitor their own bodies. Further, Vostral discusses the awkward, veiled and vague ways public health officials and the media discussed the risks of contracting TSS through tampon use because of social taboos around discussing menstruation, and how this has hampered regulatory actions and health communication around TSS, tampon use, and product safety.</p><p>A study at the intersection of public health and social history, <em>Toxic Shock</em> brings to light the complexities behind a stigmatized and under-discussed issue in women’s reproductive health. Importantly, Vostral warns that as we move forward with more and more joint replacements, implants, and internal medical devices, we must understand the relationship of technology to bacteria and recognize that both can be active agents within the human body. In other words, unexpected consequences and risks of bacteria and technology interacting with each other remain.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1248</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
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      <enclosure url="https://traffic.megaphone.fm/NBN7646205903.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Paul Sutter, "Your Place in the Universe: Understanding Our Big, Messy Existence" (Prometheus, 2018)</title>
      <description>In Your Place in the Universe: Understanding Our Big, Messy Existence (Prometheus, 2018), Paul Sutter presents an in-depth yet accessible tour of the universe for lay readers, while conveying the excitement of astronomy.How is a galaxy billions of lightyears away connected to us? Is our home nothing more than a tiny speck of blue in an ocean of night? In this exciting tour of a universe far larger than we can imagine, cosmologist Sutter emphasizes how amazing it is that we are part of such a huge, complex, and mysterious place. Through metaphors and uncomplicated language, Sutter breathes life into the science of astrophysics, unveiling how particles, forces, and fields interplay to create the greatest of cosmic dramas. Touched with the author's characteristic breezy, conversational style--which has made him a breakout hit on venues such as The Weather Channel, the Science Channel, and his own popular Ask a Spaceman! podcast--he conveys the fun and wonder of delving deeply into the physical processes of the natural universe. He weaves together the past and future histories of our universe with grounded descriptions of essential modern-day physics as well as speculations based on the latest research in cosmology. Topics include our place in the Milky Way galaxy; the cosmic web--a vast web-like pattern in which galaxies are arranged; the origins of our universe in the big bang; the mysteries of dark matter and dark energy; how science has dramatically changed our relationship to the cosmos; conjectures about the future of reality as we know it; and more.For anyone who has ever stared at the starry night sky and wondered how we humans on Earth fit into the big picture, this book is an essential roadmap.
Sutter's Your Place in the Universe is the best summary of the history of cosmology and present-day cosmological thinking I’ve read since Isaac Asimov wrote The Universe half a century ago. Not only is it a fabulous book, but it’s written in a style that may result in its author being summoned to Hollywood to write sitcoms in his spare time. Truly enjoyable reading on the Universe's most interesting subject.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 18 Jul 2019 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>15</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Sutter presents an in-depth yet accessible tour of the universe for lay readers, while conveying the excitement of astronomy...</itunes:subtitle>
      <itunes:summary>In Your Place in the Universe: Understanding Our Big, Messy Existence (Prometheus, 2018), Paul Sutter presents an in-depth yet accessible tour of the universe for lay readers, while conveying the excitement of astronomy.How is a galaxy billions of lightyears away connected to us? Is our home nothing more than a tiny speck of blue in an ocean of night? In this exciting tour of a universe far larger than we can imagine, cosmologist Sutter emphasizes how amazing it is that we are part of such a huge, complex, and mysterious place. Through metaphors and uncomplicated language, Sutter breathes life into the science of astrophysics, unveiling how particles, forces, and fields interplay to create the greatest of cosmic dramas. Touched with the author's characteristic breezy, conversational style--which has made him a breakout hit on venues such as The Weather Channel, the Science Channel, and his own popular Ask a Spaceman! podcast--he conveys the fun and wonder of delving deeply into the physical processes of the natural universe. He weaves together the past and future histories of our universe with grounded descriptions of essential modern-day physics as well as speculations based on the latest research in cosmology. Topics include our place in the Milky Way galaxy; the cosmic web--a vast web-like pattern in which galaxies are arranged; the origins of our universe in the big bang; the mysteries of dark matter and dark energy; how science has dramatically changed our relationship to the cosmos; conjectures about the future of reality as we know it; and more.For anyone who has ever stared at the starry night sky and wondered how we humans on Earth fit into the big picture, this book is an essential roadmap.
Sutter's Your Place in the Universe is the best summary of the history of cosmology and present-day cosmological thinking I’ve read since Isaac Asimov wrote The Universe half a century ago. Not only is it a fabulous book, but it’s written in a style that may result in its author being summoned to Hollywood to write sitcoms in his spare time. Truly enjoyable reading on the Universe's most interesting subject.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="http://www.amazon.com/dp/1633884724/?tag=newbooinhis-20"><em>Your Place in the Universe: Understanding Our Big, Messy Existence</em></a> (Prometheus, 2018), <a href="http://www.pmsutter.com/">Paul Sutter</a> presents an in-depth yet accessible tour of the universe for lay readers, while conveying the excitement of astronomy.How is a galaxy billions of lightyears away connected to us? Is our home nothing more than a tiny speck of blue in an ocean of night? In this exciting tour of a universe far larger than we can imagine, cosmologist Sutter emphasizes how amazing it is that we are part of such a huge, complex, and mysterious place. Through metaphors and uncomplicated language, Sutter breathes life into the science of astrophysics, unveiling how particles, forces, and fields interplay to create the greatest of cosmic dramas. Touched with the author's characteristic breezy, conversational style--which has made him a breakout hit on venues such as The Weather Channel, the Science Channel, and his own popular Ask a Spaceman! podcast--he conveys the fun and wonder of delving deeply into the physical processes of the natural universe. He weaves together the past and future histories of our universe with grounded descriptions of essential modern-day physics as well as speculations based on the latest research in cosmology. Topics include our place in the Milky Way galaxy; the cosmic web--a vast web-like pattern in which galaxies are arranged; the origins of our universe in the big bang; the mysteries of dark matter and dark energy; how science has dramatically changed our relationship to the cosmos; conjectures about the future of reality as we know it; and more.For anyone who has ever stared at the starry night sky and wondered how we humans on Earth fit into the big picture, this book is an essential roadmap.</p><p>Sutter's <em>Your Place in the Universe</em> is the best summary of the history of cosmology and present-day cosmological thinking I’ve read since Isaac Asimov wrote The Universe half a century ago. Not only is it a fabulous book, but it’s written in a style that may result in its author being summoned to Hollywood to write sitcoms in his spare time. Truly enjoyable reading on the Universe's most interesting subject.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3265</itunes:duration>
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      <enclosure url="https://traffic.megaphone.fm/NBN3472884521.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Chris Bernhardt, "Quantum Computing for Everyone" (MIT Press, 2019)</title>
      <description>Today I talked with Chris Bernhardt about his book Quantum Computing for Everyone (MIT Press, 2019). This is a book that involves a lot of mathematics, but most of it is accessible to anyone who survived high school algebra. Even a math-phobic can read the book, skip the math, and then more than hold his or her own in any but the highest-level discussion of quantum computing. For those of us who love math, the underlying math is elegantly simple and beautifully presented – and the same can be said of the non-mathematical material. as well. 
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 02 May 2019 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>36</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Even a math-phobic can read the book, skip the math, and then more than hold his or her own in any but the highest-level discussion of quantum computing...</itunes:subtitle>
      <itunes:summary>Today I talked with Chris Bernhardt about his book Quantum Computing for Everyone (MIT Press, 2019). This is a book that involves a lot of mathematics, but most of it is accessible to anyone who survived high school algebra. Even a math-phobic can read the book, skip the math, and then more than hold his or her own in any but the highest-level discussion of quantum computing. For those of us who love math, the underlying math is elegantly simple and beautifully presented – and the same can be said of the non-mathematical material. as well. 
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Today I talked with <a href="http://faculty.fairfield.edu/cbernhardt/">Chris Bernhardt</a> about his book <a href="http://www.amazon.com/dp/0262039257/?tag=newbooinhis-20"><em>Quantum Computing for Everyone</em></a> (MIT Press, 2019). This is a book that involves a lot of mathematics, but most of it is accessible to anyone who survived high school algebra. Even a math-phobic can read the book, skip the math, and then more than hold his or her own in any but the highest-level discussion of quantum computing. For those of us who love math, the underlying math is elegantly simple and beautifully presented – and the same can be said of the non-mathematical material. as well.<em> </em></p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3221</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[af314562-5db3-11ec-866a-ab3409471b15]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN5334676995.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Gregory Dawes, "Galileo and the Conflict between Religion and Science" (Routledge, 2016)</title>
      <description>Open conflict between religion and science may not be inevitable, but a germ of discord resides in some of the fundamental commitments of both; in this sense, war is always, potentially, just around the corner. In Galileo and the Conflict between Religion and Science(Routledge, 2016), Gregory Dawes uses the famous Galileo affair as a case study in the profoundly different attitudes to knowledge exhibited by religious and scientific communities—differences that will make conflict highly likely whenever scientific claims contradict the revealed truths of scripturally-based faiths. Dawes argues that these faiths postulate a divine source of knowledge distinct from human reason; hold that the knowledge derivable from this source is certain, not merely probable; and because of this, allow apparent conflicts between science and religion to be resolved in science’s favor only when conclusive justification for scientific claims is available—a condition that science does not, and arguably cannot, ever satisfy. The implications are clear: insofar as Christians hold to the traditional epistemic commitments of their faith, they will brook no criticism of their revealed truths, and under certain conditions may even seek to suppress science on God’s authority.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 18 Mar 2019 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>33</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Open conflict between religion and science may not be inevitable, but a germ of discord resides in some of the fundamental commitments of both...</itunes:subtitle>
      <itunes:summary>Open conflict between religion and science may not be inevitable, but a germ of discord resides in some of the fundamental commitments of both; in this sense, war is always, potentially, just around the corner. In Galileo and the Conflict between Religion and Science(Routledge, 2016), Gregory Dawes uses the famous Galileo affair as a case study in the profoundly different attitudes to knowledge exhibited by religious and scientific communities—differences that will make conflict highly likely whenever scientific claims contradict the revealed truths of scripturally-based faiths. Dawes argues that these faiths postulate a divine source of knowledge distinct from human reason; hold that the knowledge derivable from this source is certain, not merely probable; and because of this, allow apparent conflicts between science and religion to be resolved in science’s favor only when conclusive justification for scientific claims is available—a condition that science does not, and arguably cannot, ever satisfy. The implications are clear: insofar as Christians hold to the traditional epistemic commitments of their faith, they will brook no criticism of their revealed truths, and under certain conditions may even seek to suppress science on God’s authority.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Open conflict between religion and science may not be inevitable, but a germ of discord resides in some of the fundamental commitments of both; in this sense, war is always, potentially, just around the corner. In <a href="https://aax-us-east.amazon-adsystem.com/x/c/QkmPTJIjDh2YwgmyyKucnCYAAAFpXrgnsgEAAAFKAXuqR7E/https://www.amazon.com/dp/0367172941/?creativeASIN=0367172941&amp;linkCode=w61&amp;imprToken=s1UT9fkDz2W1BuMTsr9NqQ&amp;slotNum=0&amp;tag=newbooinhis-20"><em>Galileo and the Conflict between Religion and Science</em></a>(Routledge, 2016), <a href="https://www.otago.ac.nz/religion/staff/dawes.php">Gregory Dawes</a> uses the famous Galileo affair as a case study in the profoundly different attitudes to knowledge exhibited by religious and scientific communities—differences that will make conflict highly likely whenever scientific claims contradict the revealed truths of scripturally-based faiths. Dawes argues that these faiths postulate a divine source of knowledge distinct from human reason; hold that the knowledge derivable from this source is certain, not merely probable; and because of this, allow apparent conflicts between science and religion to be resolved in science’s favor only when conclusive justification for scientific claims is available—a condition that science does not, and arguably cannot, ever satisfy. The implications are clear: insofar as Christians hold to the traditional epistemic commitments of their faith, they will brook no criticism of their revealed truths, and under certain conditions may even seek to suppress science on God’s authority.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2823</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[d34670d2-5db6-11ec-bb20-17fe04d74e73]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN5045978712.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Geraint F. Lewis and Luke A. Barnes, “A Fortunate Universe: Life in a Finely Tuned Cosmos” (Cambridge UP, 2016)</title>
      <description>If the universe was even slightly different in some of its fundamental physical properties, life could not exist – such is the claim of ‘fine tuning’ of the universe for life. The topic of fine tuning has received attention from physicists, philosophers and the popular press. In A Fortunate Universe:...
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 13 Nov 2018 11:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>If the universe was even slightly different in some of its fundamental physical properties, life could not exist – such is the claim of ‘fine tuning’ of the universe for life. The topic of fine tuning has received attention from physicists,</itunes:subtitle>
      <itunes:summary>If the universe was even slightly different in some of its fundamental physical properties, life could not exist – such is the claim of ‘fine tuning’ of the universe for life. The topic of fine tuning has received attention from physicists, philosophers and the popular press. In A Fortunate Universe:...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>If the universe was even slightly different in some of its fundamental physical properties, life could not exist – such is the claim of ‘fine tuning’ of the universe for life. The topic of fine tuning has received attention from physicists, philosophers and the popular press. In A Fortunate Universe:...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2554</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[https://newbooksnetwork.com/?p=79314]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8153764337.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Daniel Stolz, “The Lighthouse and the Observatory: Islam, Science, and Empire in Late Ottoman Egypt” (Cambridge UP, 2018)</title>
      <description>Both a history of science and a history of Islam, The Lighthouse and the Observatory: Islam, Science, and Empire in Late Ottoman Egypt (Cambridge University Press, 2018) by Daniel Stolz tells the story of Ottoman Egypt and astronomy, looking at how astronomy tied together the state and religious practice. We talk about how religious authority was negotiated through astronomy, the zij (the genre of astronomic handbooks used by astronomers), translation, and how print affected the distribution of astronomic knowledge. Stolz also contends with the specter of the nahda, or the Arabic language intellectual renaissance, and he tells us how he deals with it in his work. As always, we check in with the field of Middle Eastern history and ask what one should do with increasingly limited access to archives.
Daniel Stolz is an assistant professor at University of Wisconsin, Madison. He was previously a visiting assistant professor of history at Northwestern University, where he was also affiliated with the Science in Human Culture Program. He received his PhD from Princeton University in Near Eastern Studies. He is a historian of the modern Middle East, specializing in Egypt and the late Ottoman Empire. He is the author of many articles on science and religion in Egypt and the monograph discussed in this interview.

Nadirah Mansour is a graduate student at Princeton University’s Department of Near Eastern Studies working on the global intellectual history of the Arabic-language press. She tweets @NAMansour26 and produces another Middle-East and North Africa-related podcast: Reintroducing.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 05 Nov 2018 11:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Both a history of science and a history of Islam, The Lighthouse and the Observatory: Islam, Science, and Empire in Late Ottoman Egypt (Cambridge University Press, 2018) by Daniel Stolz tells the story of Ottoman Egypt and astronomy,</itunes:subtitle>
      <itunes:summary>Both a history of science and a history of Islam, The Lighthouse and the Observatory: Islam, Science, and Empire in Late Ottoman Egypt (Cambridge University Press, 2018) by Daniel Stolz tells the story of Ottoman Egypt and astronomy, looking at how astronomy tied together the state and religious practice. We talk about how religious authority was negotiated through astronomy, the zij (the genre of astronomic handbooks used by astronomers), translation, and how print affected the distribution of astronomic knowledge. Stolz also contends with the specter of the nahda, or the Arabic language intellectual renaissance, and he tells us how he deals with it in his work. As always, we check in with the field of Middle Eastern history and ask what one should do with increasingly limited access to archives.
Daniel Stolz is an assistant professor at University of Wisconsin, Madison. He was previously a visiting assistant professor of history at Northwestern University, where he was also affiliated with the Science in Human Culture Program. He received his PhD from Princeton University in Near Eastern Studies. He is a historian of the modern Middle East, specializing in Egypt and the late Ottoman Empire. He is the author of many articles on science and religion in Egypt and the monograph discussed in this interview.

Nadirah Mansour is a graduate student at Princeton University’s Department of Near Eastern Studies working on the global intellectual history of the Arabic-language press. She tweets @NAMansour26 and produces another Middle-East and North Africa-related podcast: Reintroducing.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Both a history of science and a history of Islam, <a href="https://aax-us-east.amazon-adsystem.com/x/c/QpsH1pKGgf6ie114kLxAeegAAAFm1HWmZgEAAAFKAR7YOD0/https://www.amazon.com/dp/1107196337/ref=as_at?creativeASIN=1107196337&amp;linkCode=w61&amp;imprToken=OMKeVf1ZeBsX5ArUimZMaA&amp;slotNum=0&amp;tag=newbooinhis-20">The Lighthouse and the Observatory: Islam, Science, and Empire in Late Ottoman Egypt</a> (Cambridge University Press, 2018) by Daniel Stolz tells the story of Ottoman Egypt and astronomy, looking at how astronomy tied together the state and religious practice. We talk about how religious authority was negotiated through astronomy, the zij (the genre of astronomic handbooks used by astronomers), translation, and how print affected the distribution of astronomic knowledge. Stolz also contends with the specter of the nahda, or the Arabic language intellectual renaissance, and he tells us how he deals with it in his work. As always, we check in with the field of Middle Eastern history and ask what one should do with increasingly limited access to archives.</p><p><a href="https://history.wisc.edu/people/stolz-daniel/">Daniel Stolz</a> is an assistant professor at University of Wisconsin, Madison. He was previously a visiting assistant professor of history at Northwestern University, where he was also affiliated with the Science in Human Culture Program. He received his PhD from Princeton University in Near Eastern Studies. He is a historian of the modern Middle East, specializing in Egypt and the late Ottoman Empire. He is the author of many articles on science and religion in Egypt and the monograph discussed in this interview.</p><p><br></p><p>Nadirah Mansour is a graduate student at Princeton University’s Department of Near Eastern Studies working on the global intellectual history of the Arabic-language press. She tweets <a href="https://twitter.com/namansour26">@NAMansour26</a> and produces another Middle-East and North Africa-related podcast: <a href="https://www.facebook.com/ReintroducingPodcast/">Reintroducing</a>.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3438</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[https://newbooksnetwork.com/?p=79132]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4686112777.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Norah MacKendrick, “Better Safe Than Sorry: How Consumers Navigate Exposure to Everyday Toxics” (U California Press, 2018).</title>
      <description>Consumers today have a lot of choices. Whether in stores or online, people are inundated by an abundance of options for what to buy. At the same time, the products we consume seem to have more and more ingredients, additives, and chemicals in them that put our health at risk, and even their packaging could be harmful to us. How do consumers make sense of the choices they have to make to reduce their own and their family’s exposure to everyday toxics?
In her engaging and insightful new book, Better Safe Than Sorry: How Consumers Navigate Exposure to Everyday Toxics (University of California Press, 2018), sociologist Norah MacKendrick shows readers how today’s regulatory environment in the United States came about, how so much of what we consume remains unregulated, and how environmental health groups, food retail stores, and consumers have adjusted to these realities. In an age of deregulation, when individuals are forced to take on an increasing amount of risk with decreasing support from societal institutions, MacKendrick argues that many consumers today are practicing what she calls “precautionary consumption,” or a pattern of “green” or non-toxic shopping to try to ward off the harms of conventional modern products. The burden of such an intensive, resource-consuming approach to shopping, however, falls disproportionately on women, who remain charged with the responsibility of caring for the household (shopping, cooking, cleaning), and especially mothers, who still do the lion’s share of child raising. Furthermore, MacKendrick questions the ability of precautionary consumption to truly achieve environmental justice and equitable forms of widespread regulation, so that the burden for preventing exposure to everyday toxics doesn’t fall on the individual, and especially not on the groups bearing excessive responsibility to do so (women, mothers) or receiving a disproportionate amount of the harm (the poor). Examining everyday toxics from a variety of angles, MacKendrick’s book is an impressive analysis of how many of us shop today, why we do so, and what we can do to achieve greater equality.

Richard E. Ocejo is associate professor of sociology at John Jay College and the Graduate Center of the City University of New York (CUNY). He is the author of Masters of Craft: Old Jobs in the New Urban Economy (Princeton University Press, 2017), about the transformation of low-status occupations into cool, cultural taste-making jobs (cocktail bartenders, craft distillers, upscale men’s barbers, and whole animal butchers), and of Upscaling Downtown: From Bowery Saloons to Cocktail Bars in New York City (Princeton University Press, 2014), about growth policies, nightlife, and conflict in gentrified neighborhoods. His work has appeared in such journals as City &amp; Community, Poetics, Ethnography, and the European Journal of Cultural Studies. He is also the editor of Ethnography and the City: Readings on Doing Urban Fieldwork (Routledge, 2012), a co-Book Editor at City &amp; Community, and serves on the editorial boards of the journals Metropolitics, Work and Occupations, and the Journal for Undergraduate Ethnography.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 19 Jul 2018 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Consumers today have a lot of choices. Whether in stores or online, people are inundated by an abundance of options for what to buy. At the same time, the products we consume seem to have more and more ingredients, additives,</itunes:subtitle>
      <itunes:summary>Consumers today have a lot of choices. Whether in stores or online, people are inundated by an abundance of options for what to buy. At the same time, the products we consume seem to have more and more ingredients, additives, and chemicals in them that put our health at risk, and even their packaging could be harmful to us. How do consumers make sense of the choices they have to make to reduce their own and their family’s exposure to everyday toxics?
In her engaging and insightful new book, Better Safe Than Sorry: How Consumers Navigate Exposure to Everyday Toxics (University of California Press, 2018), sociologist Norah MacKendrick shows readers how today’s regulatory environment in the United States came about, how so much of what we consume remains unregulated, and how environmental health groups, food retail stores, and consumers have adjusted to these realities. In an age of deregulation, when individuals are forced to take on an increasing amount of risk with decreasing support from societal institutions, MacKendrick argues that many consumers today are practicing what she calls “precautionary consumption,” or a pattern of “green” or non-toxic shopping to try to ward off the harms of conventional modern products. The burden of such an intensive, resource-consuming approach to shopping, however, falls disproportionately on women, who remain charged with the responsibility of caring for the household (shopping, cooking, cleaning), and especially mothers, who still do the lion’s share of child raising. Furthermore, MacKendrick questions the ability of precautionary consumption to truly achieve environmental justice and equitable forms of widespread regulation, so that the burden for preventing exposure to everyday toxics doesn’t fall on the individual, and especially not on the groups bearing excessive responsibility to do so (women, mothers) or receiving a disproportionate amount of the harm (the poor). Examining everyday toxics from a variety of angles, MacKendrick’s book is an impressive analysis of how many of us shop today, why we do so, and what we can do to achieve greater equality.

Richard E. Ocejo is associate professor of sociology at John Jay College and the Graduate Center of the City University of New York (CUNY). He is the author of Masters of Craft: Old Jobs in the New Urban Economy (Princeton University Press, 2017), about the transformation of low-status occupations into cool, cultural taste-making jobs (cocktail bartenders, craft distillers, upscale men’s barbers, and whole animal butchers), and of Upscaling Downtown: From Bowery Saloons to Cocktail Bars in New York City (Princeton University Press, 2014), about growth policies, nightlife, and conflict in gentrified neighborhoods. His work has appeared in such journals as City &amp; Community, Poetics, Ethnography, and the European Journal of Cultural Studies. He is also the editor of Ethnography and the City: Readings on Doing Urban Fieldwork (Routledge, 2012), a co-Book Editor at City &amp; Community, and serves on the editorial boards of the journals Metropolitics, Work and Occupations, and the Journal for Undergraduate Ethnography.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Consumers today have a lot of choices. Whether in stores or online, people are inundated by an abundance of options for what to buy. At the same time, the products we consume seem to have more and more ingredients, additives, and chemicals in them that put our health at risk, and even their packaging could be harmful to us. How do consumers make sense of the choices they have to make to reduce their own and their family’s exposure to everyday toxics?</p><p>In her engaging and insightful new book, <a href="http://aax-us-east.amazon-adsystem.com/x/c/Qlac_N6JWEi1UO6jwmiQ0UoAAAFkmjoFbAEAAAFKAQ2Rfcs/http://www.amazon.com/dp/0520296680/ref=as_at?creativeASIN=0520296680&amp;linkCode=w61&amp;imprToken=2qMYGdArf9Rvl8YroxolkQ&amp;slotNum=0&amp;tag=newbooinhis-20">Better Safe Than Sorry: How Consumers Navigate Exposure to Everyday Toxics</a> (University of California Press, 2018), sociologist <a href="https://sociology.rutgers.edu/people/faculty/menu-ii/162-norah-mackendrick">Norah MacKendrick</a> shows readers how today’s regulatory environment in the United States came about, how so much of what we consume remains unregulated, and how environmental health groups, food retail stores, and consumers have adjusted to these realities. In an age of deregulation, when individuals are forced to take on an increasing amount of risk with decreasing support from societal institutions, MacKendrick argues that many consumers today are practicing what she calls “precautionary consumption,” or a pattern of “green” or non-toxic shopping to try to ward off the harms of conventional modern products. The burden of such an intensive, resource-consuming approach to shopping, however, falls disproportionately on women, who remain charged with the responsibility of caring for the household (shopping, cooking, cleaning), and especially mothers, who still do the lion’s share of child raising. Furthermore, MacKendrick questions the ability of precautionary consumption to truly achieve environmental justice and equitable forms of widespread regulation, so that the burden for preventing exposure to everyday toxics doesn’t fall on the individual, and especially not on the groups bearing excessive responsibility to do so (women, mothers) or receiving a disproportionate amount of the harm (the poor). Examining everyday toxics from a variety of angles, MacKendrick’s book is an impressive analysis of how many of us shop today, why we do so, and what we can do to achieve greater equality.</p><p><br></p><p><a href="http://www.jjay.cuny.edu/faculty/richard-e-ocejo">Richard E. Ocejo</a> is associate professor of sociology at John Jay College and the Graduate Center of the City University of New York (CUNY). He is the author of <a href="http://press.princeton.edu/titles/10960.html">Masters of Craft: Old Jobs in the New Urban Economy</a> (Princeton University Press, 2017), about the transformation of low-status occupations into cool, cultural taste-making jobs (cocktail bartenders, craft distillers, upscale men’s barbers, and whole animal butchers), and of <a href="http://press.princeton.edu/titles/10396.html">Upscaling Downtown: From Bowery Saloons to Cocktail Bars in New York City</a> (Princeton University Press, 2014), about growth policies, nightlife, and conflict in gentrified neighborhoods. His work has appeared in such journals as City &amp; Community, Poetics, Ethnography, and the European Journal of Cultural Studies. He is also the editor of <a href="https://www.routledge.com/Ethnography-and-the-City-Readings-on-Doing-Urban-Fieldwork/Ocejo/p/book/9780415808385">Ethnography and the City: Readings on Doing Urban Fieldwork</a> (Routledge, 2012), a co-Book Editor at City &amp; Community, and serves on the editorial boards of the journals Metropolitics, Work and Occupations, and the Journal for Undergraduate Ethnography.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4177</itunes:duration>
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      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=76192]]></guid>
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      <title>Eli Maor, “Music by the Numbers: From Pythagoras to Schoenberg” (Princeton UP, 2018)</title>
      <description>Most of us have heard of the math-music connection, but Eli Maor’s Music by the Numbers: From Pythagoras to Schoenberg (Princeton University Press, 2018) is THE book that explains what that connection is, and how both math and music connect to both physics and biology.  There are wonderful anecdotes detailing the lives and creations of many of the great musicians, mathematicians, scientists, and philosophers who have contributed to creating music and our understanding of it.  If you love music – and who doesn’t – you’ll enjoy reading this book, even if you don’t love math.  And maybe, even if you don’t love math, you’ll have a greater appreciation of it after you finish the book.
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      <pubDate>Wed, 18 Jul 2018 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Most of us have heard of the math-music connection, but Eli Maor’s Music by the Numbers: From Pythagoras to Schoenberg (Princeton University Press, 2018) is THE book that explains what that connection is, and how both math and music connect to both phy...</itunes:subtitle>
      <itunes:summary>Most of us have heard of the math-music connection, but Eli Maor’s Music by the Numbers: From Pythagoras to Schoenberg (Princeton University Press, 2018) is THE book that explains what that connection is, and how both math and music connect to both physics and biology.  There are wonderful anecdotes detailing the lives and creations of many of the great musicians, mathematicians, scientists, and philosophers who have contributed to creating music and our understanding of it.  If you love music – and who doesn’t – you’ll enjoy reading this book, even if you don’t love math.  And maybe, even if you don’t love math, you’ll have a greater appreciation of it after you finish the book.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Most of us have heard of the math-music connection, but Eli Maor’s <a href="https://press.princeton.edu/titles/11250.html">Music by the Numbers: From Pythagoras to Schoenberg</a> (Princeton University Press, 2018) is THE book that explains what that connection is, and how both math and music connect to both physics and biology.  There are wonderful anecdotes detailing the lives and creations of many of the great musicians, mathematicians, scientists, and philosophers who have contributed to creating music and our understanding of it.  If you love music – and who doesn’t – you’ll enjoy reading this book, even if you don’t love math.  And maybe, even if you don’t love math, you’ll have a greater appreciation of it after you finish the book.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3282</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=76144]]></guid>
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      <title>Randi Hutter Epstein, “Aroused: The History of Hormones and How They Control Just About Everything” (Norton, 2018)</title>
      <description>Metabolism, behavior, sleep, mood swings, the immune system, fighting, fleeing, puberty, and sex: these are just a few of the things our bodies control with hormones. Armed with a healthy dose of wit and curiosity, medical journalist Randi Hutter Epstein takes us on a journey through the unusual history of these potent chemicals from a basement filled with jarred nineteenth-century brains to a twenty-first-century hormone clinic in Los Angeles.
Brimming with fascinating anecdotes, illuminating new medical research, and humorous details, Aroused: The History of Hormones and How They Control Just About Everything (W.W. Norton &amp; Company, 2018) introduces the leading scientists who made life-changing discoveries about the hormone imbalances that ail us, as well as the charlatans who used those discoveries to peddle false remedies. Epstein exposes the humanity at the heart of hormone science with her rich cast of characters, including a 1920s doctor promoting vasectomies as a way to boost libido, a female medical student who discovered a pregnancy hormone in the 1940s, and a mother who collected pituitaries, a brain gland, from cadavers as a source of growth hormone to treat her son. Along the way, Epstein explores the functions of hormones such as leptin, oxytocin, estrogen, and testosterone, demystifying the science of endocrinology.
A fascinating look at the history and science of some of medicine’s most important discoveries, Aroused reveals the shocking history of hormones through the back rooms, basements, and labs where endocrinology began.

Jeremy Corr is the co-host of the hit Fixing Healthcare podcast along with industry thought leader Dr. Robert Pearl. A University of Iowa history alumnus, Jeremy is curious and passionate about all things healthcare, which means he’s always up for a good discussion! Reach him at jeremyccorr@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 18 Jul 2018 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Metabolism, behavior, sleep, mood swings, the immune system, fighting, fleeing, puberty, and sex: these are just a few of the things our bodies control with hormones. Armed with a healthy dose of wit and curiosity,</itunes:subtitle>
      <itunes:summary>Metabolism, behavior, sleep, mood swings, the immune system, fighting, fleeing, puberty, and sex: these are just a few of the things our bodies control with hormones. Armed with a healthy dose of wit and curiosity, medical journalist Randi Hutter Epstein takes us on a journey through the unusual history of these potent chemicals from a basement filled with jarred nineteenth-century brains to a twenty-first-century hormone clinic in Los Angeles.
Brimming with fascinating anecdotes, illuminating new medical research, and humorous details, Aroused: The History of Hormones and How They Control Just About Everything (W.W. Norton &amp; Company, 2018) introduces the leading scientists who made life-changing discoveries about the hormone imbalances that ail us, as well as the charlatans who used those discoveries to peddle false remedies. Epstein exposes the humanity at the heart of hormone science with her rich cast of characters, including a 1920s doctor promoting vasectomies as a way to boost libido, a female medical student who discovered a pregnancy hormone in the 1940s, and a mother who collected pituitaries, a brain gland, from cadavers as a source of growth hormone to treat her son. Along the way, Epstein explores the functions of hormones such as leptin, oxytocin, estrogen, and testosterone, demystifying the science of endocrinology.
A fascinating look at the history and science of some of medicine’s most important discoveries, Aroused reveals the shocking history of hormones through the back rooms, basements, and labs where endocrinology began.

Jeremy Corr is the co-host of the hit Fixing Healthcare podcast along with industry thought leader Dr. Robert Pearl. A University of Iowa history alumnus, Jeremy is curious and passionate about all things healthcare, which means he’s always up for a good discussion! Reach him at jeremyccorr@gmail.com.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Metabolism, behavior, sleep, mood swings, the immune system, fighting, fleeing, puberty, and sex: these are just a few of the things our bodies control with hormones. Armed with a healthy dose of wit and curiosity, medical journalist <a href="http://randihutterepstein.com/">Randi Hutter Epstein</a> takes us on a journey through the unusual history of these potent chemicals from a basement filled with jarred nineteenth-century brains to a twenty-first-century hormone clinic in Los Angeles.</p><p>Brimming with fascinating anecdotes, illuminating new medical research, and humorous details, <a href="http://aax-us-east.amazon-adsystem.com/x/c/QkNjx8gfmcA2TFwGQUJS3DYAAAFklCIdxQEAAAFKASUC56s/http://www.amazon.com/dp/0393239608/ref=as_at?creativeASIN=0393239608&amp;linkCode=w61&amp;imprToken=cSNnBJ4so9-31TBuuy3sAg&amp;slotNum=0&amp;tag=newbooinhis-20">Aroused: The History of Hormones and How They Control Just About Everything</a> (W.W. Norton &amp; Company, 2018) introduces the leading scientists who made life-changing discoveries about the hormone imbalances that ail us, as well as the charlatans who used those discoveries to peddle false remedies. Epstein exposes the humanity at the heart of hormone science with her rich cast of characters, including a 1920s doctor promoting vasectomies as a way to boost libido, a female medical student who discovered a pregnancy hormone in the 1940s, and a mother who collected pituitaries, a brain gland, from cadavers as a source of growth hormone to treat her son. Along the way, Epstein explores the functions of hormones such as leptin, oxytocin, estrogen, and testosterone, demystifying the science of endocrinology.</p><p>A fascinating look at the history and science of some of medicine’s most important discoveries, Aroused reveals the shocking history of hormones through the back rooms, basements, and labs where endocrinology began.</p><p><br></p><p><a href="https://www.linkedin.com/in/jeremy-corr-338319122/">Jeremy Corr</a> is the co-host of the hit <a href="http://www.fixinghealthcarepodcast.com/">Fixing Healthcare</a> podcast along with industry thought leader Dr. Robert Pearl. A University of Iowa history alumnus, Jeremy is curious and passionate about all things healthcare, which means he’s always up for a good discussion! Reach him at jeremyccorr@gmail.com.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2558</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=76148]]></guid>
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      <title>Scott Bembenek, “The Cosmic Machine: The Science That Runs Our Universe and the Story Behind It” (Zoari Press, 2017)</title>
      <description>Scott Bembenek‘s The Cosmic Machine: The Science That Runs Our Universe and the Story Behind It (Zoari Press, 2017) is a wonderful way to introduce an intellectually curious person to how physics and chemistry have evolved and how they contribute to our understanding of the Universe. This book focuses on...
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      <pubDate>Mon, 23 Oct 2017 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Scott Bembenek‘s The Cosmic Machine: The Science That Runs Our Universe and the Story Behind It (Zoari Press, 2017) is a wonderful way to introduce an intellectually curious person to how physics and chemistry have evolved and how they contribute to ou...</itunes:subtitle>
      <itunes:summary>Scott Bembenek‘s The Cosmic Machine: The Science That Runs Our Universe and the Story Behind It (Zoari Press, 2017) is a wonderful way to introduce an intellectually curious person to how physics and chemistry have evolved and how they contribute to our understanding of the Universe. This book focuses on...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Scott Bembenek‘s The Cosmic Machine: The Science That Runs Our Universe and the Story Behind It (Zoari Press, 2017) is a wonderful way to introduce an intellectually curious person to how physics and chemistry have evolved and how they contribute to our understanding of the Universe. This book focuses on...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3365</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=67031]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4326285127.mp3" length="0" type="audio/mpeg"/>
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      <title>Brian Clegg, “The Reality Frame: Relativity and Our Place in the Universe” (Icon Books, 2017)</title>
      <description>Brian Clegg is one of England’s most prolific and popular writers on science. His latest work, The Reality Frame: Relativity and Our Place in the Universe (Icon Books, 2017), covers Einstein’s Theories of Relativity and a whole lot more. Simply as an exposition of Einstein’s theories, the book is excellent its beautifully organized and delivered, with Clegg’s usual clarity and insight. But what makes the book transcend the usual work on this subject is that Clegg looks at relativity as a concept that can help us understand what distinguishes humanity as a species, and where our species fits into the Universe. Einstein himself would have enjoyed participating in a discussion of this fascinating topic, and may well have shared some of Clegg’s points of view.
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      <pubDate>Thu, 29 Jun 2017 18:12:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Brian Clegg is one of England’s most prolific and popular writers on science. His latest work, The Reality Frame: Relativity and Our Place in the Universe (Icon Books, 2017), covers Einstein’s Theories of Relativity and a whole lot more.</itunes:subtitle>
      <itunes:summary>Brian Clegg is one of England’s most prolific and popular writers on science. His latest work, The Reality Frame: Relativity and Our Place in the Universe (Icon Books, 2017), covers Einstein’s Theories of Relativity and a whole lot more. Simply as an exposition of Einstein’s theories, the book is excellent its beautifully organized and delivered, with Clegg’s usual clarity and insight. But what makes the book transcend the usual work on this subject is that Clegg looks at relativity as a concept that can help us understand what distinguishes humanity as a species, and where our species fits into the Universe. Einstein himself would have enjoyed participating in a discussion of this fascinating topic, and may well have shared some of Clegg’s points of view.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Brian Clegg is one of England’s most prolific and popular writers on science. His latest work, <a href="http://www.amazon.com/dp/1785782088/?tag=newbooinhis-20">The Reality Frame: Relativity and Our Place in the Universe </a>(Icon Books, 2017), covers Einstein’s Theories of Relativity and a whole lot more. Simply as an exposition of Einstein’s theories, the book is excellent its beautifully organized and delivered, with Clegg’s usual clarity and insight. But what makes the book transcend the usual work on this subject is that Clegg looks at relativity as a concept that can help us understand what distinguishes humanity as a species, and where our species fits into the Universe. Einstein himself would have enjoyed participating in a discussion of this fascinating topic, and may well have shared some of Clegg’s points of view.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3121</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=65396]]></guid>
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      <title>Raz Chen-Morris, “Measuring Shadows: Kepler’s Optics of Invisibility” (Penn State UP, 2016)</title>
      <description>Raz Chen-Morris‘s new book traces a significant and surprising notion through the work of Johannes Kepler: in order to account for real physical motions, one has to investigate artificially produced shadows and reflections. Measuring Shadows: Kepler’s Optics of Invisibility (The Pennsylvania State University Press, 2016) beautifully places Kepler’s optics into conversation with the art and literature of the period. It looks carefully at the crucial ways that changing notions of visibility set Kepler’s optics up as the cornerstone to his radical Copernican astronomy as Kepler made three moves that helped him bridge the visual gap between the heavens and its observers: (1) He defined light as a mathematical body, (2) He showed how instruments of observation could be manipulated mathematically to achieve exact representation of distant and almost invisible heavenly occurrences, and (3) He helped develop a new language for scientific observation by reformulating the relationship of mathematics to phenomena. In the course of his elegant analysis of how and why this all played out, Chen-Morris also guides readers through the relationships between Kepler’s ideas, Shakespeare’s writings, Renaissance painting, and more. Its a fascinating book.
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      <pubDate>Wed, 29 Mar 2017 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/2efa2fc0-5dcd-11ec-b9c8-2b1de2575e7c/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>Raz Chen-Morris‘s new book traces a significant and surprising notion through the work of Johannes Kepler: in order to account for real physical motions, one has to investigate artificially produced shadows and reflections.</itunes:subtitle>
      <itunes:summary>Raz Chen-Morris‘s new book traces a significant and surprising notion through the work of Johannes Kepler: in order to account for real physical motions, one has to investigate artificially produced shadows and reflections. Measuring Shadows: Kepler’s Optics of Invisibility (The Pennsylvania State University Press, 2016) beautifully places Kepler’s optics into conversation with the art and literature of the period. It looks carefully at the crucial ways that changing notions of visibility set Kepler’s optics up as the cornerstone to his radical Copernican astronomy as Kepler made three moves that helped him bridge the visual gap between the heavens and its observers: (1) He defined light as a mathematical body, (2) He showed how instruments of observation could be manipulated mathematically to achieve exact representation of distant and almost invisible heavenly occurrences, and (3) He helped develop a new language for scientific observation by reformulating the relationship of mathematics to phenomena. In the course of his elegant analysis of how and why this all played out, Chen-Morris also guides readers through the relationships between Kepler’s ideas, Shakespeare’s writings, Renaissance painting, and more. Its a fascinating book.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://www.huji.ac.il/dataj/controller/ihoker/MOP-STAFF_LINK?sno=5392622&amp;Save_t=">Raz Chen-Morris</a>‘s new book traces a significant and surprising notion through the work of Johannes Kepler: in order to account for real physical motions, one has to investigate artificially produced shadows and reflections. <a href="http://www.amazon.com/dp/0271070986/?tag=newbooinhis-20">Measuring Shadows: Kepler’s Optics of Invisibility </a>(The Pennsylvania State University Press, 2016) beautifully places Kepler’s optics into conversation with the art and literature of the period. It looks carefully at the crucial ways that changing notions of visibility set Kepler’s optics up as the cornerstone to his radical Copernican astronomy as Kepler made three moves that helped him bridge the visual gap between the heavens and its observers: (1) He defined light as a mathematical body, (2) He showed how instruments of observation could be manipulated mathematically to achieve exact representation of distant and almost invisible heavenly occurrences, and (3) He helped develop a new language for scientific observation by reformulating the relationship of mathematics to phenomena. In the course of his elegant analysis of how and why this all played out, Chen-Morris also guides readers through the relationships between Kepler’s ideas, Shakespeare’s writings, Renaissance painting, and more. Its a fascinating book.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3652</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=63610]]></guid>
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      <title>Stephanie Ruphy, “Scientific Pluralism Reconsidered: A New Approach to the (Dis)unity of Science (U. Pittsburgh Press, 2017)</title>
      <description>The idea that the sciences can’t be unified–that there will never be a single ‘theory of everything’–is the current orthodoxy in philosophy of science and in many sciences as well. But different versions of pluralism present very different views of what exactly they are pluralistic about, why sciences cannot be unified, and what the failure of unification entails about the world and about our knowledge of it. In Scientific Pluralism Reconsidered: A New Approach to the Dis(unity) of Science (University of Pittsburgh Press, 2017), Stephanie Ruphy untangles and examines a number of different issues within the pluralist camp. Ruphy, who is professor of philosophy at Universite Grenoble-Alpes, argues for a “foliated pluralism” in ontology and for the relativity of knowledge claims and our representations of the world to historical features and epistemic interests. She also critically examines anti-reductionist arguments in terms of the generality of their conclusions and whether they support the inference from disunity to disorder.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 15 Mar 2017 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The idea that the sciences can’t be unified–that there will never be a single ‘theory of everything’–is the current orthodoxy in philosophy of science and in many sciences as well. But different versions of pluralism present very different views of wha...</itunes:subtitle>
      <itunes:summary>The idea that the sciences can’t be unified–that there will never be a single ‘theory of everything’–is the current orthodoxy in philosophy of science and in many sciences as well. But different versions of pluralism present very different views of what exactly they are pluralistic about, why sciences cannot be unified, and what the failure of unification entails about the world and about our knowledge of it. In Scientific Pluralism Reconsidered: A New Approach to the Dis(unity) of Science (University of Pittsburgh Press, 2017), Stephanie Ruphy untangles and examines a number of different issues within the pluralist camp. Ruphy, who is professor of philosophy at Universite Grenoble-Alpes, argues for a “foliated pluralism” in ontology and for the relativity of knowledge claims and our representations of the world to historical features and epistemic interests. She also critically examines anti-reductionist arguments in terms of the generality of their conclusions and whether they support the inference from disunity to disorder.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The idea that the sciences can’t be unified–that there will never be a single ‘theory of everything’–is the current orthodoxy in philosophy of science and in many sciences as well. But different versions of pluralism present very different views of what exactly they are pluralistic about, why sciences cannot be unified, and what the failure of unification entails about the world and about our knowledge of it. In<a href="http://www.amazon.com/dp/0822944588/?tag=newbooinhis-20"> Scientific Pluralism Reconsidered: A New Approach to the Dis(unity) of Science</a> (University of Pittsburgh Press, 2017), <a href="http://stephanieruphy.com/">Stephanie Ruphy</a> untangles and examines a number of different issues within the pluralist camp. Ruphy, who is professor of philosophy at Universite Grenoble-Alpes, argues for a “foliated pluralism” in ontology and for the relativity of knowledge claims and our representations of the world to historical features and epistemic interests. She also critically examines anti-reductionist arguments in terms of the generality of their conclusions and whether they support the inference from disunity to disorder.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4003</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=62932]]></guid>
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    <item>
      <title>Meredith K. Ray, “Margherita Sarrocchi’s Letters to Galileo: Astronomy, Astrology, and Poetics in 17th-Century Italy” (Palgrave Macmillan, 2016)</title>
      <description>Meredith K. Ray’s new book contextualizes and translates a range of seventeenth-century letters, mostly between Margherita Sarrocchi (1560-1617) and Galileo Galilei (1564-1642), that collectively offer a fascinating window into the correspondence of two brilliant early modern writers and intellectuals. Margherita Sarrocchi’s Letters to Galileo: Astronomy, Astrology, and Poetics in Seventeenth-Century Italy (Palgrave Macmillan, 2016) traces the relationship between Sarrocchi, a Naples-born writer, famous for her salons and for writing an epic poem that emphasized the significance of women as knowers of the natural world, with Galileo. The letters feature three major themes: Sarrocchi consulting Galileo for writerly advice as she revised her epic poem, Sarrocchi’s efforts to defend Galileo’s discoveries to the scientific community in Italy, and Sarrocchi and Galileo’s shared interest in judicial astrology and natal charts or nativities. The slim volume will be a resource not just for readers and researchers but also for classroom discussion, where the letters could serve as great primary sources to feature in a number of course contexts. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 13 Mar 2017 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/f109c1c6-5dcc-11ec-861a-a3614fe0d876/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>Meredith K. Ray’s new book contextualizes and translates a range of seventeenth-century letters, mostly between Margherita Sarrocchi (1560-1617) and Galileo Galilei (1564-1642), that collectively offer a fascinating window into the correspondence of tw...</itunes:subtitle>
      <itunes:summary>Meredith K. Ray’s new book contextualizes and translates a range of seventeenth-century letters, mostly between Margherita Sarrocchi (1560-1617) and Galileo Galilei (1564-1642), that collectively offer a fascinating window into the correspondence of two brilliant early modern writers and intellectuals. Margherita Sarrocchi’s Letters to Galileo: Astronomy, Astrology, and Poetics in Seventeenth-Century Italy (Palgrave Macmillan, 2016) traces the relationship between Sarrocchi, a Naples-born writer, famous for her salons and for writing an epic poem that emphasized the significance of women as knowers of the natural world, with Galileo. The letters feature three major themes: Sarrocchi consulting Galileo for writerly advice as she revised her epic poem, Sarrocchi’s efforts to defend Galileo’s discoveries to the scientific community in Italy, and Sarrocchi and Galileo’s shared interest in judicial astrology and natal charts or nativities. The slim volume will be a resource not just for readers and researchers but also for classroom discussion, where the letters could serve as great primary sources to feature in a number of course contexts. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://www.dllc.udel.edu/staff-members/meredith-k-ray/">Meredith K. Ray’s</a> new book contextualizes and translates a range of seventeenth-century letters, mostly between Margherita Sarrocchi (1560-1617) and Galileo Galilei (1564-1642), that collectively offer a fascinating window into the correspondence of two brilliant early modern writers and intellectuals. <a href="http://www.amazon.com/dp/1137597690/?tag=newbooinhis-20">Margherita Sarrocchi’s Letters to Galileo: Astronomy, Astrology, and Poetics in Seventeenth-Century Italy </a>(Palgrave Macmillan, 2016) traces the relationship between Sarrocchi, a Naples-born writer, famous for her salons and for writing an epic poem that emphasized the significance of women as knowers of the natural world, with Galileo. The letters feature three major themes: Sarrocchi consulting Galileo for writerly advice as she revised her epic poem, Sarrocchi’s efforts to defend Galileo’s discoveries to the scientific community in Italy, and Sarrocchi and Galileo’s shared interest in judicial astrology and natal charts or nativities. The slim volume will be a resource not just for readers and researchers but also for classroom discussion, where the letters could serve as great primary sources to feature in a number of course contexts. Enjoy!</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3670</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=63004]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2837114416.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Ian Stewart, “Calculating the Cosmos: How Mathematics Unveils the Universe” (Basic Books, 2016)</title>
      <description>The book discussed here is Ian Stewart’s Calculating the Cosmos: How Mathematics Unveils the Universe (Basic Books, 2016). If you would like to read a book that in my opinion represents the nicest job of presenting astronomy and cosmology in one volume since Isaac Asimov wrote The Universe half a century ago, this is absolutely the one to get. In addition, for those of us who are lovers of math, this book does a far better job than Asimov of presenting the close relationship between mathematics, astronomy, and cosmology.
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      <pubDate>Thu, 29 Dec 2016 12:45:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The book discussed here is Ian Stewart’s Calculating the Cosmos: How Mathematics Unveils the Universe (Basic Books, 2016). If you would like to read a book that in my opinion represents the nicest job of presenting astronomy and cosmology in one volume...</itunes:subtitle>
      <itunes:summary>The book discussed here is Ian Stewart’s Calculating the Cosmos: How Mathematics Unveils the Universe (Basic Books, 2016). If you would like to read a book that in my opinion represents the nicest job of presenting astronomy and cosmology in one volume since Isaac Asimov wrote The Universe half a century ago, this is absolutely the one to get. In addition, for those of us who are lovers of math, this book does a far better job than Asimov of presenting the close relationship between mathematics, astronomy, and cosmology.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The book discussed here is <a href="https://www2.warwick.ac.uk/fac/sci/maths/people/staff/ian_stewart/">Ian Stewart’s</a> <a href="http://www.amazon.com/dp/1781257183/?tag=newbooinhis-20">Calculating the Cosmos: How Mathematics Unveils the Universe </a>(Basic Books, 2016). If you would like to read a book that in my opinion represents the nicest job of presenting astronomy and cosmology in one volume since Isaac Asimov wrote The Universe half a century ago, this is absolutely the one to get. In addition, for those of us who are lovers of math, this book does a far better job than Asimov of presenting the close relationship between mathematics, astronomy, and cosmology.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3250</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=62014]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1910079105.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>J.D. Trout, “Wondrous Truths: The Improbable Triumph of Modern Science” (Oxford UP, 2016)</title>
      <description>The social practice we call science has had spectacular success in explaining the natural world since the 17th century. While advanced mathematics and other precursors of modern science were not unique to Europe, it was there that Isaac Newton, Robert Boyle, and others came up with theories that got modern physics and chemistry off the ground. In his latest book, Wondrous Truths: The Improbable Triumph of Modern Science (Oxford University Press, 2016), J.D. Trout mounts a spirited defense of the claim that the best explanation of the rise of science in 17th Century Europe is that Newton and others got lucky; among other serendipitous factors, they happened to come up with versions of preexisting ideas that were just right enough to explain just enough of the world, and that was enough to get the ball rolling.
Trout, who is Professor of Philosophy and Psychology at Loyola University in Chicago, defends the scientific realist view that scientific theories are successful because they are by and large true, not just predictively accurate. He also sharply distinguishes the psychology of explanation–the Aha! feeling of understanding–from the truth of an explanation. On his ontic view of explanation, we can experience being satisfied with bad (false) explanations, and there are true theories we may never understand.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 15 Oct 2016 10:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The social practice we call science has had spectacular success in explaining the natural world since the 17th century. While advanced mathematics and other precursors of modern science were not unique to Europe, it was there that Isaac Newton,</itunes:subtitle>
      <itunes:summary>The social practice we call science has had spectacular success in explaining the natural world since the 17th century. While advanced mathematics and other precursors of modern science were not unique to Europe, it was there that Isaac Newton, Robert Boyle, and others came up with theories that got modern physics and chemistry off the ground. In his latest book, Wondrous Truths: The Improbable Triumph of Modern Science (Oxford University Press, 2016), J.D. Trout mounts a spirited defense of the claim that the best explanation of the rise of science in 17th Century Europe is that Newton and others got lucky; among other serendipitous factors, they happened to come up with versions of preexisting ideas that were just right enough to explain just enough of the world, and that was enough to get the ball rolling.
Trout, who is Professor of Philosophy and Psychology at Loyola University in Chicago, defends the scientific realist view that scientific theories are successful because they are by and large true, not just predictively accurate. He also sharply distinguishes the psychology of explanation–the Aha! feeling of understanding–from the truth of an explanation. On his ontic view of explanation, we can experience being satisfied with bad (false) explanations, and there are true theories we may never understand.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The social practice we call science has had spectacular success in explaining the natural world since the 17th century. While advanced mathematics and other precursors of modern science were not unique to Europe, it was there that Isaac Newton, Robert Boyle, and others came up with theories that got modern physics and chemistry off the ground. In his latest book, <a href="http://www.amazon.com/dp/0199385076/?tag=newbooinhis-20">Wondrous Truths: The Improbable Triumph of Modern Science</a> (Oxford University Press, 2016), <a href="https://sites.google.com/site/jdtrout1/">J.D. Trout</a> mounts a spirited defense of the claim that the best explanation of the rise of science in 17th Century Europe is that Newton and others got lucky; among other serendipitous factors, they happened to come up with versions of preexisting ideas that were just right enough to explain just enough of the world, and that was enough to get the ball rolling.</p><p>Trout, who is Professor of Philosophy and Psychology at Loyola University in Chicago, defends the scientific realist view that scientific theories are successful because they are by and large true, not just predictively accurate. He also sharply distinguishes the psychology of explanation–the Aha! feeling of understanding–from the truth of an explanation. On his ontic view of explanation, we can experience being satisfied with bad (false) explanations, and there are true theories we may never understand.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4233</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=60818]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9140722508.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Margaret Morrison, “Reconstructing Reality: Models, Mathematics, and Simulations” (Oxford UP, 2015)</title>
      <description>Almost 400 years ago, Galileo wrote that the book of nature is written in the language of mathematics. Today, mathematics is integral to physics and chemistry, and is becoming so in biology, economics, and other sciences, although amid great controversy. The messy reality of biological creatures and their social relations cannot be captured in mathematical models or computer simulations, it is argued. But what is the relation between mathematics and physical reality? Do highly abstract mathematical formalisms and computer simulations yield empirical knowledge? If so, when, and how? In Reconstructing Reality: Models, Mathematics and Simulations (Oxford University Press, 2015), Margaret Morrison, Professor of philosophy at the University of Toronto, considers the epistemological status of the results of modeling and simulation as compared, and typically contrasted with, the results of experiment. She argues that no sharp distinction between simulating the world and measuring the world can be drawn in modern science, and that there is no justification for epistemically privileging the results of experiments over the new knowledge we derive from idealizations, abstractions, and fictional models.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 15 Jul 2015 06:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Almost 400 years ago, Galileo wrote that the book of nature is written in the language of mathematics. Today, mathematics is integral to physics and chemistry, and is becoming so in biology, economics, and other sciences,</itunes:subtitle>
      <itunes:summary>Almost 400 years ago, Galileo wrote that the book of nature is written in the language of mathematics. Today, mathematics is integral to physics and chemistry, and is becoming so in biology, economics, and other sciences, although amid great controversy. The messy reality of biological creatures and their social relations cannot be captured in mathematical models or computer simulations, it is argued. But what is the relation between mathematics and physical reality? Do highly abstract mathematical formalisms and computer simulations yield empirical knowledge? If so, when, and how? In Reconstructing Reality: Models, Mathematics and Simulations (Oxford University Press, 2015), Margaret Morrison, Professor of philosophy at the University of Toronto, considers the epistemological status of the results of modeling and simulation as compared, and typically contrasted with, the results of experiment. She argues that no sharp distinction between simulating the world and measuring the world can be drawn in modern science, and that there is no justification for epistemically privileging the results of experiments over the new knowledge we derive from idealizations, abstractions, and fictional models.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Almost 400 years ago, Galileo wrote that the book of nature is written in the language of mathematics. Today, mathematics is integral to physics and chemistry, and is becoming so in biology, economics, and other sciences, although amid great controversy. The messy reality of biological creatures and their social relations cannot be captured in mathematical models or computer simulations, it is argued. But what is the relation between mathematics and physical reality? Do highly abstract mathematical formalisms and computer simulations yield empirical knowledge? If so, when, and how? In <a href="http://www.amazon.com/dp/0199380279/?tag=newbooinhis-20">Reconstructing Reality: Models, Mathematics and Simulations</a> (Oxford University Press, 2015), <a href="http://www.philosophy.utoronto.ca/directory/margaret-morrison/">Margaret Morrison</a>, Professor of philosophy at the University of Toronto, considers the epistemological status of the results of modeling and simulation as compared, and typically contrasted with, the results of experiment. She argues that no sharp distinction between simulating the world and measuring the world can be drawn in modern science, and that there is no justification for epistemically privileging the results of experiments over the new knowledge we derive from idealizations, abstractions, and fictional models.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4110</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksinmath.com/2015/07/15/margaret-morrison-reconstructing-reality-models-mathematics-and-simulations-oxford-up-2015/]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2189074744.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Meredith K. Ray, “Daughters of Alchemy: Women and Scientific Culture in Early Modern Italy” (Harvard UP, 2015)</title>
      <description>According to sixteenth-century writer Moderata Fonte, the untapped potential of women to contribute to the liberal arts was “buried gold.” Exploring the work of Fonte and that of many other incredible women, Meredith K. Ray‘s new book explores women’s contributions to the landscape of scientific culture in early modern Italy from about 1500 to 1623. Women in this period were engaging with science in the home, at court, in vernacular literature, in academies, in salons, and in letters, and Daughters of Alchemy: Women and Scientific Culture in Early Modern Italy (Harvard University Press, 2015) looks both at women’s practical engagements with science and with their literary engagements with natural philosophy.
Ch. 1 brings us to the Romagna, and to the formidable Caterina Sforza’s experiments with alchemical recipes as compiled in a manuscript that exists today in only a single manuscript copy. Both recipes and secrets were forms of currency in this context, and Ch. 2 looks at the vogue for printed “books of secrets” in sixteenth century Italy. This chapter pays special attention to the influential Secrets of Alexis of Piedmont (1555) and the Secrets of Signora Isabella Cortese, while also exploring the influence of books of secrets on other early modern literary genres including vernacular treatises, dialogues, and letter collections. Ch. 3 look at the literature of debate over women, or querelle des femmes that flourished in the sixteenth and seventeenth centuries, looking particularly closely at the intertwining discourses about women and science in Moderata Fonte’s writing of chivalric romance and dialogue, and in Lucrezia Marinella’s epic poetry and pastoral writing. Ch. 4 moves us to Padua and Rome, where women had begun, by the early seventeenth century, to participate in scientific discourse in more formal ways. Here, Ray looks closely at Camilla Erculiani’s letters on natural philosophy (1584) that defended women’s aptitude for science, and at her networking with scientific communities in Poland and her eventual questioning by the Inquisition. The chapter then turns to Margherita Sarrocchi’s work, her epic poem Scanderbeide, and her fascinating relationship with Galileo. It is a fascinating book that will be of interest to readers eager to learn more about the history of science, literature, and/or women in early modernity. If you listen closely to the interview, you’ll also hear me comparing Caterina Sforza to Doritos. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 08 Jul 2015 15:12:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/e12145cc-5dcc-11ec-abab-f7d12afcc43d/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>According to sixteenth-century writer Moderata Fonte, the untapped potential of women to contribute to the liberal arts was “buried gold.” Exploring the work of Fonte and that of many other incredible women, Meredith K.</itunes:subtitle>
      <itunes:summary>According to sixteenth-century writer Moderata Fonte, the untapped potential of women to contribute to the liberal arts was “buried gold.” Exploring the work of Fonte and that of many other incredible women, Meredith K. Ray‘s new book explores women’s contributions to the landscape of scientific culture in early modern Italy from about 1500 to 1623. Women in this period were engaging with science in the home, at court, in vernacular literature, in academies, in salons, and in letters, and Daughters of Alchemy: Women and Scientific Culture in Early Modern Italy (Harvard University Press, 2015) looks both at women’s practical engagements with science and with their literary engagements with natural philosophy.
Ch. 1 brings us to the Romagna, and to the formidable Caterina Sforza’s experiments with alchemical recipes as compiled in a manuscript that exists today in only a single manuscript copy. Both recipes and secrets were forms of currency in this context, and Ch. 2 looks at the vogue for printed “books of secrets” in sixteenth century Italy. This chapter pays special attention to the influential Secrets of Alexis of Piedmont (1555) and the Secrets of Signora Isabella Cortese, while also exploring the influence of books of secrets on other early modern literary genres including vernacular treatises, dialogues, and letter collections. Ch. 3 look at the literature of debate over women, or querelle des femmes that flourished in the sixteenth and seventeenth centuries, looking particularly closely at the intertwining discourses about women and science in Moderata Fonte’s writing of chivalric romance and dialogue, and in Lucrezia Marinella’s epic poetry and pastoral writing. Ch. 4 moves us to Padua and Rome, where women had begun, by the early seventeenth century, to participate in scientific discourse in more formal ways. Here, Ray looks closely at Camilla Erculiani’s letters on natural philosophy (1584) that defended women’s aptitude for science, and at her networking with scientific communities in Poland and her eventual questioning by the Inquisition. The chapter then turns to Margherita Sarrocchi’s work, her epic poem Scanderbeide, and her fascinating relationship with Galileo. It is a fascinating book that will be of interest to readers eager to learn more about the history of science, literature, and/or women in early modernity. If you listen closely to the interview, you’ll also hear me comparing Caterina Sforza to Doritos. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>According to sixteenth-century writer Moderata Fonte, the untapped potential of women to contribute to the liberal arts was “buried gold.” Exploring the work of Fonte and that of many other incredible women, <a href="http://www.udel.edu/fllt/main/Personnel/ActiveFaculty/mkray.html">Meredith K. Ray</a>‘s new book explores women’s contributions to the landscape of scientific culture in early modern Italy from about 1500 to 1623. Women in this period were engaging with science in the home, at court, in vernacular literature, in academies, in salons, and in letters, and<a href="http://www.amazon.com/dp/0674504232/?tag=newbooinhis-20"> Daughters of Alchemy: Women and Scientific Culture in Early Modern Italy</a> (Harvard University Press, 2015) looks both at women’s practical engagements with science and with their literary engagements with natural philosophy.</p><p>Ch. 1 brings us to the Romagna, and to the formidable Caterina Sforza’s experiments with alchemical recipes as compiled in a manuscript that exists today in only a single manuscript copy. Both recipes and secrets were forms of currency in this context, and Ch. 2 looks at the vogue for printed “books of secrets” in sixteenth century Italy. This chapter pays special attention to the influential Secrets of Alexis of Piedmont (1555) and the Secrets of Signora Isabella Cortese, while also exploring the influence of books of secrets on other early modern literary genres including vernacular treatises, dialogues, and letter collections. Ch. 3 look at the literature of debate over women, or querelle des femmes that flourished in the sixteenth and seventeenth centuries, looking particularly closely at the intertwining discourses about women and science in Moderata Fonte’s writing of chivalric romance and dialogue, and in Lucrezia Marinella’s epic poetry and pastoral writing. Ch. 4 moves us to Padua and Rome, where women had begun, by the early seventeenth century, to participate in scientific discourse in more formal ways. Here, Ray looks closely at Camilla Erculiani’s letters on natural philosophy (1584) that defended women’s aptitude for science, and at her networking with scientific communities in Poland and her eventual questioning by the Inquisition. The chapter then turns to Margherita Sarrocchi’s work, her epic poem Scanderbeide, and her fascinating relationship with Galileo. It is a fascinating book that will be of interest to readers eager to learn more about the history of science, literature, and/or women in early modernity. If you listen closely to the interview, you’ll also hear me comparing Caterina Sforza to Doritos. Enjoy!</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3698</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksineuropeanstudies.com/2015/07/08/meredith-k-ray-daughters-of-alchemy-women-and-scientific-culture-in-early-modern-italy-harvard-up-2015/]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN5792856624.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Tom McLeish, “Faith and Wisdom in Science” (Oxford UP, 2014)</title>
      <description>Much of the public debate about the relationship between science and theology has been antagonistic or adversarial. Proponents on both sides argue that their respective claims are contradictory–that the claims of science trump and even discredit the claims of religion or theology. Some have sought to portray the relationship in a different light. The evolutionary biologist Stephen J. Gould famously asserted that the two realms were “nonoverlapping magisteria.” But recently theologians and scientists have begun to mark out new ground for robust conversation.
Tom McLeish‘s book Faith and Wisdom in Science (Oxford University Press, 2014) takes this conversation to new heights. Locating the impulse for science in much biblical literature, particularly the wisdom books of the Hebrew Bible, he shows how one might understand science as a theological endeavor. Rather than a paradigm of “science and theology,” he posits a “theology of science,” an interrelationship that not only gives us new eyes with which to read the history of science more coherently but also yields a renewed appreciation for science as part of a “ministry of reconciliation” with the natural world and the causes of human suffering.
Tom McLeish is Professor of Physics and former Pro-Vice-Chancellor for Research at Durham University. He studied for his first degree and PhD in polymer physics at the University of Cambridge and in 1987 became a lecturer in physics at the University of Sheffield. In 1993 he took the chair in polymer physics at the University of Leeds. He took up his current position in Durham in 2008. He is a fellow of the Institute of Physics, the Royal Society of Chemistry, the American Physical Society, and the Royal Society. He is also involved in science communication with the public via radio, television, and school lectures, discussing topics ranging from the physics of slime to the interaction of faith and science.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 22 May 2015 16:35:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Much of the public debate about the relationship between science and theology has been antagonistic or adversarial. Proponents on both sides argue that their respective claims are contradictory–that the claims of science trump and even discredit the cl...</itunes:subtitle>
      <itunes:summary>Much of the public debate about the relationship between science and theology has been antagonistic or adversarial. Proponents on both sides argue that their respective claims are contradictory–that the claims of science trump and even discredit the claims of religion or theology. Some have sought to portray the relationship in a different light. The evolutionary biologist Stephen J. Gould famously asserted that the two realms were “nonoverlapping magisteria.” But recently theologians and scientists have begun to mark out new ground for robust conversation.
Tom McLeish‘s book Faith and Wisdom in Science (Oxford University Press, 2014) takes this conversation to new heights. Locating the impulse for science in much biblical literature, particularly the wisdom books of the Hebrew Bible, he shows how one might understand science as a theological endeavor. Rather than a paradigm of “science and theology,” he posits a “theology of science,” an interrelationship that not only gives us new eyes with which to read the history of science more coherently but also yields a renewed appreciation for science as part of a “ministry of reconciliation” with the natural world and the causes of human suffering.
Tom McLeish is Professor of Physics and former Pro-Vice-Chancellor for Research at Durham University. He studied for his first degree and PhD in polymer physics at the University of Cambridge and in 1987 became a lecturer in physics at the University of Sheffield. In 1993 he took the chair in polymer physics at the University of Leeds. He took up his current position in Durham in 2008. He is a fellow of the Institute of Physics, the Royal Society of Chemistry, the American Physical Society, and the Royal Society. He is also involved in science communication with the public via radio, television, and school lectures, discussing topics ranging from the physics of slime to the interaction of faith and science.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Much of the public debate about the relationship between science and theology has been antagonistic or adversarial. Proponents on both sides argue that their respective claims are contradictory–that the claims of science trump and even discredit the claims of religion or theology. Some have sought to portray the relationship in a different light. The evolutionary biologist Stephen J. Gould famously asserted that the two realms were “nonoverlapping magisteria.” But recently theologians and scientists have begun to mark out new ground for robust conversation.</p><p><a href="https://www.dur.ac.uk/physics/staff/profiles/?id=6691">Tom McLeish</a>‘s book <a href="http://www.amazon.com/dp/0198702612/?tag=newbooinhis-20">Faith and Wisdom in Science</a> (Oxford University Press, 2014) takes this conversation to new heights. Locating the impulse for science in much biblical literature, particularly the wisdom books of the Hebrew Bible, he shows how one might understand science as a theological endeavor. Rather than a paradigm of “science and theology,” he posits a “theology of science,” an interrelationship that not only gives us new eyes with which to read the history of science more coherently but also yields a renewed appreciation for science as part of a “ministry of reconciliation” with the natural world and the causes of human suffering.</p><p>Tom McLeish is Professor of Physics and former Pro-Vice-Chancellor for Research at Durham University. He studied for his first degree and PhD in polymer physics at the University of Cambridge and in 1987 became a lecturer in physics at the University of Sheffield. In 1993 he took the chair in polymer physics at the University of Leeds. He took up his current position in Durham in 2008. He is a fellow of the Institute of Physics, the Royal Society of Chemistry, the American Physical Society, and the Royal Society. He is also involved in science communication with the public via radio, television, and school lectures, discussing topics ranging from the physics of slime to the interaction of faith and science.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3072</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/biblicalstudies/?p=35]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3215319428.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>A. Mark Smith, “From Sight to Light: The Passage from Ancient to Modern Optics” (U of Chicago Press, 2015)</title>
      <description>A. Mark Smith‘s new book is a magisterial history of optics over the course of two millennia. From Sight to Light: The Passage from Ancient to Modern Optics (University of Chicago Press, 2015) suggests that the transition from ancient toward modern optics was accompanied by a turn in optical studies from a concern with explaining sight to a focus on light by optical scholars. The book argues that Kepler’s theory of retinal imaging was instrumental in this turn. In the course of an amazingly comprehensive narrative of optical studies from Aristotle through the seventeenth century, From Sight to Light offers clear and persuasive discussions of the historical understanding of color and of visual illusions, the use of mirrors as optical devices, the relationships between physical and psychological theories of visual perception, and the study of reflection and refraction. Smith pays special attention to explaining the mathematical bases of optical theories, and he highlights the formative role that Arabic scientists and translation played in the history of optics. This is a must-read for anyone interested in the history of sight, vision, light, and the study thereof
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sat, 21 Mar 2015 11:19:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/08975788-5db7-11ec-bd39-97b72732fe65/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>A. Mark Smith‘s new book is a magisterial history of optics over the course of two millennia. From Sight to Light: The Passage from Ancient to Modern Optics (University of Chicago Press, 2015) suggests that the transition from ancient toward modern opt...</itunes:subtitle>
      <itunes:summary>A. Mark Smith‘s new book is a magisterial history of optics over the course of two millennia. From Sight to Light: The Passage from Ancient to Modern Optics (University of Chicago Press, 2015) suggests that the transition from ancient toward modern optics was accompanied by a turn in optical studies from a concern with explaining sight to a focus on light by optical scholars. The book argues that Kepler’s theory of retinal imaging was instrumental in this turn. In the course of an amazingly comprehensive narrative of optical studies from Aristotle through the seventeenth century, From Sight to Light offers clear and persuasive discussions of the historical understanding of color and of visual illusions, the use of mirrors as optical devices, the relationships between physical and psychological theories of visual perception, and the study of reflection and refraction. Smith pays special attention to explaining the mathematical bases of optical theories, and he highlights the formative role that Arabic scientists and translation played in the history of optics. This is a must-read for anyone interested in the history of sight, vision, light, and the study thereof
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://history.missouri.edu/people/smith.html">A. Mark Smith</a>‘s new book is a magisterial history of optics over the course of two millennia. <a href="http://www.amazon.com/dp/022617476X/?tag=newbooinhis-20">From Sight to Light: The Passage from Ancient to Modern Optics </a>(University of Chicago Press, 2015) suggests that the transition from ancient toward modern optics was accompanied by a turn in optical studies from a concern with explaining sight to a focus on light by optical scholars. The book argues that Kepler’s theory of retinal imaging was instrumental in this turn. In the course of an amazingly comprehensive narrative of optical studies from Aristotle through the seventeenth century, From Sight to Light offers clear and persuasive discussions of the historical understanding of color and of visual illusions, the use of mirrors as optical devices, the relationships between physical and psychological theories of visual perception, and the study of reflection and refraction. Smith pays special attention to explaining the mathematical bases of optical theories, and he highlights the formative role that Arabic scientists and translation played in the history of optics. This is a must-read for anyone interested in the history of sight, vision, light, and the study thereof</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3745</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksinclassics.com/2015/03/21/a-mark-smith-from-sight-to-light-the-passage-from-ancient-to-modern-optics-u-of-chicago-press-2015/]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3620695791.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Rick Strassman, “DMT and the Soul of Prophecy” (Park Street Press, 2014)</title>
      <description>DMT and the Soul of Prophecy:A New Science of Spiritual Revelation in the Hebrew Bible (Park Street Press, 2014) asks a number of provocative questions about drugs, consciousness, prophecy, and the Hebrew Bible–with attention to how a particular chemical can help us understand mystical experience. DMT (dimethyltryptamine) is a molecule endogenous to several mammals including humans, as well as the active psychedelic ingredient in a number of plant species around the world–most notably in an Amazonian brew called ayahuasca. Rick Strassman‘s first book, DMT: The Spirit Molecule, showcases his research in the 1990s at the University of New Mexico, during which he injected several volunteers with DMT as part of a government-sanctioned research project. During the trials, volunteers experienced a number of similar phenomena, such as communication with other-than-human beings, out-of-body experiences, and geometrically complex closed-eye visuals. DMT and the Soul of Prophecy complements Strassman’s first book, but it also stands on its own and gives enough context of his DMT research to make sense of his arguments about prophecy in the Hebrew Bible. The new monograph aims to further interpret the data from Strassman’s experiments in the 90s, by arguing that the notion of prophecy in the Hebrew Bible offers a compelling model for what happens in the DMT state. One might ask, then, if the Hebrew prophets were affected by DMT. Although it’s not possible to know for sure, and Strassman doesn’t claim that they were, he nonetheless draws significant parallels between DMT experiences and prophetic states in the Hebrew Bible. At the cross-section of biology, psychology, and religious studies, Strassman’s monograph is sure to spark provocative conversations about the relationship between religion, drugs, and the politics of research.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Sun, 15 Mar 2015 06:01:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>DMT and the Soul of Prophecy:A New Science of Spiritual Revelation in the Hebrew Bible (Park Street Press, 2014) asks a number of provocative questions about drugs, consciousness, prophecy, and the Hebrew Bible–with attention to how a particular chemic...</itunes:subtitle>
      <itunes:summary>DMT and the Soul of Prophecy:A New Science of Spiritual Revelation in the Hebrew Bible (Park Street Press, 2014) asks a number of provocative questions about drugs, consciousness, prophecy, and the Hebrew Bible–with attention to how a particular chemical can help us understand mystical experience. DMT (dimethyltryptamine) is a molecule endogenous to several mammals including humans, as well as the active psychedelic ingredient in a number of plant species around the world–most notably in an Amazonian brew called ayahuasca. Rick Strassman‘s first book, DMT: The Spirit Molecule, showcases his research in the 1990s at the University of New Mexico, during which he injected several volunteers with DMT as part of a government-sanctioned research project. During the trials, volunteers experienced a number of similar phenomena, such as communication with other-than-human beings, out-of-body experiences, and geometrically complex closed-eye visuals. DMT and the Soul of Prophecy complements Strassman’s first book, but it also stands on its own and gives enough context of his DMT research to make sense of his arguments about prophecy in the Hebrew Bible. The new monograph aims to further interpret the data from Strassman’s experiments in the 90s, by arguing that the notion of prophecy in the Hebrew Bible offers a compelling model for what happens in the DMT state. One might ask, then, if the Hebrew prophets were affected by DMT. Although it’s not possible to know for sure, and Strassman doesn’t claim that they were, he nonetheless draws significant parallels between DMT experiences and prophetic states in the Hebrew Bible. At the cross-section of biology, psychology, and religious studies, Strassman’s monograph is sure to spark provocative conversations about the relationship between religion, drugs, and the politics of research.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://www.amazon.com/dp/1594773424/?tag=newbooinhis-20">DMT and the Soul of Prophecy:A New Science of Spiritual Revelation in the Hebrew Bible </a>(Park Street Press, 2014) asks a number of provocative questions about drugs, consciousness, prophecy, and the Hebrew Bible–with attention to how a particular chemical can help us understand mystical experience. DMT (dimethyltryptamine) is a molecule endogenous to several mammals including humans, as well as the active psychedelic ingredient in a number of plant species around the world–most notably in an Amazonian brew called ayahuasca. <a href="http://www.rickstrassman.com/">Rick Strassman</a>‘s first book, DMT: The Spirit Molecule, showcases his research in the 1990s at the University of New Mexico, during which he injected several volunteers with DMT as part of a government-sanctioned research project. During the trials, volunteers experienced a number of similar phenomena, such as communication with other-than-human beings, out-of-body experiences, and geometrically complex closed-eye visuals. DMT and the Soul of Prophecy complements Strassman’s first book, but it also stands on its own and gives enough context of his DMT research to make sense of his arguments about prophecy in the Hebrew Bible. The new monograph aims to further interpret the data from Strassman’s experiments in the 90s, by arguing that the notion of prophecy in the Hebrew Bible offers a compelling model for what happens in the DMT state. One might ask, then, if the Hebrew prophets were affected by DMT. Although it’s not possible to know for sure, and Strassman doesn’t claim that they were, he nonetheless draws significant parallels between DMT experiences and prophetic states in the Hebrew Bible. At the cross-section of biology, psychology, and religious studies, Strassman’s monograph is sure to spark provocative conversations about the relationship between religion, drugs, and the politics of research.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5121</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksinchristianstudies.com/2015/03/15/rick-strassman-dmt-and-the-soul-of-prophecy-park-street-press-2014/]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN5853434962.mp3?updated=1543454106" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>William Sheehan and Christopher Conselice, “Galactic Encounters” (Springer, 2014)</title>
      <description>Galactic Encounters: Our Majestic and Evolving Star-System, From the Big Bang to Time’s End, by William Sheehan and Christopher Conselice, takes readers on a journey through time, unfolding the long history of investigation into the fuzzy objects–nebulae, galaxies, dust clouds–in the night sky. This book will be of interest to...
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      <pubDate>Mon, 12 Jan 2015 06:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Galactic Encounters: Our Majestic and Evolving Star-System, From the Big Bang to Time’s End, by William Sheehan and Christopher Conselice, takes readers on a journey through time, unfolding the long history of investigation into the fuzzy objects–nebul...</itunes:subtitle>
      <itunes:summary>Galactic Encounters: Our Majestic and Evolving Star-System, From the Big Bang to Time’s End, by William Sheehan and Christopher Conselice, takes readers on a journey through time, unfolding the long history of investigation into the fuzzy objects–nebulae, galaxies, dust clouds–in the night sky. This book will be of interest to...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Galactic Encounters: Our Majestic and Evolving Star-System, From the Big Bang to Time’s End, by William Sheehan and Christopher Conselice, takes readers on a journey through time, unfolding the long history of investigation into the fuzzy objects–nebulae, galaxies, dust clouds–in the night sky. This book will be of interest to...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4011</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/astronomy/?p=86]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN5910663429.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>David A. Rothery, “Planet Mercury: From Pale Pink Dot to Dynamic World” (Springer, 2014)</title>
      <description>Planet Mercury: From Pale Pink Dot to Dynamic World (Springer, 2014) by David A. Rothery, introduces the innermost planet in our solar system and brings readers up to speed on recent spacecraft discoveries and the unsolved mysteries of Mercury. From Mariner 10 in the 1970s to NASA’s (Mercury Surface, Space...
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      <pubDate>Sun, 28 Dec 2014 18:57:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Planet Mercury: From Pale Pink Dot to Dynamic World (Springer, 2014) by David A. Rothery, introduces the innermost planet in our solar system and brings readers up to speed on recent spacecraft discoveries and the unsolved mysteries of Mercury.</itunes:subtitle>
      <itunes:summary>Planet Mercury: From Pale Pink Dot to Dynamic World (Springer, 2014) by David A. Rothery, introduces the innermost planet in our solar system and brings readers up to speed on recent spacecraft discoveries and the unsolved mysteries of Mercury. From Mariner 10 in the 1970s to NASA’s (Mercury Surface, Space...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Planet Mercury: From Pale Pink Dot to Dynamic World (Springer, 2014) by David A. Rothery, introduces the innermost planet in our solar system and brings readers up to speed on recent spacecraft discoveries and the unsolved mysteries of Mercury. From Mariner 10 in the 1970s to NASA’s (Mercury Surface, Space...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4175</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/astronomy/?p=70]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9356012160.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Vera Kolb, “Astrobiology: An Evolutionary Approach” (CRC Press, 2014)</title>
      <description>Astrobiology: An Evolutionary Approach (CRC Press, 2014) is a new volume edited by Dr. Vera Kolb that brings together 37 authors from a variety of different research backgrounds to introduce this rapidly developing interdisciplinary field. Anyone coming to the book with questions about the origin or possible manifestations of life...
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      <pubDate>Thu, 11 Dec 2014 16:04:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Astrobiology: An Evolutionary Approach (CRC Press, 2014) is a new volume edited by Dr. Vera Kolb that brings together 37 authors from a variety of different research backgrounds to introduce this rapidly developing interdisciplinary field.</itunes:subtitle>
      <itunes:summary>Astrobiology: An Evolutionary Approach (CRC Press, 2014) is a new volume edited by Dr. Vera Kolb that brings together 37 authors from a variety of different research backgrounds to introduce this rapidly developing interdisciplinary field. Anyone coming to the book with questions about the origin or possible manifestations of life...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Astrobiology: An Evolutionary Approach (CRC Press, 2014) is a new volume edited by Dr. Vera Kolb that brings together 37 authors from a variety of different research backgrounds to introduce this rapidly developing interdisciplinary field. Anyone coming to the book with questions about the origin or possible manifestations of life...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3699</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/astronomy/?p=59]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN7051598333.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Lawrence Lipking, “What Galileo Saw: Imagining the Scientific Revolution” (Cornell UP, 2014)</title>
      <description>Lawrence Lipking‘s new book, What Galileo Saw: Imagining the Scientific Revolution (Cornell University Press, 2014) examines the role of imagination and creativity in the seventeenth century developments that have come to be known as the Scientific Revolution. Whereas some accounts suggest that this period involved the rejection of imaginative thinking,...
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      <pubDate>Wed, 05 Nov 2014 13:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Lawrence Lipking‘s new book, What Galileo Saw: Imagining the Scientific Revolution (Cornell University Press, 2014) examines the role of imagination and creativity in the seventeenth century developments that have come to be known as the Scientific Rev...</itunes:subtitle>
      <itunes:summary>Lawrence Lipking‘s new book, What Galileo Saw: Imagining the Scientific Revolution (Cornell University Press, 2014) examines the role of imagination and creativity in the seventeenth century developments that have come to be known as the Scientific Revolution. Whereas some accounts suggest that this period involved the rejection of imaginative thinking,...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Lawrence Lipking‘s new book, What Galileo Saw: Imagining the Scientific Revolution (Cornell University Press, 2014) examines the role of imagination and creativity in the seventeenth century developments that have come to be known as the Scientific Revolution. Whereas some accounts suggest that this period involved the rejection of imaginative thinking,...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4175</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/astronomy/?p=47]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1173778935.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Roberto Trotta, “The Edge of the Sky: All You Need to Know About the All-There-Is” (Basic Books, 2014)</title>
      <description>Roberto Trotta‘s new book, The Edge of the Sky: All You Need to Know About the All-There-Is (Basic Books, 2014) uses only the thousand (or ten-hundred) most common words in the English language to describe our current understanding and the most compelling outstanding mysteries in astrophysics and particle physics. A...
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 21 Oct 2014 14:01:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Roberto Trotta‘s new book, The Edge of the Sky: All You Need to Know About the All-There-Is (Basic Books, 2014) uses only the thousand (or ten-hundred) most common words in the English language to describe our current understanding and the most compell...</itunes:subtitle>
      <itunes:summary>Roberto Trotta‘s new book, The Edge of the Sky: All You Need to Know About the All-There-Is (Basic Books, 2014) uses only the thousand (or ten-hundred) most common words in the English language to describe our current understanding and the most compelling outstanding mysteries in astrophysics and particle physics. A...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Roberto Trotta‘s new book, The Edge of the Sky: All You Need to Know About the All-There-Is (Basic Books, 2014) uses only the thousand (or ten-hundred) most common words in the English language to describe our current understanding and the most compelling outstanding mysteries in astrophysics and particle physics. A...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3717</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/physics/?p=49]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4782166997.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Don Lincoln, “The Large Hadron Collider” (Johns Hopkins UP, 2014)</title>
      <description>Don Lincoln‘s new book, The Large Hadron Collider: The Extraordinary Story of the Higgs Boson and Other Stuff That Will Blow Your Mind (Johns Hopkins UP, 2014), presents an insider’s view of the largest physics experiment of our time and the discoveries that have come out of it over the...
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 09 Oct 2014 15:46:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>Don Lincoln‘s new book, The Large Hadron Collider: The Extraordinary Story of the Higgs Boson and Other Stuff That Will Blow Your Mind (Johns Hopkins UP, 2014), presents an insider’s view of the largest physics experiment of our time and the discoverie...</itunes:subtitle>
      <itunes:summary>Don Lincoln‘s new book, The Large Hadron Collider: The Extraordinary Story of the Higgs Boson and Other Stuff That Will Blow Your Mind (Johns Hopkins UP, 2014), presents an insider’s view of the largest physics experiment of our time and the discoveries that have come out of it over the...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Don Lincoln‘s new book, The Large Hadron Collider: The Extraordinary Story of the Higgs Boson and Other Stuff That Will Blow Your Mind (Johns Hopkins UP, 2014), presents an insider’s view of the largest physics experiment of our time and the discoveries that have come out of it over the...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3698</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/physics/?p=35]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8188971247.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Mary-Jane Rubenstein, "Worlds Without End: The Many Lives of the Multiverse" (Columbia UP, 2014)</title>
      <description>Where can the the boundaries of science, philosophy, and religion be drawn? Questioning the nature of the universe is an excellent place to rethink how these categories have been deployed across time. Mary-Jane Rubenstein, professor Religious Studies at Wesleyan University, offers a genealogy of multiple-world cosmologies that demonstrates these terms pliability and the debated relationship between 'Science' and 'Religion.' In Worlds Without End: The Many Lives of the Multiverse (Columbia University Press, 2014), Rubenstein wonders why there is a proliferation of multiverse theoretical cosmologies by contemporary scientists. While the cosmos are generally considered to be singular and finite many well-respected physicists explain the universe's complexities as evidence of a multiverse. These explanations argue that our world is just one of the infinite number of universes existing simultaneously.
Worlds Without End shows that multiple-world cosmologies have had currency among many thinkers for over 2500 years. What draws philosophers, religious practitioners, and scientists together on these questions is there appeal to metaphysical postulates, which serve as pseudo-theologies for the contemporary age. In our conversation we discuss the Greek philosophical tradition of Plato, Aristotle, the Atomists, and the Stoics, medieval Christian interpreters such as Thomas Aquinas, Nicolas of Cusa, Giordano Bruno, the Telescopic discoveries of Galileo, Rene Descartes, Isaac Newton, Immanuel Kant, the Big Bang debate, cosmic shredding, the fine-tuning problem, dark energy, Inflationary Cosmology, String Theory, Quantum Mechanics, and Intelligent Design.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 29 Sep 2014 08:00:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:episode>36</itunes:episode>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>An interview with Mary-Jane Rubenstein</itunes:subtitle>
      <itunes:summary>Where can the the boundaries of science, philosophy, and religion be drawn? Questioning the nature of the universe is an excellent place to rethink how these categories have been deployed across time. Mary-Jane Rubenstein, professor Religious Studies at Wesleyan University, offers a genealogy of multiple-world cosmologies that demonstrates these terms pliability and the debated relationship between 'Science' and 'Religion.' In Worlds Without End: The Many Lives of the Multiverse (Columbia University Press, 2014), Rubenstein wonders why there is a proliferation of multiverse theoretical cosmologies by contemporary scientists. While the cosmos are generally considered to be singular and finite many well-respected physicists explain the universe's complexities as evidence of a multiverse. These explanations argue that our world is just one of the infinite number of universes existing simultaneously.
Worlds Without End shows that multiple-world cosmologies have had currency among many thinkers for over 2500 years. What draws philosophers, religious practitioners, and scientists together on these questions is there appeal to metaphysical postulates, which serve as pseudo-theologies for the contemporary age. In our conversation we discuss the Greek philosophical tradition of Plato, Aristotle, the Atomists, and the Stoics, medieval Christian interpreters such as Thomas Aquinas, Nicolas of Cusa, Giordano Bruno, the Telescopic discoveries of Galileo, Rene Descartes, Isaac Newton, Immanuel Kant, the Big Bang debate, cosmic shredding, the fine-tuning problem, dark energy, Inflationary Cosmology, String Theory, Quantum Mechanics, and Intelligent Design.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Where can the the boundaries of science, philosophy, and religion be drawn? Questioning the nature of the universe is an excellent place to rethink how these categories have been deployed across time. <a href="http://mrubenstein.faculty.wesleyan.edu/">Mary-Jane Rubenstein</a>, professor Religious Studies at Wesleyan University, offers a genealogy of multiple-world cosmologies that demonstrates these terms pliability and the debated relationship between 'Science' and 'Religion.' In <a href="http://www.amazon.com/dp/0231156626/?tag=newbooinhis-20"><em>Worlds Without End: The Many Lives of the Multiverse</em></a> (Columbia University Press, 2014), Rubenstein wonders why there is a proliferation of multiverse theoretical cosmologies by contemporary scientists. While the cosmos are generally considered to be singular and finite many well-respected physicists explain the universe's complexities as evidence of a multiverse. These explanations argue that our world is just one of the infinite number of universes existing simultaneously.</p><p><em>Worlds Without End</em> shows that multiple-world cosmologies have had currency among many thinkers for over 2500 years. What draws philosophers, religious practitioners, and scientists together on these questions is there appeal to metaphysical postulates, which serve as pseudo-theologies for the contemporary age. In our conversation we discuss the Greek philosophical tradition of Plato, Aristotle, the Atomists, and the Stoics, medieval Christian interpreters such as Thomas Aquinas, Nicolas of Cusa, Giordano Bruno, the Telescopic discoveries of Galileo, Rene Descartes, Isaac Newton, Immanuel Kant, the Big Bang debate, cosmic shredding, the fine-tuning problem, dark energy, Inflationary Cosmology, String Theory, Quantum Mechanics, and Intelligent Design.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3696</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[5fc8c728-5db5-11ec-8d76-3f7d62d2efca]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN7723957833.mp3?updated=1626176383" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Omar W. Nasim, “Observing by Hand: Sketching the Nebulae in the Nineteenth Century” (University of Chicago Press, 2013)</title>
      <description>In Omar W. Nasim‘s new book, a series of fascinating characters sketch, paint, and etch their way toward a mapping of the cosmos and the human mind. Observing by Hand: Sketching the Nebulae in the Nineteenth Century (University of Chicago Press, 2013) examines the history of observation of celestial nebulae in the nineteenth century, exploring the relationships among the acts of seeing, drawing, and knowing in producing visual knowledge about the heavens and its bodies. Observing by Hand treats not just published images, but also argues for the centrality of “working images” to the histories of science and observation, paying special attention to personal drawings in private notebooks as instruments of individual and collective observation. Nasim’s approach blends the history and philosophy of science in a study that informs the histories of astronomy, images, and paperwork, and that emphasizes the importance of the philosophy of mind and its history in shaping this heavenly narrative. His transdisciplinary approach spans several media that include maps and portraits, oil paintings and etchings, private drawings and collectively-produced published images. The book helped me see Van Gogh’s The Starry Night, and the starry night above, with new eyes and a new appreciation for the vision and visioning of nineteenth century astronomical observers.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 02 Jun 2014 10:55:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/0f224ef8-5dcd-11ec-ab21-73458fd2b8cd/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>In Omar W. Nasim‘s new book, a series of fascinating characters sketch, paint, and etch their way toward a mapping of the cosmos and the human mind. Observing by Hand: Sketching the Nebulae in the Nineteenth Century (University of Chicago Press,</itunes:subtitle>
      <itunes:summary>In Omar W. Nasim‘s new book, a series of fascinating characters sketch, paint, and etch their way toward a mapping of the cosmos and the human mind. Observing by Hand: Sketching the Nebulae in the Nineteenth Century (University of Chicago Press, 2013) examines the history of observation of celestial nebulae in the nineteenth century, exploring the relationships among the acts of seeing, drawing, and knowing in producing visual knowledge about the heavens and its bodies. Observing by Hand treats not just published images, but also argues for the centrality of “working images” to the histories of science and observation, paying special attention to personal drawings in private notebooks as instruments of individual and collective observation. Nasim’s approach blends the history and philosophy of science in a study that informs the histories of astronomy, images, and paperwork, and that emphasizes the importance of the philosophy of mind and its history in shaping this heavenly narrative. His transdisciplinary approach spans several media that include maps and portraits, oil paintings and etchings, private drawings and collectively-produced published images. The book helped me see Van Gogh’s The Starry Night, and the starry night above, with new eyes and a new appreciation for the vision and visioning of nineteenth century astronomical observers.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="http://www.history.ox.ac.uk/faculty/staff/profile/nasim/index.html">Omar W. Nasim</a>‘s new book, a series of fascinating characters sketch, paint, and etch their way toward a mapping of the cosmos and the human mind. <a href="http://www.amazon.com/dp/022608437X/?tag=newbooinhis-20">Observing by Hand: Sketching the Nebulae in the Nineteenth Century </a>(University of Chicago Press, 2013) examines the history of observation of celestial nebulae in the nineteenth century, exploring the relationships among the acts of seeing, drawing, and knowing in producing visual knowledge about the heavens and its bodies. <a href="http://www.amazon.com/dp/022608437X/?tag=newbooinhis-20">Observing by Hand</a> treats not just published images, but also argues for the centrality of “working images” to the histories of science and observation, paying special attention to personal drawings in private notebooks as instruments of individual and collective observation. Nasim’s approach blends the history and philosophy of science in a study that informs the histories of astronomy, images, and paperwork, and that emphasizes the importance of the philosophy of mind and its history in shaping this heavenly narrative. His transdisciplinary approach spans several media that include maps and portraits, oil paintings and etchings, private drawings and collectively-produced published images. The book helped me see Van Gogh’s The Starry Night, and the starry night above, with new eyes and a new appreciation for the vision and visioning of nineteenth century astronomical observers.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4164</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=1084]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2565501065.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Oscar E. Fernandez, “Everyday Calculus: Discovering the Hidden Math All around Us (Princeton UP, 2014)</title>
      <description>The book discussed in this interview is Everyday Calculus: Discovering the Hidden Math All around Us (Princeton University Press, 2014) by Oscar E. Fernandez, who teaches mathematics – and calculus in particular – at Wellesley College. While it can be read by someone who wants to obtain a sense of what calculus is and how it’s used, it is even more enjoyable and enlightening if the reader has taken the first semester of a calculus course. The author takes the reader through a day in the author’s life, during which things one typically encounters – stock price quotations, cooling cups of coffee, getting good seats at a movie – afford an opportunity to investigate how calculus explains these everyday occurrences. Fernandez also introduces some instances where calculus has totally unexpected applications to our lives – why our GPS system relies upon Einstein’s Theory of Relativity, and why we obtain electricity via alternating current rather than direct current.  Everyday Calculus should not only add to the appreciation of calculus by those who have studied the subject, the book will hopefully persuade readers unfamiliar with calculus to take a course in it.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Thu, 17 Apr 2014 11:23:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The book discussed in this interview is Everyday Calculus: Discovering the Hidden Math All around Us (Princeton University Press, 2014) by Oscar E. Fernandez, who teaches mathematics – and calculus in particular – at Wellesley College.</itunes:subtitle>
      <itunes:summary>The book discussed in this interview is Everyday Calculus: Discovering the Hidden Math All around Us (Princeton University Press, 2014) by Oscar E. Fernandez, who teaches mathematics – and calculus in particular – at Wellesley College. While it can be read by someone who wants to obtain a sense of what calculus is and how it’s used, it is even more enjoyable and enlightening if the reader has taken the first semester of a calculus course. The author takes the reader through a day in the author’s life, during which things one typically encounters – stock price quotations, cooling cups of coffee, getting good seats at a movie – afford an opportunity to investigate how calculus explains these everyday occurrences. Fernandez also introduces some instances where calculus has totally unexpected applications to our lives – why our GPS system relies upon Einstein’s Theory of Relativity, and why we obtain electricity via alternating current rather than direct current.  Everyday Calculus should not only add to the appreciation of calculus by those who have studied the subject, the book will hopefully persuade readers unfamiliar with calculus to take a course in it.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The book discussed in this interview is <a href="https://press.princeton.edu/titles/10996.html">Everyday Calculus: Discovering the Hidden Math All around Us</a> (Princeton University Press, 2014) by <a href="http://palmer.wellesley.edu/~ofernand/Palmer_Wellesley/Welcome.html">Oscar E. Fernandez</a>, who teaches mathematics – and calculus in particular – at Wellesley College. While it can be read by someone who wants to obtain a sense of what calculus is and how it’s used, it is even more enjoyable and enlightening if the reader has taken the first semester of a calculus course. The author takes the reader through a day in the author’s life, during which things one typically encounters – stock price quotations, cooling cups of coffee, getting good seats at a movie – afford an opportunity to investigate how calculus explains these everyday occurrences. Fernandez also introduces some instances where calculus has totally unexpected applications to our lives – why our GPS system relies upon Einstein’s Theory of Relativity, and why we obtain electricity via alternating current rather than direct current.  Everyday Calculus should not only add to the appreciation of calculus by those who have studied the subject, the book will hopefully persuade readers unfamiliar with calculus to take a course in it.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3221</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/science/?post_type=crosspost&p=111]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2267265785.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>David Kaiser, “How the Hippies Saved Physics” (W.W. Norton, 2012)</title>
      <description>David Kaiser‘s recent book is one of the most enjoyable and informative books on the history of science that you’ll read, full-stop. The deservedly award-winning How the Hippies Saved Physics: Science, Counterculture, and the Quantum Revival (W.W. Norton, 2012) takes readers into the “hazy, bong-filled excesses of the 1970s New Age movement” in order to explain and reveal the origins of some of the most transformative breakthroughs in twentieth-century quantum physics. Kaiser shows how the roots of quantum information science, a field that has given us the technology behind electronic bank transfers and information encryption systems, emerged from a rich soil made up of equal parts playful speculation, sophisticated calculation, and philosophical reflection, all entwined in the practices of the Fundamental Fysiks Group in the 1970s. It is a story that pays careful tribute to Einstein andThe Dancing Wu Li Masters, psychedelic mushrooms and the double-slit experiment, opera and Bell’s Theorem, quantum entanglement and Uri Geller. It is also a story of transformations in what it has looked, meant, and felt like to be a physicist since World War II. Whether you come to How the Hippies Saved Physics primarily for the hippies or the physics, you will come away with a sense of awe both for the brilliance of these tricksters and for the deft hand that Kaiser has brought to creating a thoroughly enjoyable account of their lives, work, and legacy.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 02 Apr 2014 10:35:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/71ece788-5dcc-11ec-8cf9-0ff60e42ec87/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>David Kaiser‘s recent book is one of the most enjoyable and informative books on the history of science that you’ll read, full-stop. The deservedly award-winning How the Hippies Saved Physics: Science, Counterculture, and the Quantum Revival (W.W.</itunes:subtitle>
      <itunes:summary>David Kaiser‘s recent book is one of the most enjoyable and informative books on the history of science that you’ll read, full-stop. The deservedly award-winning How the Hippies Saved Physics: Science, Counterculture, and the Quantum Revival (W.W. Norton, 2012) takes readers into the “hazy, bong-filled excesses of the 1970s New Age movement” in order to explain and reveal the origins of some of the most transformative breakthroughs in twentieth-century quantum physics. Kaiser shows how the roots of quantum information science, a field that has given us the technology behind electronic bank transfers and information encryption systems, emerged from a rich soil made up of equal parts playful speculation, sophisticated calculation, and philosophical reflection, all entwined in the practices of the Fundamental Fysiks Group in the 1970s. It is a story that pays careful tribute to Einstein andThe Dancing Wu Li Masters, psychedelic mushrooms and the double-slit experiment, opera and Bell’s Theorem, quantum entanglement and Uri Geller. It is also a story of transformations in what it has looked, meant, and felt like to be a physicist since World War II. Whether you come to How the Hippies Saved Physics primarily for the hippies or the physics, you will come away with a sense of awe both for the brilliance of these tricksters and for the deft hand that Kaiser has brought to creating a thoroughly enjoyable account of their lives, work, and legacy.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://web.mit.edu/dikaiser/www/">David Kaiser</a>‘s recent book is one of the most enjoyable and informative books on the history of science that you’ll read, full-stop. The deservedly award-winning <a href="http://www.amazon.com/dp/039334231X/?tag=newbooinhis-20">How the Hippies Saved Physics: Science, Counterculture, and the Quantum Revival</a> (W.W. Norton, 2012) takes readers into the “hazy, bong-filled excesses of the 1970s New Age movement” in order to explain and reveal the origins of some of the most transformative breakthroughs in twentieth-century quantum physics. Kaiser shows how the roots of quantum information science, a field that has given us the technology behind electronic bank transfers and information encryption systems, emerged from a rich soil made up of equal parts playful speculation, sophisticated calculation, and philosophical reflection, all entwined in the practices of the Fundamental Fysiks Group in the 1970s. It is a story that pays careful tribute to Einstein andThe Dancing Wu Li Masters, psychedelic mushrooms and the double-slit experiment, opera and Bell’s Theorem, quantum entanglement and Uri Geller. It is also a story of transformations in what it has looked, meant, and felt like to be a physicist since World War II. Whether you come to How the Hippies Saved Physics primarily for the hippies or the physics, you will come away with a sense of awe both for the brilliance of these tricksters and for the deft hand that Kaiser has brought to creating a thoroughly enjoyable account of their lives, work, and legacy.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4291</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=1001]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6525866921.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Chuck Adler, “Wizards, Aliens, and Starships: Physics and Math in Fantasy and Science Fiction” (Princeton UP, 2014)</title>
      <description>[Re-posted with permission from Wild About Math]
I’ve admitted before that Physics and I have never gotten along. But, science fiction is something I enjoy. So, when Princeton University Press sent me a copy of Physics Professor Chuck Adler‘s new book Wizards, Aliens, and Starships: Physics and Math in Fantasy and Science Fiction (Princeton University Press, 2014), I was intrigued enough that I wanted to interview the author. This interview rambled, but in a good way. Chuck is a great guest, he’s passionate about physics and math as well as fantasy and science fiction. We flowed through a number of subjects and had a grand time.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 14 Feb 2014 17:16:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>[Re-posted with permission from Wild About Math] I’ve admitted before that Physics and I have never gotten along. But, science fiction is something I enjoy. So, when Princeton University Press sent me a copy of Physics Professor Chuck Adler‘s new book ...</itunes:subtitle>
      <itunes:summary>[Re-posted with permission from Wild About Math]
I’ve admitted before that Physics and I have never gotten along. But, science fiction is something I enjoy. So, when Princeton University Press sent me a copy of Physics Professor Chuck Adler‘s new book Wizards, Aliens, and Starships: Physics and Math in Fantasy and Science Fiction (Princeton University Press, 2014), I was intrigued enough that I wanted to interview the author. This interview rambled, but in a good way. Chuck is a great guest, he’s passionate about physics and math as well as fantasy and science fiction. We flowed through a number of subjects and had a grand time.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>[Re-posted with permission from <a href="http://wildaboutmath.com/">Wild About Math</a>]</p><p>I’ve admitted before that Physics and I have never gotten along. But, science fiction is something I enjoy. So, when Princeton University Press sent me a copy of Physics Professor <a href="https://www.smcm.edu/physics/facultystaff/adler.html">Chuck Adler</a>‘s new book <a href="https://press.princeton.edu/titles/10070.html">Wizards, Aliens, and Starships: Physics and Math in Fantasy and Science Fiction</a> (Princeton University Press, 2014), I was intrigued enough that I wanted to interview the author. This interview rambled, but in a good way. Chuck is a great guest, he’s passionate about physics and math as well as fantasy and science fiction. We flowed through a number of subjects and had a grand time.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>5649</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/science/?post_type=crosspost&p=101]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2652316678.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Angela N. H. Creager, “Life Atomic: A History of Radioisotopes in Science and Medicine” (University of Chicago Press, 2013)</title>
      <description>Angela Creager‘s deeply researched and elegantly written new book is a must-read account of the history of science in twentieth-century America. Life Atomic: A History of Radioisotopes in Science and Medicine (University of Chicago Press, 2013) traces a history of radioisotopes as military and civilian objects, for experimentation and therapeutic use, from the 1930s through the late twentieth century. Creager follows the emergence of a political and economic market for radioisotopes, looking carefully at their use as controversial political instruments, as representations of the benefits of atomic energy for US citizens, and as commodities.
After six chapters that trace these broader contexts of the production and circulation of radioisotopes, the second half of the book offers a set of fascinating case studies that explore representative users and uses of the technology in biochemistry, molecular biology, medicine, and ecology. Aspects of the story touch on the history of scientific and medical research using human and animal subjects, the early history of radiation therapy, and the history of ecology and environmental science. Not only is it a historiographically important and meticulously crafted work based on exhaustive research, but it’s also a great set of stories. The pages of Life Atomic are full of guinea pigs, scientific vaudeville, and stories and characters from many different fields of the modern life sciences, expertly weaving them together into a compelling set of arguments. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 07 Jan 2014 11:57:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/1e9ad140-5db7-11ec-8553-677375b4f2c4/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>Angela Creager‘s deeply researched and elegantly written new book is a must-read account of the history of science in twentieth-century America. Life Atomic: A History of Radioisotopes in Science and Medicine (University of Chicago Press,</itunes:subtitle>
      <itunes:summary>Angela Creager‘s deeply researched and elegantly written new book is a must-read account of the history of science in twentieth-century America. Life Atomic: A History of Radioisotopes in Science and Medicine (University of Chicago Press, 2013) traces a history of radioisotopes as military and civilian objects, for experimentation and therapeutic use, from the 1930s through the late twentieth century. Creager follows the emergence of a political and economic market for radioisotopes, looking carefully at their use as controversial political instruments, as representations of the benefits of atomic energy for US citizens, and as commodities.
After six chapters that trace these broader contexts of the production and circulation of radioisotopes, the second half of the book offers a set of fascinating case studies that explore representative users and uses of the technology in biochemistry, molecular biology, medicine, and ecology. Aspects of the story touch on the history of scientific and medical research using human and animal subjects, the early history of radiation therapy, and the history of ecology and environmental science. Not only is it a historiographically important and meticulously crafted work based on exhaustive research, but it’s also a great set of stories. The pages of Life Atomic are full of guinea pigs, scientific vaudeville, and stories and characters from many different fields of the modern life sciences, expertly weaving them together into a compelling set of arguments. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://www.princeton.edu/history/people/display_person.xml?netid=creager">Angela Creager</a>‘s deeply researched and elegantly written new book is a must-read account of the history of science in twentieth-century America. <a href="http://www.amazon.com/dp/022601780X/?tag=newbooinhis-20">Life Atomic: A History of Radioisotopes in Science and Medicine </a>(University of Chicago Press, 2013) traces a history of radioisotopes as military and civilian objects, for experimentation and therapeutic use, from the 1930s through the late twentieth century. Creager follows the emergence of a political and economic market for radioisotopes, looking carefully at their use as controversial political instruments, as representations of the benefits of atomic energy for US citizens, and as commodities.</p><p>After six chapters that trace these broader contexts of the production and circulation of radioisotopes, the second half of the book offers a set of fascinating case studies that explore representative users and uses of the technology in biochemistry, molecular biology, medicine, and ecology. Aspects of the story touch on the history of scientific and medical research using human and animal subjects, the early history of radiation therapy, and the history of ecology and environmental science. Not only is it a historiographically important and meticulously crafted work based on exhaustive research, but it’s also a great set of stories. The pages of Life Atomic are full of guinea pigs, scientific vaudeville, and stories and characters from many different fields of the modern life sciences, expertly weaving them together into a compelling set of arguments. Enjoy!</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4262</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=910]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6142367579.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Edward Frenkel, “Love and Math: The Heart of Hidden Reality” (Basic Books, 2013)</title>
      <description>The book discussed in this interview is Love and Math: The Heart of Hidden Reality Basic Books, 2013) by Edward Frenkel of the University of California at Berkeley.It’s a toss-up which is more interesting – the description of Frenkel’s life or his description of his interest in – and love for – mathematics and physics. Before he was twenty years old, Frenkel had written a paper that a visiting Swedish physicist thought so intriguing that he smuggled it out of Russia.That paper started Frenkel on a career which resulted in his collaborating with some of the world’s foremost mathematicians and physicists – and to his writing Love and Math. It’s a fascinating read.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 08 Nov 2013 18:30:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The book discussed in this interview is Love and Math: The Heart of Hidden Reality Basic Books, 2013) by Edward Frenkel of the University of California at Berkeley.It’s a toss-up which is more interesting – the description of Frenkel’s life or his desc...</itunes:subtitle>
      <itunes:summary>The book discussed in this interview is Love and Math: The Heart of Hidden Reality Basic Books, 2013) by Edward Frenkel of the University of California at Berkeley.It’s a toss-up which is more interesting – the description of Frenkel’s life or his description of his interest in – and love for – mathematics and physics. Before he was twenty years old, Frenkel had written a paper that a visiting Swedish physicist thought so intriguing that he smuggled it out of Russia.That paper started Frenkel on a career which resulted in his collaborating with some of the world’s foremost mathematicians and physicists – and to his writing Love and Math. It’s a fascinating read.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The book discussed in this interview is <a href="http://www.amazon.com/dp/0465050743/?tag=newbooinhis-20">Love and Math: The Heart of Hidden Reality </a>Basic Books, 2013) by <a href="http://math.berkeley.edu/~frenkel/">Edward Frenkel </a>of the University of California at Berkeley.It’s a toss-up which is more interesting – the description of Frenkel’s life or his description of his interest in – and love for – mathematics and physics. Before he was twenty years old, Frenkel had written a paper that a visiting Swedish physicist thought so intriguing that he smuggled it out of Russia.That paper started Frenkel on a career which resulted in his collaborating with some of the world’s foremost mathematicians and physicists – and to his writing Love and Math. It’s a fascinating read.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3325</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/science/?post_type=crosspost&p=89]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2487489842.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Tim Maudlin, “Philosophy of Physics: Space and Time” (Princeton UP, 2012)</title>
      <description>Tim Maudlin‘s Philosophy of Physics: Space and Time (Princeton University Press, 2012) is a clear, approachable, and engaging introduction to the philosophy of physics that focuses on fundamental notions of space and time. The book expertly interweaves the history and philosophy of science in the course of its narrative; readers will explore the historical development of ideas about space and time in the course of learning the outlines and intricacies of some of the most powerful physical concepts in the history of science. Maudlin is an expert teacher in these pages, using material examples to explain and explore aspects of the philosophy of physics from the geometrical structure of space to the topology of time. Over the course of our conversation, we talked about the place of the volume within the larger trajectory of Maudlin’s work, the ways that his experience as a student and a teacher of the philosophy of physics has shaped the volume, and some of the ways that the work significantly departs from similar introductions to the field. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 17 Sep 2013 15:40:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/5002e23e-5dcd-11ec-9593-53a9e3a3c12b/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>Tim Maudlin‘s Philosophy of Physics: Space and Time (Princeton University Press, 2012) is a clear, approachable, and engaging introduction to the philosophy of physics that focuses on fundamental notions of space and time.</itunes:subtitle>
      <itunes:summary>Tim Maudlin‘s Philosophy of Physics: Space and Time (Princeton University Press, 2012) is a clear, approachable, and engaging introduction to the philosophy of physics that focuses on fundamental notions of space and time. The book expertly interweaves the history and philosophy of science in the course of its narrative; readers will explore the historical development of ideas about space and time in the course of learning the outlines and intricacies of some of the most powerful physical concepts in the history of science. Maudlin is an expert teacher in these pages, using material examples to explain and explore aspects of the philosophy of physics from the geometrical structure of space to the topology of time. Over the course of our conversation, we talked about the place of the volume within the larger trajectory of Maudlin’s work, the ways that his experience as a student and a teacher of the philosophy of physics has shaped the volume, and some of the ways that the work significantly departs from similar introductions to the field. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://philosophy.fas.nyu.edu/object/timmaudlin.html">Tim Maudlin</a>‘s <a href="http://www.amazon.com/dp/0691143099/?tag=newbooinhis-20">Philosophy of Physics: Space and Time </a>(Princeton University Press, 2012) is a clear, approachable, and engaging introduction to the philosophy of physics that focuses on fundamental notions of space and time. The book expertly interweaves the history and philosophy of science in the course of its narrative; readers will explore the historical development of ideas about space and time in the course of learning the outlines and intricacies of some of the most powerful physical concepts in the history of science. Maudlin is an expert teacher in these pages, using material examples to explain and explore aspects of the philosophy of physics from the geometrical structure of space to the topology of time. Over the course of our conversation, we talked about the place of the volume within the larger trajectory of Maudlin’s work, the ways that his experience as a student and a teacher of the philosophy of physics has shaped the volume, and some of the ways that the work significantly departs from similar introductions to the field. Enjoy!</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3446</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=778]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN6243779925.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>David Munns, “A Single Sky: How an International Community Forged the Science of Radio Astronomy” (MIT Press, 2012)</title>
      <description>How do you measure a star?
In the middle of the 20thcentury, an interdisciplinary and international community of scientists began using radio waves to measure heavenly bodies and transformed astronomy as a result. David P. D. Munns‘s new book charts the process through which radio astronomers learned to see the sounds of the sky, creating a new space for Cold War science. A Single Sky: How an International Community Forged the Science of Radio Astronomy (MIT Press, 2012) uses the emergence of radio astronomy to upend some of the commonly-held assumptions about the history of the modern sciences. Munns emphasizes the relative freedom of radio astronomers that stands in contrast to the popular meta-narrative of Cold War scientists bound by the interests of the military-industrial complex. He also shifts our focus from the more commonly-studied individual local and national contexts of science to look instead at scientific communities that transcended disciplinary and national boundaries, blending accounts of Australia, the UK, the Netherlands, and the US into a story that emphasizes the importance of cooperation (not competition) in driving scientific development. In addition to this, A Single Sky pays special attention to the importance of material culture (especially that of big radio telescopes) and pedagogy in shaping modern radio astronomy. It’s a fascinating story. Enjoy!
For more information about The Dish, a film that Munns mentioned in the course of our conversation, see here.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 29 Jul 2013 14:31:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/966d429c-5dcc-11ec-8c0d-a3793e11907a/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>How do you measure a star? In the middle of the 20thcentury, an interdisciplinary and international community of scientists began using radio waves to measure heavenly bodies and transformed astronomy as a result. David P. D.</itunes:subtitle>
      <itunes:summary>How do you measure a star?
In the middle of the 20thcentury, an interdisciplinary and international community of scientists began using radio waves to measure heavenly bodies and transformed astronomy as a result. David P. D. Munns‘s new book charts the process through which radio astronomers learned to see the sounds of the sky, creating a new space for Cold War science. A Single Sky: How an International Community Forged the Science of Radio Astronomy (MIT Press, 2012) uses the emergence of radio astronomy to upend some of the commonly-held assumptions about the history of the modern sciences. Munns emphasizes the relative freedom of radio astronomers that stands in contrast to the popular meta-narrative of Cold War scientists bound by the interests of the military-industrial complex. He also shifts our focus from the more commonly-studied individual local and national contexts of science to look instead at scientific communities that transcended disciplinary and national boundaries, blending accounts of Australia, the UK, the Netherlands, and the US into a story that emphasizes the importance of cooperation (not competition) in driving scientific development. In addition to this, A Single Sky pays special attention to the importance of material culture (especially that of big radio telescopes) and pedagogy in shaping modern radio astronomy. It’s a fascinating story. Enjoy!
For more information about The Dish, a film that Munns mentioned in the course of our conversation, see here.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>How do you measure a star?</p><p>In the middle of the 20thcentury, an interdisciplinary and international community of scientists began using radio waves to measure heavenly bodies and transformed astronomy as a result. <a href="http://johnjay.jjay.cuny.edu/profiles/history.aspx?key=%5Bemail%5D='dmunns@jjay.cuny.edu'">David P. D. Munns</a>‘s new book charts the process through which radio astronomers learned to see the sounds of the sky, creating a new space for Cold War science. <a href="http://www.amazon.com/dp/0262018330/?tag=newbooinhis-20">A Single Sky: How an International Community Forged the Science of Radio Astronomy</a> (MIT Press, 2012) uses the emergence of radio astronomy to upend some of the commonly-held assumptions about the history of the modern sciences. Munns emphasizes the relative freedom of radio astronomers that stands in contrast to the popular meta-narrative of Cold War scientists bound by the interests of the military-industrial complex. He also shifts our focus from the more commonly-studied individual local and national contexts of science to look instead at scientific communities that transcended disciplinary and national boundaries, blending accounts of Australia, the UK, the Netherlands, and the US into a story that emphasizes the importance of cooperation (not competition) in driving scientific development. In addition to this, A Single Sky pays special attention to the importance of material culture (especially that of big radio telescopes) and pedagogy in shaping modern radio astronomy. It’s a fascinating story. Enjoy!</p><p>For more information about The Dish, a film that Munns mentioned in the course of our conversation, see <a href="http://www.imdb.com/title/tt0205873/">here</a>.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4157</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=739]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN9549373942.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Brian Clegg, “Dice World: Science and Life in a Random Universe” (Icon Books, 2013)</title>
      <description>The book discussed in this interview is Dice World: Science and Life in a Random Universe (Icon Books, 2013), by Brian Clegg, an acclaimed British writer of books on science for the general public. Brian has a knack for taking concepts that seem abstruse and explaining them in ways that those who lack a technical background can readily understand. This talent is on display inDice World, where he takes the reader on an intriguing trip through the world of probability and statistics, and shows how these disciplines are essential to our understanding of how the Universe came into existence, how it functions, and how it will evolve. Brian Clegg can be contacted at brian@brianclegg.net.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Tue, 04 Jun 2013 15:55:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The book discussed in this interview is Dice World: Science and Life in a Random Universe (Icon Books, 2013), by Brian Clegg, an acclaimed British writer of books on science for the general public. Brian has a knack for taking concepts that seem abstru...</itunes:subtitle>
      <itunes:summary>The book discussed in this interview is Dice World: Science and Life in a Random Universe (Icon Books, 2013), by Brian Clegg, an acclaimed British writer of books on science for the general public. Brian has a knack for taking concepts that seem abstruse and explaining them in ways that those who lack a technical background can readily understand. This talent is on display inDice World, where he takes the reader on an intriguing trip through the world of probability and statistics, and shows how these disciplines are essential to our understanding of how the Universe came into existence, how it functions, and how it will evolve. Brian Clegg can be contacted at brian@brianclegg.net.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The book discussed in this interview is <a href="http://www.amazon.com/dp/1848315163/?tag=newbooinhis-20">Dice World: Science and Life in a Random Universe </a>(Icon Books, 2013), by <a href="http://www.brianclegg.net/arenumbers.htmlhttp://www.brianclegg.net/arenumbers.html">Brian Clegg</a>, an acclaimed British writer of books on science for the general public. Brian has a knack for taking concepts that seem abstruse and explaining them in ways that those who lack a technical background can readily understand. This talent is on display inDice World, where he takes the reader on an intriguing trip through the world of probability and statistics, and shows how these disciplines are essential to our understanding of how the Universe came into existence, how it functions, and how it will evolve. Brian Clegg can be contacted at brian@brianclegg.net.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3192</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/science/?post_type=crosspost&p=75]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1468087967.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Lawrence M. Principe, “The Secrets of Alchemy” (University of Chicago Press, 2012)</title>
      <description>What is alchemy? Who were the alchemists, what did they believe and do and dream, and what did they accomplish?
Lawrence M. Principe‘s new book explores these questions and some possible answers to them in a wonderfully written and argued introduction to the history of western alchemy. The Secrets of Alchemy (University of Chicago Press, 2012) traces the genealogy of alchemical practices from their early Greco-Egyptian foundations through early modern chymistry, pausing along the way to reflect on the reinterpretation and refashioning of alchemy from the eighteenth century to the present. Principe’s pages reveal histories of alchemy that are wonderfully rich and diverse, and we meet them in laboratories, recipes, images, dramatic plays, and poems. In the course of our conversation, we talked about aspects of the craft of the alchemist as well as that of the historian, including Principe’s fascinating attempts to recreate alchemical recipes and practices in his own laboratory. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 18 Mar 2013 18:16:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/cbf2658c-5dcc-11ec-970b-b3a7f5509d67/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>What is alchemy? Who were the alchemists, what did they believe and do and dream, and what did they accomplish? Lawrence M. Principe‘s new book explores these questions and some possible answers to them in a wonderfully written and argued introduction ...</itunes:subtitle>
      <itunes:summary>What is alchemy? Who were the alchemists, what did they believe and do and dream, and what did they accomplish?
Lawrence M. Principe‘s new book explores these questions and some possible answers to them in a wonderfully written and argued introduction to the history of western alchemy. The Secrets of Alchemy (University of Chicago Press, 2012) traces the genealogy of alchemical practices from their early Greco-Egyptian foundations through early modern chymistry, pausing along the way to reflect on the reinterpretation and refashioning of alchemy from the eighteenth century to the present. Principe’s pages reveal histories of alchemy that are wonderfully rich and diverse, and we meet them in laboratories, recipes, images, dramatic plays, and poems. In the course of our conversation, we talked about aspects of the craft of the alchemist as well as that of the historian, including Principe’s fascinating attempts to recreate alchemical recipes and practices in his own laboratory. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>What is alchemy? Who were the alchemists, what did they believe and do and dream, and what did they accomplish?</p><p><a href="http://krieger.jhu.edu/singleton/faculty-directory/principe.html">Lawrence M. Principe</a>‘s new book explores these questions and some possible answers to them in a wonderfully written and argued introduction to the history of western alchemy. <a href="http://www.amazon.com/dp/0226682951/?tag=newbooinhis-20">The Secrets of Alchemy</a> (University of Chicago Press, 2012) traces the genealogy of alchemical practices from their early Greco-Egyptian foundations through early modern chymistry, pausing along the way to reflect on the reinterpretation and refashioning of alchemy from the eighteenth century to the present. Principe’s pages reveal histories of alchemy that are wonderfully rich and diverse, and we meet them in laboratories, recipes, images, dramatic plays, and poems. In the course of our conversation, we talked about aspects of the craft of the alchemist as well as that of the historian, including Principe’s fascinating attempts to recreate alchemical recipes and practices in his own laboratory. Enjoy!</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3901</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=599]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1350794629.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Lawrence M. Krauss, “A Universe from Nothing: Why There is Something Rather than Nothing” (Atria, 2012)</title>
      <description>In A Universe from Nothing: Why There is Something Rather than Nothing (Atria, 2012), Lawrence M. Krauss presents this big idea: something can–and perhaps must–come from nothing. That something is, well, everything–you, me, and the entire universe. If that doesn’t get your attention, nothing will. Of course, as Lawrence explains, nothing usually turns out on close inspection to be something. Listen in and find out how. Lawrence and I also discussed the relationship between science (especially physics) and religion, and in particular the question “What came before that?” and whether said question has any meaning at all. No matter what you believe, I’m sure you’ll find what Lawrence has to say of great interest.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 13 Feb 2013 18:18:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>In A Universe from Nothing: Why There is Something Rather than Nothing (Atria, 2012), Lawrence M. Krauss presents this big idea: something can–and perhaps must–come from nothing. That something is, well, everything–you, me, and the entire universe.</itunes:subtitle>
      <itunes:summary>In A Universe from Nothing: Why There is Something Rather than Nothing (Atria, 2012), Lawrence M. Krauss presents this big idea: something can–and perhaps must–come from nothing. That something is, well, everything–you, me, and the entire universe. If that doesn’t get your attention, nothing will. Of course, as Lawrence explains, nothing usually turns out on close inspection to be something. Listen in and find out how. Lawrence and I also discussed the relationship between science (especially physics) and religion, and in particular the question “What came before that?” and whether said question has any meaning at all. No matter what you believe, I’m sure you’ll find what Lawrence has to say of great interest.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>In <a href="http://www.amazon.com/dp/1451624468/?tag=newbooinhis-20">A Universe from Nothing: Why There is Something Rather than Nothing</a> (Atria, 2012), <a href="http://krauss.faculty.asu.edu/biography/">Lawrence M. Krauss</a> presents this big idea: something can–and perhaps must–come from nothing. That something is, well, everything–you, me, and the entire universe. If that doesn’t get your attention, nothing will. Of course, as Lawrence explains, nothing usually turns out on close inspection to be something. Listen in and find out how. Lawrence and I also discussed the relationship between science (especially physics) and religion, and in particular the question “What came before that?” and whether said question has any meaning at all. No matter what you believe, I’m sure you’ll find what Lawrence has to say of great interest.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1939</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/bigideas/?p=58]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4210605452.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Audra J. Wolfe, “Competing with the Soviets: Science, Technology, and the State in Cold War America” (Johns Hopkins, 2013)</title>
      <description>Audra Wolfe‘s new book, Competing with the Soviets: Science, Technology, and the State in Cold War America (John Hopkins University Press, 2013) offers a synthetic account of American science during the Cold War. Wolfe pulls together a rich and disparate literature to provide a thematic, chronological and accessible story about the distinctive ways that Americans wove science and government together for the five decades after WWII. Beyond the familiar story of physics, Wolfe shows not only how science prospered under federal patronage but how the federal government itself came to depend on science as it tried to deal with the problems it faced around the world and at home. The nature of American science, and the promise of american modernity, was put on display in works and institutions as varied modernization theory and the Apollo missions. Wolfe has written a delightful little book offering the historical state of the art for those interested in thinking about the characteristic relationships forged between science and the state during the Cold War and their lasting consequences.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Mon, 04 Feb 2013 20:10:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/4224c6b6-5db7-11ec-ac7e-c79d2d08595c/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>Audra Wolfe‘s new book, Competing with the Soviets: Science, Technology, and the State in Cold War America (John Hopkins University Press, 2013) offers a synthetic account of American science during the Cold War.</itunes:subtitle>
      <itunes:summary>Audra Wolfe‘s new book, Competing with the Soviets: Science, Technology, and the State in Cold War America (John Hopkins University Press, 2013) offers a synthetic account of American science during the Cold War. Wolfe pulls together a rich and disparate literature to provide a thematic, chronological and accessible story about the distinctive ways that Americans wove science and government together for the five decades after WWII. Beyond the familiar story of physics, Wolfe shows not only how science prospered under federal patronage but how the federal government itself came to depend on science as it tried to deal with the problems it faced around the world and at home. The nature of American science, and the promise of american modernity, was put on display in works and institutions as varied modernization theory and the Apollo missions. Wolfe has written a delightful little book offering the historical state of the art for those interested in thinking about the characteristic relationships forged between science and the state during the Cold War and their lasting consequences.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p><a href="http://audrajwolfe.com/">Audra Wolfe</a>‘s new book, <a href="http://www.amazon.com/dp/142140771X/?tag=newbooinhis-20">Competing with the Soviets: Science, Technology, and the State in Cold War America</a> (John Hopkins University Press, 2013) offers a synthetic account of American science during the Cold War. Wolfe pulls together a rich and disparate literature to provide a thematic, chronological and accessible story about the distinctive ways that Americans wove science and government together for the five decades after WWII. Beyond the familiar story of physics, Wolfe shows not only how science prospered under federal patronage but how the federal government itself came to depend on science as it tried to deal with the problems it faced around the world and at home. The nature of American science, and the promise of american modernity, was put on display in works and institutions as varied modernization theory and the Apollo missions. Wolfe has written a delightful little book offering the historical state of the art for those interested in thinking about the characteristic relationships forged between science and the state during the Cold War and their lasting consequences.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3050</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=491]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1922847779.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Katy Price, “Loving Faster Than Light: Romance and Readers in Einstein’s Universe” (University of Chicago Press, 2012)</title>
      <description>You were amused to find you too could fear
“The eternal silence of the infinite spaces.”
The astronomy love poems of William Empson, from which the preceding quote was taken, were just some of the many media through which people explored the ramifications of Einstein’s ideas about the cosmos in Britain in the 1920s and 1930s. Masterfully incorporating a contextual sensibility of the historian of science with a sensitivity to textual texture of the literary scholar, Katy Price guides us through the ways that readers and writers of newspapers, popular fiction, poems, magazines, and essays translated and incorporated Einsteinian relativity. Loving Faster Than Light: Romance and Readers in Einstein’s Universe (University of Chicago Press, 2012) situates this popular engagement with the physical sciences within the political transformations of early twentieth-century Britain, looking at how the scientific and publishing communities attempted (with different levels of success) to use media coverage of relativity to rally the support of a wider reading public. It is a rich study that has much to offer to those interested in the history of science, of literature, and of popular culture, while helpfully complicating all of those categories.
“Fly with me then to all’s and the world’s end
And plumb for safety down the gaps of stars
Let the last gulf or topless cliff befriend,
What tyrant there our variance debars?”
*Both quotes above are from William Empson’s poems, and can be found on pages 167 and 162 of Price’s book.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 09 Jan 2013 16:51:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/bb40cc88-5dcc-11ec-9852-47c2f0712d6d/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>You were amused to find you too could fear “The eternal silence of the infinite spaces.” The astronomy love poems of William Empson, from which the preceding quote was taken, were just some of the many media through which people explored the ramificati...</itunes:subtitle>
      <itunes:summary>You were amused to find you too could fear
“The eternal silence of the infinite spaces.”
The astronomy love poems of William Empson, from which the preceding quote was taken, were just some of the many media through which people explored the ramifications of Einstein’s ideas about the cosmos in Britain in the 1920s and 1930s. Masterfully incorporating a contextual sensibility of the historian of science with a sensitivity to textual texture of the literary scholar, Katy Price guides us through the ways that readers and writers of newspapers, popular fiction, poems, magazines, and essays translated and incorporated Einsteinian relativity. Loving Faster Than Light: Romance and Readers in Einstein’s Universe (University of Chicago Press, 2012) situates this popular engagement with the physical sciences within the political transformations of early twentieth-century Britain, looking at how the scientific and publishing communities attempted (with different levels of success) to use media coverage of relativity to rally the support of a wider reading public. It is a rich study that has much to offer to those interested in the history of science, of literature, and of popular culture, while helpfully complicating all of those categories.
“Fly with me then to all’s and the world’s end
And plumb for safety down the gaps of stars
Let the last gulf or topless cliff befriend,
What tyrant there our variance debars?”
*Both quotes above are from William Empson’s poems, and can be found on pages 167 and 162 of Price’s book.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>You were amused to find you too could fear</p><p>“The eternal silence of the infinite spaces.”</p><p>The astronomy love poems of William Empson, from which the preceding quote was taken, were just some of the many media through which people explored the ramifications of Einstein’s ideas about the cosmos in Britain in the 1920s and 1930s. Masterfully incorporating a contextual sensibility of the historian of science with a sensitivity to textual texture of the literary scholar, <a href="http://www.english.qmul.ac.uk/staff/pricek.html">Katy Price </a>guides us through the ways that readers and writers of newspapers, popular fiction, poems, magazines, and essays translated and incorporated Einsteinian relativity. <a href="http://www.amazon.com/dp/0226680738/?tag=newbooinhis-20">Loving Faster Than Light: Romance and Readers in Einstein’s Universe</a> (University of Chicago Press, 2012) situates this popular engagement with the physical sciences within the political transformations of early twentieth-century Britain, looking at how the scientific and publishing communities attempted (with different levels of success) to use media coverage of relativity to rally the support of a wider reading public. It is a rich study that has much to offer to those interested in the history of science, of literature, and of popular culture, while helpfully complicating all of those categories.</p><p>“Fly with me then to all’s and the world’s end</p><p>And plumb for safety down the gaps of stars</p><p>Let the last gulf or topless cliff befriend,</p><p>What tyrant there our variance debars?”</p><p>*Both quotes above are from William Empson’s poems, and can be found on pages 167 and 162 of Price’s book.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3639</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=448]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN4892687790.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Anjan Chakravartty, “A Metaphysics for Scientific Realism: Knowing the Unobservable” (Cambridge UP, 2007)</title>
      <description>Near the opening of his book A Metaphysics for Scientific Realism: Knowing the Unobservable (Cambridge University Press, 2007; paperback 2010), Anjan Chakravartty warns readers: snack before reading! Though the occasional exemplary slice of pumpkin pie and chocolate fudge brownies do sweetly sprinkle the narrative, fear not, intrepid reader: most of A Metaphysics for Scientific Realism is devoted to providing a unified account of a metaphysical proposal in support of one of the most crucial concepts in the philosophy of science, scientific realism. In the course of his masterfully written account, Chakravartty explains the core elements of major versions of contemporary realism with exceptional clarity, laying the foundations in a systematic way that makes the contours of the major debates around scientific realism comprehensible even to readers new to the philosophy of science. After a Part I that lays a foundation for the work, offering an account of the central commitments of realism as they have evolved over time, Parts II and III of the book delve more deeply into the metaphysical and epistemological issues surrounding the theories and claims about unobservable objects in the practice and history of science. It is a wonderfully rich and clearly organized work that is written with a sense of humor and rewards a close reading, and we had a good time talking about it. Enjoy!
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      <pubDate>Fri, 27 Jul 2012 20:25:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/32dff888-5db7-11ec-b59e-13b3c5239616/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>Near the opening of his book A Metaphysics for Scientific Realism: Knowing the Unobservable (Cambridge University Press, 2007; paperback 2010), Anjan Chakravartty warns readers: snack before reading! Though the occasional exemplary slice of pumpkin pie...</itunes:subtitle>
      <itunes:summary>Near the opening of his book A Metaphysics for Scientific Realism: Knowing the Unobservable (Cambridge University Press, 2007; paperback 2010), Anjan Chakravartty warns readers: snack before reading! Though the occasional exemplary slice of pumpkin pie and chocolate fudge brownies do sweetly sprinkle the narrative, fear not, intrepid reader: most of A Metaphysics for Scientific Realism is devoted to providing a unified account of a metaphysical proposal in support of one of the most crucial concepts in the philosophy of science, scientific realism. In the course of his masterfully written account, Chakravartty explains the core elements of major versions of contemporary realism with exceptional clarity, laying the foundations in a systematic way that makes the contours of the major debates around scientific realism comprehensible even to readers new to the philosophy of science. After a Part I that lays a foundation for the work, offering an account of the central commitments of realism as they have evolved over time, Parts II and III of the book delve more deeply into the metaphysical and epistemological issues surrounding the theories and claims about unobservable objects in the practice and history of science. It is a wonderfully rich and clearly organized work that is written with a sense of humor and rewards a close reading, and we had a good time talking about it. Enjoy!
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Near the opening of his book <a href="http://www.amazon.com/dp/0521130093/?tag=newbooinhis-20">A Metaphysics for Scientific Realism: Knowing the Unobservable</a> (Cambridge University Press, 2007; paperback 2010), <a href="http://philosophy.utoronto.ca/people/faculty/members-of-other-departments-appointed-to-the-graduate-faculty/anjan-chakravartty">Anjan Chakravartty</a> warns readers: snack before reading! Though the occasional exemplary slice of pumpkin pie and chocolate fudge brownies do sweetly sprinkle the narrative, fear not, intrepid reader: most of A Metaphysics for Scientific Realism is devoted to providing a unified account of a metaphysical proposal in support of one of the most crucial concepts in the philosophy of science, scientific realism. In the course of his masterfully written account, Chakravartty explains the core elements of major versions of contemporary realism with exceptional clarity, laying the foundations in a systematic way that makes the contours of the major debates around scientific realism comprehensible even to readers new to the philosophy of science. After a Part I that lays a foundation for the work, offering an account of the central commitments of realism as they have evolved over time, Parts II and III of the book delve more deeply into the metaphysical and epistemological issues surrounding the theories and claims about unobservable objects in the practice and history of science. It is a wonderfully rich and clearly organized work that is written with a sense of humor and rewards a close reading, and we had a good time talking about it. Enjoy!</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4072</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=208]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN8525127690.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>David Linen, “The Compass of Pleasure: How Our Brains Make Fatty Foods, Orgasm, Exercise, Marijuana, Generosity, Vodka, Learning, and Gambling Feel So Good” (Viking, 2011)</title>
      <description>What happens in our brains when we do things that feel good, such as drinking a glass of wine, exercising, or gambling? How and why do we become addicted to certain foods, chemicals and behaviors? David Linden, a neuroscientist at Johns Hopkins, explains these phenomena in his latest book, The Compass of Pleasure: How Our Brains Make Fatty Foods, Orgasm, Exercise, Marijuana, Generosity, Vodka, Learning, and Gambling Feel So Good (Viking, 2011).
 
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      <pubDate>Tue, 26 Jun 2012 15:37:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>What happens in our brains when we do things that feel good, such as drinking a glass of wine, exercising, or gambling? How and why do we become addicted to certain foods, chemicals and behaviors? David Linden, a neuroscientist at Johns Hopkins,</itunes:subtitle>
      <itunes:summary>What happens in our brains when we do things that feel good, such as drinking a glass of wine, exercising, or gambling? How and why do we become addicted to certain foods, chemicals and behaviors? David Linden, a neuroscientist at Johns Hopkins, explains these phenomena in his latest book, The Compass of Pleasure: How Our Brains Make Fatty Foods, Orgasm, Exercise, Marijuana, Generosity, Vodka, Learning, and Gambling Feel So Good (Viking, 2011).
 
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>What happens in our brains when we do things that feel good, such as drinking a glass of wine, exercising, or gambling? How and why do we become addicted to certain foods, chemicals and behaviors? <a href="http://neuroscience.jhu.edu/DavidLinden.php">David Linden</a>, a neuroscientist at Johns Hopkins, explains these phenomena in his latest book, <a href="http://www.amazon.com/dp/0670022586/?tag=newbooinhis-20">The Compass of Pleasure: How Our Brains Make Fatty Foods, Orgasm, Exercise, Marijuana, Generosity, Vodka, Learning, and Gambling Feel So Good </a>(Viking, 2011).</p><p> </p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>2209</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/psychology/?p=64]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2503959894.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Suman Seth, “Crafting the Quantum: Arnold Sommerfeld and the Practice of Theory, 1890-1926” (MIT Press, 2010)</title>
      <description>Though Einstein, Planck, and Pauli have become household names in the history of science, the work of Arnold Sommerfeld has yet to reach the same level of wide recognition outside the field of theoretical physics and its history. In Crafting the Quantum: Arnold Sommerfeld and the Practice of Theory, 1890-1926 (MIT Press, 2010), Suman Seth not only makes a compelling case for the centrality of Sommerfeld as a theoretician and teacher of physics in the late nineteenth and early twentieth centuries, but also uses the Sommerfeld School to speak to broad issues that are central to the way we understand science and its history. With humor, sensitivity, and a wide-ranging fluency in the conceptual and methodological studies of science, Seth translates the history and fabric of theoretical physics into a rich account of the practice and pedagogy of physical science, revising what we think we know about the roles of discipline, revolution, and ski trips in the history of physics. It is both an archaeology of the relationship between theory and experiment in modern history, and a beautifully wrought tale of the transformation of one of modern science’s most influential teachers and practitioners of the “physics of problems.”
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      <pubDate>Fri, 24 Feb 2012 20:14:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:image href="https://megaphone.imgix.net/podcasts/40883cfa-5dcd-11ec-b918-275f466c7afd/image/scitechsoc1500x1500.png?ixlib=rails-4.3.1&amp;max-w=3000&amp;max-h=3000&amp;fit=crop&amp;auto=format,compress"/>
      <itunes:subtitle>Though Einstein, Planck, and Pauli have become household names in the history of science, the work of Arnold Sommerfeld has yet to reach the same level of wide recognition outside the field of theoretical physics and its history.</itunes:subtitle>
      <itunes:summary>Though Einstein, Planck, and Pauli have become household names in the history of science, the work of Arnold Sommerfeld has yet to reach the same level of wide recognition outside the field of theoretical physics and its history. In Crafting the Quantum: Arnold Sommerfeld and the Practice of Theory, 1890-1926 (MIT Press, 2010), Suman Seth not only makes a compelling case for the centrality of Sommerfeld as a theoretician and teacher of physics in the late nineteenth and early twentieth centuries, but also uses the Sommerfeld School to speak to broad issues that are central to the way we understand science and its history. With humor, sensitivity, and a wide-ranging fluency in the conceptual and methodological studies of science, Seth translates the history and fabric of theoretical physics into a rich account of the practice and pedagogy of physical science, revising what we think we know about the roles of discipline, revolution, and ski trips in the history of physics. It is both an archaeology of the relationship between theory and experiment in modern history, and a beautifully wrought tale of the transformation of one of modern science’s most influential teachers and practitioners of the “physics of problems.”
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>Though Einstein, Planck, and Pauli have become household names in the history of science, the work of Arnold Sommerfeld has yet to reach the same level of wide recognition outside the field of theoretical physics and its history. In <a href="https://mitpress.mit.edu/books/crafting-quantum">Crafting the Quantum: Arnold Sommerfeld and the Practice of Theory, 1890-1926 </a>(MIT Press, 2010), <a href="http://sts.cornell.edu/people/ss536.cfm">Suman Seth</a> not only makes a compelling case for the centrality of Sommerfeld as a theoretician and teacher of physics in the late nineteenth and early twentieth centuries, but also uses the Sommerfeld School to speak to broad issues that are central to the way we understand science and its history. With humor, sensitivity, and a wide-ranging fluency in the conceptual and methodological studies of science, Seth translates the history and fabric of theoretical physics into a rich account of the practice and pedagogy of physical science, revising what we think we know about the roles of discipline, revolution, and ski trips in the history of physics. It is both an archaeology of the relationship between theory and experiment in modern history, and a beautifully wrought tale of the transformation of one of modern science’s most influential teachers and practitioners of the “physics of problems.”</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>4876</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/scitechsoc/?p=23]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN3041457820.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>John Eric Goff, “Gold Medal Physics: The Science of Sports” (Johns Hopkins UP, 2009)</title>
      <description>The instructor of my freshman physics course fit the stereotype of a physics professor: unkempt white hair, black glasses case in the breast pocket of his short-sleeved shirt, thick German accent, and a tendency to mumble to himself while mulling over formula on the chalkboard. I was not his most...
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      <pubDate>Mon, 15 Aug 2011 19:31:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>The instructor of my freshman physics course fit the stereotype of a physics professor: unkempt white hair, black glasses case in the breast pocket of his short-sleeved shirt, thick German accent, and a tendency to mumble to himself while mulling over ...</itunes:subtitle>
      <itunes:summary>The instructor of my freshman physics course fit the stereotype of a physics professor: unkempt white hair, black glasses case in the breast pocket of his short-sleeved shirt, thick German accent, and a tendency to mumble to himself while mulling over formula on the chalkboard. I was not his most...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>The instructor of my freshman physics course fit the stereotype of a physics professor: unkempt white hair, black glasses case in the breast pocket of his short-sleeved shirt, thick German accent, and a tendency to mumble to himself while mulling over formula on the chalkboard. I was not his most...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3747</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/sports/?p=199]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2725889675.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Alex Vilenkin, “Many Worlds in One: The Search for Other Universes” (Hill and Wang, 2006)</title>
      <description>[This interview is re-posted with permission from Jenny Attiyeh’s ThoughtCast] Want to know how the world is going to end? Just ask Russian cosmologist Alex Vilenkin. If it’s our own universe you’re talking about, well, it’s called the big crunch, and it’s going to be hot hot hot! But if...
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      <pubDate>Fri, 01 Apr 2011 09:21:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>[This interview is re-posted with permission from Jenny Attiyeh’s ThoughtCast] Want to know how the world is going to end? Just ask Russian cosmologist Alex Vilenkin. If it’s our own universe you’re talking about, well, it’s called the big crunch,</itunes:subtitle>
      <itunes:summary>[This interview is re-posted with permission from Jenny Attiyeh’s ThoughtCast] Want to know how the world is going to end? Just ask Russian cosmologist Alex Vilenkin. If it’s our own universe you’re talking about, well, it’s called the big crunch, and it’s going to be hot hot hot! But if...
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>[This interview is re-posted with permission from Jenny Attiyeh’s ThoughtCast] Want to know how the world is going to end? Just ask Russian cosmologist Alex Vilenkin. If it’s our own universe you’re talking about, well, it’s called the big crunch, and it’s going to be hot hot hot! But if...</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>1900</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksnetwork.com/?p=52752]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN1722707390.mp3" length="0" type="audio/mpeg"/>
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    <item>
      <title>Ian Sample, “Massive: The Missing Particle that Sparked the Greatest Hunt in Science” (Basic Books, 2010)</title>
      <description>You’ve probably read about the Large Hadron Collider (LHC). It’s the largest (17 miles around!), most expensive (9 billion dollars!) scientific instrument in history. What’s it do? It accelerates beams of tiny particles (protons) to nearly the speed of light and then smashes them into one another. That’s cool, you say, but why? Well, the simple answer is this: it was built to test the validity of the way most physicists understand the origins and essence of everything, that is, the “standard model.”
You see, the standard model has a big gap in it: it can’t explain why certain essential particles have mass. In the 1960s, however, a group of theoretical physicists proposed an answer. These massive particles, they said, were bathed in a dense, universal field of other particles, now called “Higgs bosons.” The field gives them mass. To draw an analogy (always a dangerous thing to do in physics…), particles like protons have mass for the same reason straws stand up in milkshakes–they are “packed in,” so to say. The trouble, to continue this awkward analogy, is that no one has ever “seen” the milkshake. The scientists working at the LHC are trying to find it. If they do, the standard model remains standard and Nobel Prizes all ’round. If not, well, back to the drawing board.
Ian Sample does a masterful job of telling the tale of the quest for the Higgs boson (aka the “God particle”) in his new book Massive: The Missing Particle that Sparked the Greatest Hunt in Science (Basic Books, 2010). You don’t need to know a thing about physics (though the author clearly does) to enjoy it. Sample has a talent for explaining things that are often obscured by mathematics (a kind of crutch, I think, for many scientists) in straightforward English prose. This skill, combined with the fact that Sample is a great storyteller with a great story to tell, make Massive an excellent read. You may not have liked science in school, but trust me when I say you’ll very much enjoy the history of science in the hands of Ian Sample.
Please become a fan of “New Books in History” on Facebook if you haven’t already.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 14 Jan 2011 19:08:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>You’ve probably read about the Large Hadron Collider (LHC). It’s the largest (17 miles around!), most expensive (9 billion dollars!) scientific instrument in history. What’s it do? It accelerates beams of tiny particles (protons) to nearly the speed of...</itunes:subtitle>
      <itunes:summary>You’ve probably read about the Large Hadron Collider (LHC). It’s the largest (17 miles around!), most expensive (9 billion dollars!) scientific instrument in history. What’s it do? It accelerates beams of tiny particles (protons) to nearly the speed of light and then smashes them into one another. That’s cool, you say, but why? Well, the simple answer is this: it was built to test the validity of the way most physicists understand the origins and essence of everything, that is, the “standard model.”
You see, the standard model has a big gap in it: it can’t explain why certain essential particles have mass. In the 1960s, however, a group of theoretical physicists proposed an answer. These massive particles, they said, were bathed in a dense, universal field of other particles, now called “Higgs bosons.” The field gives them mass. To draw an analogy (always a dangerous thing to do in physics…), particles like protons have mass for the same reason straws stand up in milkshakes–they are “packed in,” so to say. The trouble, to continue this awkward analogy, is that no one has ever “seen” the milkshake. The scientists working at the LHC are trying to find it. If they do, the standard model remains standard and Nobel Prizes all ’round. If not, well, back to the drawing board.
Ian Sample does a masterful job of telling the tale of the quest for the Higgs boson (aka the “God particle”) in his new book Massive: The Missing Particle that Sparked the Greatest Hunt in Science (Basic Books, 2010). You don’t need to know a thing about physics (though the author clearly does) to enjoy it. Sample has a talent for explaining things that are often obscured by mathematics (a kind of crutch, I think, for many scientists) in straightforward English prose. This skill, combined with the fact that Sample is a great storyteller with a great story to tell, make Massive an excellent read. You may not have liked science in school, but trust me when I say you’ll very much enjoy the history of science in the hands of Ian Sample.
Please become a fan of “New Books in History” on Facebook if you haven’t already.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>You’ve probably read about the <a href="http://en.wikipedia.org/wiki/Large_Hadron_Collider">Large Hadron Collider</a> (LHC). It’s the largest (17 miles around!), most expensive (9 billion dollars!) scientific instrument in history. What’s it do? It accelerates beams of tiny particles (protons) to nearly the speed of light and then smashes them into one another. That’s cool, you say, but why? Well, the simple answer is this: it was built to test the validity of the way most physicists understand the origins and essence of everything, that is, the “standard model.”</p><p>You see, the standard model has a big gap in it: it can’t explain why certain essential particles have mass. In the 1960s, however, a group of theoretical physicists proposed an answer. These massive particles, they said, were bathed in a dense, universal field of other particles, now called “Higgs bosons.” The field gives them mass. To draw an analogy (always a dangerous thing to do in physics…), particles like protons have mass for the same reason straws stand up in milkshakes–they are “packed in,” so to say. The trouble, to continue this awkward analogy, is that no one has ever “seen” the milkshake. The scientists working at the LHC are trying to find it. If they do, the standard model remains standard and Nobel Prizes all ’round. If not, well, back to the drawing board.</p><p><a href="http://www.iansample.com/site/">Ian Sample</a> does a masterful job of telling the tale of the quest for the Higgs boson (aka the “God particle”) in his new book <a href="http://www.amazon.com/dp/0465019471/?tag=newbooinhis-20">Massive: The Missing Particle that Sparked the Greatest Hunt in Science</a> (Basic Books, 2010). You don’t need to know a thing about physics (though the author clearly does) to enjoy it. Sample has a talent for explaining things that are often obscured by mathematics (a kind of crutch, I think, for many scientists) in straightforward English prose. This skill, combined with the fact that Sample is a great storyteller with a great story to tell, make Massive an excellent read. You may not have liked science in school, but trust me when I say you’ll very much enjoy the history of science in the hands of Ian Sample.</p><p>Please become a fan of “New Books in History” on <a href="http://www.facebook.com/profile.php?id=1361072270#/pages/New-Books-In-History/23393718791?ref=ts">Facebook</a> if you haven’t already.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
      </content:encoded>
      <itunes:duration>3913</itunes:duration>
      <itunes:explicit>no</itunes:explicit>
      <guid isPermaLink="false"><![CDATA[http://newbooksinhistory.com/?p=3376]]></guid>
      <enclosure url="https://traffic.megaphone.fm/NBN2605408441.mp3" length="0" type="audio/mpeg"/>
    </item>
    <item>
      <title>Fred Spier, “Big History and the Future of Humanity” (Wiley-Blackwell, 2010)</title>
      <description>My son Isaiah likes to play the “why” game. Isaiah: “Why is my ice cream gone?” Me: “Because you ate it.” Isaiah: “Why did I eat it?” Me: “Because you need food.” Isaiah: “Why do I need food?” And so on. Isaiah naturally wants to know why things are the way they are. We all do. Most of us, however, are taught that seeking these ultimate answers is quixotic. We say either that there are no ultimate answers or that you’d have to know too many to answer them. In this conception, there either is no story of everything or, if there is, no one can tell it.
Thankfully, Fred Spier disagrees. His path-breaking Big History and the Future of Humanity (Wiley-Blackwell, 2010) succeeds in sketching the story of everything from the origins of the universe to the reason my son’s ice cream is gone. In around two-hundred lucidly written pages he takes us from the Big Bang, to the separation of matter and energy, to the rise of elementary particles, to the formation of galaxies, solar systems, stars, and planets, to the creation of elements, to the origin of life, to the evolution of biotic complexity, to the emergence of humans, to the origin of society, to the invention of ice cream. What enables him to do this is a simple, unifying theory, namely, that all forms of complexity are the result of energy flowing through matter within certain boundaries (“Goldilocks” conditions). Everything with edges, a shape, parts, or an internal structure is the result of energy flowing through matter within certain boundaries and is only maintained so long as the energy keeps flowing and the boundaries don’t change.
Historiographically, this book takes us into new and promising territory. But even more than that it is timely, for the energy and conditions that maintain our complexity–that is, modern industrial life–are both in jeopardy. We consume much more energy than we produce, and the kind of energy we consume is moving us out of the Goldilocks zone. If unchecked, the result of these two processes is inevitable: a loss of complexity, which is to say the destruction of modern industrial society. That’s something to think about, and maybe even do something about.
Please become a fan of “New Books in History” on Facebook if you haven’t already.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Fri, 01 Oct 2010 16:54:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>My son Isaiah likes to play the “why” game. Isaiah: “Why is my ice cream gone?” Me: “Because you ate it.” Isaiah: “Why did I eat it?” Me: “Because you need food.” Isaiah: “Why do I need food?” And so on. Isaiah naturally wants to know why things are th...</itunes:subtitle>
      <itunes:summary>My son Isaiah likes to play the “why” game. Isaiah: “Why is my ice cream gone?” Me: “Because you ate it.” Isaiah: “Why did I eat it?” Me: “Because you need food.” Isaiah: “Why do I need food?” And so on. Isaiah naturally wants to know why things are the way they are. We all do. Most of us, however, are taught that seeking these ultimate answers is quixotic. We say either that there are no ultimate answers or that you’d have to know too many to answer them. In this conception, there either is no story of everything or, if there is, no one can tell it.
Thankfully, Fred Spier disagrees. His path-breaking Big History and the Future of Humanity (Wiley-Blackwell, 2010) succeeds in sketching the story of everything from the origins of the universe to the reason my son’s ice cream is gone. In around two-hundred lucidly written pages he takes us from the Big Bang, to the separation of matter and energy, to the rise of elementary particles, to the formation of galaxies, solar systems, stars, and planets, to the creation of elements, to the origin of life, to the evolution of biotic complexity, to the emergence of humans, to the origin of society, to the invention of ice cream. What enables him to do this is a simple, unifying theory, namely, that all forms of complexity are the result of energy flowing through matter within certain boundaries (“Goldilocks” conditions). Everything with edges, a shape, parts, or an internal structure is the result of energy flowing through matter within certain boundaries and is only maintained so long as the energy keeps flowing and the boundaries don’t change.
Historiographically, this book takes us into new and promising territory. But even more than that it is timely, for the energy and conditions that maintain our complexity–that is, modern industrial life–are both in jeopardy. We consume much more energy than we produce, and the kind of energy we consume is moving us out of the Goldilocks zone. If unchecked, the result of these two processes is inevitable: a loss of complexity, which is to say the destruction of modern industrial society. That’s something to think about, and maybe even do something about.
Please become a fan of “New Books in History” on Facebook if you haven’t already.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>My son Isaiah likes to play the “why” game. Isaiah: “Why is my ice cream gone?” Me: “Because you ate it.” Isaiah: “Why did I eat it?” Me: “Because you need food.” Isaiah: “Why do I need food?” And so on. Isaiah naturally wants to know why things are the way they are. We all do. Most of us, however, are taught that seeking these ultimate answers is quixotic. We say either that there are no ultimate answers or that you’d have to know too many to answer them. In this conception, there either is no story of everything or, if there is, no one can tell it.</p><p>Thankfully, <a href="http://home.medewerker.uva.nl/f.spier/">Fred Spier</a> disagrees. His path-breaking <a href="http://www.amazon.com/dp/1444334212/?tag=newbooinhis-20">Big History and the Future of Humanity </a>(Wiley-Blackwell, 2010) succeeds in sketching the story of everything from the origins of the universe to the reason my son’s ice cream is gone. In around two-hundred lucidly written pages he takes us from the Big Bang, to the separation of matter and energy, to the rise of elementary particles, to the formation of galaxies, solar systems, stars, and planets, to the creation of elements, to the origin of life, to the evolution of biotic complexity, to the emergence of humans, to the origin of society, to the invention of ice cream. What enables him to do this is a simple, unifying theory, namely, that all forms of complexity are the result of energy flowing through matter within certain boundaries (“Goldilocks” conditions). Everything with edges, a shape, parts, or an internal structure is the result of energy flowing through matter within certain boundaries and is only maintained so long as the energy keeps flowing and the boundaries don’t change.</p><p>Historiographically, this book takes us into new and promising territory. But even more than that it is timely, for the energy and conditions that maintain our complexity–that is, modern industrial life–are both in jeopardy. We consume much more energy than we produce, and the kind of energy we consume is moving us out of the Goldilocks zone. If unchecked, the result of these two processes is inevitable: a loss of complexity, which is to say the destruction of modern industrial society. That’s something to think about, and maybe even do something about.</p><p>Please become a fan of “New Books in History” on <a href="http://www.facebook.com/profile.php?id=1361072270#/pages/New-Books-In-History/23393718791?ref=ts">Facebook</a> if you haven’t already.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <title>Abigail Foerstner, “James Van Allen: The First Eight Billion Miles” (University of Iowa Press, 2007)</title>
      <description>This week we feature an interview with Abigail Foerstner about her new book, James Van Allen: The First Eight Billion Miles (University of Iowa Press, 2007). Dr. Foerstner teaches news writing and science writing at Northwestern University’s Medill School of Journalism. In addition, Dr. Foerstner served as a staff reporter for the suburban sections of the Chicago Tribune for ten years, where she wrote articles about science and the environment. She is the author of Picturing Utopia: Bertha Shambaugh and the Amana Photographers (University of Iowa Press, 2000), as well as multiple articles on science, history and the visual arts. Her newest book, James Van Allen: The First Eight Billion Light Miles, took her seven years to research and write. Carl McIlwain, research professor of physics at University of California at San Diego, claims that “This in-depth portrayal of the life and work of an important twentieth-century scientist should take an important place both as a biography of an interesting life and as a resource for future historians of space physics.”
Please become a fan of “New Books in History” on Facebook if you haven’t already.
Learn more about your ad choices. Visit megaphone.fm/adchoices</description>
      <pubDate>Wed, 27 Feb 2008 00:12:00 -0000</pubDate>
      <itunes:episodeType>full</itunes:episodeType>
      <itunes:author>New Books Network</itunes:author>
      <itunes:subtitle>This week we feature an interview with Abigail Foerstner about her new book, James Van Allen: The First Eight Billion Miles (University of Iowa Press, 2007). Dr. Foerstner teaches news writing and science writing at Northwestern University’s Medill Sch...</itunes:subtitle>
      <itunes:summary>This week we feature an interview with Abigail Foerstner about her new book, James Van Allen: The First Eight Billion Miles (University of Iowa Press, 2007). Dr. Foerstner teaches news writing and science writing at Northwestern University’s Medill School of Journalism. In addition, Dr. Foerstner served as a staff reporter for the suburban sections of the Chicago Tribune for ten years, where she wrote articles about science and the environment. She is the author of Picturing Utopia: Bertha Shambaugh and the Amana Photographers (University of Iowa Press, 2000), as well as multiple articles on science, history and the visual arts. Her newest book, James Van Allen: The First Eight Billion Light Miles, took her seven years to research and write. Carl McIlwain, research professor of physics at University of California at San Diego, claims that “This in-depth portrayal of the life and work of an important twentieth-century scientist should take an important place both as a biography of an interesting life and as a resource for future historians of space physics.”
Please become a fan of “New Books in History” on Facebook if you haven’t already.
Learn more about your ad choices. Visit megaphone.fm/adchoices</itunes:summary>
      <content:encoded>
        <![CDATA[<p>This week we feature an interview with <a href="http://www.medill.northwestern.edu/faculty/fulltime.aspx?id=59763">Abigail Foerstner</a> about her new book, <a href="http://www.amazon.com/dp/1587297957/?tag=newbooinhis-20">James Van Allen: The First Eight Billion Miles</a> (University of Iowa Press, 2007). Dr. Foerstner teaches news writing and science writing at Northwestern University’s Medill School of Journalism. In addition, Dr. Foerstner served as a staff reporter for the suburban sections of the Chicago Tribune for ten years, where she wrote articles about science and the environment. She is the author of <a href="http://www.amazon.com/dp/1587297957/?tag=newbooinhis-20">Picturing Utopia: Bertha Shambaugh and the Amana Photographers </a>(University of Iowa Press, 2000), as well as multiple articles on science, history and the visual arts. Her newest book, James Van Allen: The First Eight Billion Light Miles, took her seven years to research and write. Carl McIlwain, research professor of physics at University of California at San Diego, claims that “This in-depth portrayal of the life and work of an important twentieth-century scientist should take an important place both as a biography of an interesting life and as a resource for future historians of space physics.”</p><p>Please become a fan of “New Books in History” on <a href="http://www.facebook.com/profile.php?id=1361072270#/pages/New-Books-In-History/23393718791?ref=ts">Facebook</a> if you haven’t already.</p><p> </p><p>Learn more about your ad choices. Visit <a href="https://megaphone.fm/adchoices">megaphone.fm/adchoices</a></p>]]>
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      <itunes:duration>3543</itunes:duration>
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