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Sean Carroll
SEAN CARROLL is a theoretical physicist at the California Institute of Technology. He received his PhD in 1993 from Harvard University. Recently, Carroll has worked on the foundations of quantum mechanics, the arrow of time, and the emergence of complexity. He has been awarded prizes and fellowships by the National Science Foundation, NASA, the Alfred P. Sloan Foundation, the David and Lucile Packard Foundation, the American Physical Society, the American Institute of Physics, and the Royal Society of London. His most recent award, in 2014, was from the Freedom From Religion Foundation. Carroll has appeared on
The Colbert Report (twice), PBS’s
NOVA, and
Through the Wormhole with Morgan Freeman, and he frequently serves as a science consultant for film and television. He has been interviewed by various NPR shows,
Scientific American,
Wired, and
The New York Times. He has given a TED talk on the multiverse that has more than one million views, and he has participated in a number of well-attended public debates concerning material in his new book, including one in New York City in 2014 with Eben Alexander.
"A porthole into another world." —Scientific American
The most trusted explainer of the most mind-boggling concepts pulls back the veil of mystery that has too long cloaked the most valuable building blocks of modern science. Sean Carroll, with his genius for making complex notions entertaining, presents in his uniquely lucid voice the fundamental ideas informing the modern physics of reality.
Physics offers deep insights into the workings of the universe but those insights come in the form of equations that often look like gobbledygook. Sean Carroll shows that they are really like meaningful poems that can help us fly over sierras to discover a miraculous multidimensional landscape alive with radiant giants, warped space-time, and bewilderingly powerful forces. High school calculus is itself a centuries-old marvel as worthy of our gaze as the Mona Lisa. And it may come as a surprise the extent to which all our most cutting-edge ideas about black holes are built on the math calculus enables.
No one else could so smoothly guide readers toward grasping the very equation Einstein used to describe his theory of general relativity. In the tradition of the legendary Richard Feynman lectures presented sixty years ago, this book is an inspiring, dazzling introduction to a way of seeing that will resonate across cultural and generational boundaries for many years to come.
* This audiobook edition includes a downloadable PDF with equations and visual elements from the book.
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