Why Does E=mc2?: (And Why Should We Care?)

What does E=mc2 actually mean? Dr. Brian Cox and Professor Jeff Forshaw go on a journey to the frontier of twenty-first century science to unpack Einstein’s famous equation. Explaining and simplifying notions of energy, mass, and light—while exploding commonly held misconceptions—they demonstrate how the structure of nature itself is contained within this equation. Along the way, we visit the site of one of the largest scientific experiments ever conducted: the now-famous Large Hadron Collider, a gigantic particle accelerator capable of re-creating conditions that existed fractions of a second after the Big Bang.

A collaboration between one of the youngest professors in the United Kingdom and a distinguished popular physicist, Why Does E=mc2? is one of the most exciting and accessible explanations of the theory of relativity.

1100529203
Why Does E=mc2?: (And Why Should We Care?)

What does E=mc2 actually mean? Dr. Brian Cox and Professor Jeff Forshaw go on a journey to the frontier of twenty-first century science to unpack Einstein’s famous equation. Explaining and simplifying notions of energy, mass, and light—while exploding commonly held misconceptions—they demonstrate how the structure of nature itself is contained within this equation. Along the way, we visit the site of one of the largest scientific experiments ever conducted: the now-famous Large Hadron Collider, a gigantic particle accelerator capable of re-creating conditions that existed fractions of a second after the Big Bang.

A collaboration between one of the youngest professors in the United Kingdom and a distinguished popular physicist, Why Does E=mc2? is one of the most exciting and accessible explanations of the theory of relativity.

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Why Does E=mc2?: (And Why Should We Care?)

Why Does E=mc2?: (And Why Should We Care?)

Why Does E=mc2?: (And Why Should We Care?)

Why Does E=mc2?: (And Why Should We Care?)

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Overview

What does E=mc2 actually mean? Dr. Brian Cox and Professor Jeff Forshaw go on a journey to the frontier of twenty-first century science to unpack Einstein’s famous equation. Explaining and simplifying notions of energy, mass, and light—while exploding commonly held misconceptions—they demonstrate how the structure of nature itself is contained within this equation. Along the way, we visit the site of one of the largest scientific experiments ever conducted: the now-famous Large Hadron Collider, a gigantic particle accelerator capable of re-creating conditions that existed fractions of a second after the Big Bang.

A collaboration between one of the youngest professors in the United Kingdom and a distinguished popular physicist, Why Does E=mc2? is one of the most exciting and accessible explanations of the theory of relativity.


Product Details

ISBN-13: 9780306818769
Publisher: Da Capo Press
Publication date: 07/13/2010
Pages: 272
Sales rank: 51,173
Product dimensions: 5.50(w) x 8.10(h) x 0.90(d)

About the Author

Brian Cox is a distinguished particle physicist and popular TV host who divides his time between Manchester, England, and Geneva, Switzerland.

Jeff Forshaw is a professor at the University of Manchester and a recipient of the Institute of Physics Maxwell Medal. He lives in Manchester, England.

Table of Contents

Acknowledgments ix

Preface xi

1 Space and Time 1

2 The Speed of Light 17

3 Special Relativity 37

4 Spacetime 57

5 Why Does E=mc2? 103

6 And Why Should We Care? Of Atoms, Mousetraps, and The Power of the Stars 143

7 The Origin of Mass 171

8 Warping Spacetime 219

Index 243

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