Meer over het boek
The international bestseller: an introduction to the theory of relativity by the eminent physicists Brian Cox and Jeff Forshaw 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.
Een boek kopen
Why does E=mc², J. R. Jeffrey Robert Forshaw, Brian Cox
- Taal
- Jaar van publicatie
- 2009
- product-detail.submit-box.info.binding
- (Paperback)
Betaalmethoden
We missen je recensie hier.
- Titel
- Why does E=mc²
- Taal
- Engels
- Uitgever
- Da Capo Press
- Jaar van publicatie
- 2009
- Formaat
- Paperback
- ISBN10
- 0306819112
- ISBN13
- 9780306819117
- Reeks
- Tags
- Non-fictie, Wetenschap en Wiskunde, Natuurwetenschappen, Wetenschap, Wiskunde, Fysica, Ruimte, Astronomie, Energie, Experimenten (wetenschap), Astrofysica, Albert Einstein, Metaforen, Materie, Isaac Newton
- Beoordeling
- 4,05 van 5
- Aantekening
- The international bestseller: an introduction to the theory of relativity by the eminent physicists Brian Cox and Jeff Forshaw 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.




