Poisson / Will | Gravity | Buch | 978-1-107-03286-6 | www.sack.de

Buch, Englisch, 792 Seiten, Format (B × H): 183 mm x 260 mm, Gewicht: 1664 g

Poisson / Will

Gravity


Erscheinungsjahr 2014
ISBN: 978-1-107-03286-6
Verlag: Cambridge University Press

Buch, Englisch, 792 Seiten, Format (B × H): 183 mm x 260 mm, Gewicht: 1664 g

ISBN: 978-1-107-03286-6
Verlag: Cambridge University Press


This textbook explores approximate solutions to general relativity and their consequences. It offers a unique presentation of Einstein's theory by developing powerful methods that can be applied to astrophysical systems. Beginning with a uniquely thorough treatment of Newtonian gravity, the book develops post-Newtonian and post-Minkowskian approximation methods to obtain weak-field solutions to the Einstein field equations. The book explores the motion of self-gravitating bodies, the physics of gravitational waves, and the impact of radiative losses on gravitating systems. It concludes with a brief overview of alternative theories of gravity. Ideal for graduate courses on general relativity and relativistic astrophysics, the book examines real-life applications, such as planetary motion around the Sun, the timing of binary pulsars, and gravitational waves emitted by binary black holes. Text boxes explore related topics and provide historical context, and over 100 exercises present challenging tests of the material covered in the main text.

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Preface; 1. Foundations of Newtonian gravity; 2. Structure of self-gravitating bodies; 3. Newtonian orbital dynamics; 4. Minkowski spacetime; 5. Curved spacetime; 6. Post-Minkowskian theory: formulation; 7. Post-Minkowskian theory: implementation; 8. Post-Newtonian theory: fundamentals; 9. Post-Newtonian theory: system of isolated bodies; 10. Post-Newtonian celestial mechanics, astrometry and navigation; 11. Gravitational waves; 12. Radiative losses and radiation reaction; 13. Alternative theories of gravity; References; Index.


Will, Clifford M.
Clifford M. Will is Distinguished Professor of Physics at the University of Florida and J. S. McDonnell Professor Emeritus at Washington University in St Louis. He is a member of the US National Academy of Sciences, and Editor-in-Chief of Classical and Quantum Gravity. He is well known for his ability to bring science to broad audiences.

Poisson, Eric
Eric Poisson is Professor of Physics at the University of Guelph. He is a Fellow of the American Physical Society and serves on the editorial boards of Physical Review Letters and Classical and Quantum Gravity.



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