Relativity, Gravitation and Cosmology A Basic Introduction

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Edition: 2nd
Format: Hardcover
Pub. Date: 2010-01-11
Publisher(s): Oxford University Press
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Summary

Einstein's general theory of relativity is introduced in this advanced undergraduate and beginning graduate level textbook. Topics include special relativity, in the formalism of Minkowski's four-dimensional space-time, the principle of equivalence, Riemannian geometry and tensor analysis,Einstein field equation, as well as many modern cosmological subjects, from primordial inflation and cosmic microwave anisotropy to the dark energy that propels an accelerating universe.The author presents the subject with an emphasis on physical examples and simple applications without the full tensor apparatus. The reader first learns how to describe curved spacetime. At this mathematically more accessible level, the reader can already study the many interesting phenomena such asgravitational lensing, precession of Mercury's perihelion, black holes, and cosmology. The full tensor formulation is presented later, when the Einstein equation is solved for a few symmetric cases. Many modern topics in cosmology are discussed in this book: from inflation, cosmic microwaveanisotropy to the "dark energy" that propels an accelerating universe.Mathematical accessibility, together with the various pedagogical devices (e.g., worked-out solutions of chapter-end problems), make it practical for interested readers to use the book to study general relativity and cosmology on their own.

Author Biography


Ta-Pei Cheng is currently Emeritus Professor of Physics at the University of Missouri - St. Louis. He took his Ph.D. at Rockefeller University in 1969, followed by post-doctoral study at Rockefeller University and at the Institute for Advanced Study (Princeton). He has been on the faculty of University of Missouri - St. Louis from 1973 to the present day, and was elected a Fellow of the American Physical Society in 1982.

Table of Contents

Preliminaries
Introduction and Overview
Special relativity: the basics
Relativity - Metric Description of Spacetime
Special relativity: the geometric formulation
The principle of equivalence
Metric description of a curved space
GR as a geometric theory of gravity - I
Spherically symmetric spacetime - GR tests
Black holes
Cosmology
The homogeneous and isotropic universe
The expanding universe and thermal relics
Inflation and the accelerating universe
Relativity - Full Tensor Formulation
Tensors in special relativity
Tensors in general relativity
GR as a geometric theory of gravity - II
Linearized theory and gravitational waves
Table of Contents provided by Publisher. All Rights Reserved.

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