Topics In The Foundations Of General Relativity And Newtonian Gravitation Theory
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Author |
: David B. Malament |
Publisher |
: University of Chicago Press |
Total Pages |
: 363 |
Release |
: 2012-04-02 |
ISBN-10 |
: 9780226502472 |
ISBN-13 |
: 0226502473 |
Rating |
: 4/5 (72 Downloads) |
Synopsis Topics in the Foundations of General Relativity and Newtonian Gravitation Theory by : David B. Malament
In Topics in the Foundations of General Relativity and Newtonian Gravitation Theory, David B. Malament presents the basic logical-mathematical structure of general relativity and considers a number of special topics concerning the foundations of general relativity and its relation to Newtonian gravitation theory. These special topics include the geometrized formulation of Newtonian theory (also known as Newton-Cartan theory), the concept of rotation in general relativity, and Gödel spacetime. One of the highlights of the book is a no-go theorem that can be understood to show that there is no criterion of orbital rotation in general relativity that fully answers to our classical intuitions. Topics is intended for both students and researchers in mathematical physics and philosophy of science.
Author |
: David B. Malament |
Publisher |
: University of Chicago Press |
Total Pages |
: 363 |
Release |
: 2012-05-07 |
ISBN-10 |
: 9780226502458 |
ISBN-13 |
: 0226502457 |
Rating |
: 4/5 (58 Downloads) |
Synopsis Topics in the Foundations of General Relativity and Newtonian Gravitation Theory by : David B. Malament
In Topics in the Foundations of General Relativity and Newtonian Gravitation Theory, David B. Malament presents the basic logical-mathematical structure of general relativity and considers a number of special topics concerning the foundations of general relativity and its relation to Newtonian gravitation theory. These special topics include the geometrized formulation of Newtonian theory (also known as Newton-Cartan theory), the concept of rotation in general relativity, and Gödel spacetime. One of the highlights of the book is a no-go theorem that can be understood to show that there is no criterion of orbital rotation in general relativity that fully answers to our classical intuitions. Topics is intended for both students and researchers in mathematical physics and philosophy of science.
Author |
: Sean M. Carroll |
Publisher |
: Cambridge University Press |
Total Pages |
: 529 |
Release |
: 2019-08-08 |
ISBN-10 |
: 9781108488396 |
ISBN-13 |
: 1108488390 |
Rating |
: 4/5 (96 Downloads) |
Synopsis Spacetime and Geometry by : Sean M. Carroll
An accessible introductory textbook on general relativity, covering the theory's foundations, mathematical formalism and major applications.
Author |
: Michael Friedman |
Publisher |
: Princeton University Press |
Total Pages |
: 403 |
Release |
: 2014-07-14 |
ISBN-10 |
: 9781400855124 |
ISBN-13 |
: 1400855128 |
Rating |
: 4/5 (24 Downloads) |
Synopsis Foundations of Space-Time Theories by : Michael Friedman
This book, explores the conceptual foundations of Einstein's theory of relativity: the fascinating, yet tangled, web of philosophical, mathematical, and physical ideas that is the source of the theory's enduring philosophical interest. Originally published in 1983. The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These editions preserve the original texts of these important books while presenting them in durable paperback and hardcover editions. The goal of the Princeton Legacy Library is to vastly increase access to the rich scholarly heritage found in the thousands of books published by Princeton University Press since its founding in 1905.
Author |
: Antonio Romano |
Publisher |
: Springer Nature |
Total Pages |
: 499 |
Release |
: 2019-09-25 |
ISBN-10 |
: 9783030272371 |
ISBN-13 |
: 3030272370 |
Rating |
: 4/5 (71 Downloads) |
Synopsis The Physical and Mathematical Foundations of the Theory of Relativity by : Antonio Romano
This unique textbook offers a mathematically rigorous presentation of the theory of relativity, emphasizing the need for a critical analysis of the foundations of general relativity in order to best study the theory and its implications. The transitions from classical mechanics to special relativity and then to general relativity are explored in detail as well, helping readers to gain a more profound and nuanced understanding of the theory as a whole. After reviewing the fundamentals of differential geometry and classical mechanics, the text introduces special relativity, first using the physical approach proposed by Einstein and then via Minkowski’s mathematical model. The authors then address the relativistic thermodynamics of continua and electromagnetic fields in matter – topics which are normally covered only very briefly in other treatments – in the next two chapters. The text then turns to a discussion of general relativity by means of the authors’ unique critical approach, underlining the difficulty of recognizing the physical meaning of some statements, such as the physical meaning of coordinates and the derivation of physical quantities from those of space-time. Chapters in this section cover the model of space-time proposed by Schwarzschild; black holes; the Friedman equations and the different cosmological models they describe; and the Fermi-Walker derivative. Well-suited for graduate students in physics and mathematics who have a strong foundation in real analysis, classical mechanics, and general physics, this textbook is appropriate for a variety of graduate-level courses that cover topics in relativity. Additionally, it will interest physicists and other researchers who wish to further study the subtleties of these theories and understand the contemporary scholarly discussions surrounding them.
Author |
: T. Padmanabhan |
Publisher |
: Cambridge University Press |
Total Pages |
: 729 |
Release |
: 2010-01-28 |
ISBN-10 |
: 9781139485395 |
ISBN-13 |
: 1139485393 |
Rating |
: 4/5 (95 Downloads) |
Synopsis Gravitation by : T. Padmanabhan
Covering all aspects of gravitation in a contemporary style, this advanced textbook is ideal for graduate students and researchers in all areas of theoretical physics. The 'Foundation' section develops the formalism in six chapters, and uses it in the next four chapters to discuss four key applications - spherical spacetimes, black holes, gravitational waves and cosmology. The six chapters in the 'Frontier' section describe cosmological perturbation theory, quantum fields in curved spacetime, and the Hamiltonian structure of general relativity, among several other advanced topics, some of which are covered in-depth for the first time in a textbook. The modular structure of the book allows different sections to be combined to suit a variety of courses. Over 200 exercises are included to test and develop the reader's understanding. There are also over 30 projects, which help readers make the transition from the book to their own original research.
Author |
: Luc Blanchet |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 634 |
Release |
: 2011-01-19 |
ISBN-10 |
: 9789048130153 |
ISBN-13 |
: 9048130158 |
Rating |
: 4/5 (53 Downloads) |
Synopsis Mass and Motion in General Relativity by : Luc Blanchet
From the infinitesimal scale of particle physics to the cosmic scale of the universe, research is concerned with the nature of mass. While there have been spectacular advances in physics during the past century, mass still remains a mysterious entity at the forefront of current research. Our current perspective on gravitation has arisen over millennia, through the contemplation of falling apples, lift thought experiments and notions of stars spiraling into black holes. In this volume, the world’s leading scientists offer a multifaceted approach to mass by giving a concise and introductory presentation based on insights from their respective fields of research on gravity. The main theme is mass and its motion within general relativity and other theories of gravity, particularly for compact bodies. Within this framework, all articles are tied together coherently, covering post-Newtonian and related methods as well as the self-force approach to the analysis of motion in curved space-time, closing with an overview of the historical development and a snapshot on the actual state of the art. All contributions reflect the fundamental role of mass in physics, from issues related to Newton’s laws, to the effect of self-force and radiation reaction within theories of gravitation, to the role of the Higgs boson in modern physics. High-precision measurements are described in detail, modified theories of gravity reproducing experimental data are investigated as alternatives to dark matter, and the fundamental problem of reconciling any theory of gravity with the physics of quantum fields is addressed. Auxiliary chapters set the framework for theoretical contributions within the broader context of experimental physics. The book is based upon the lectures of the CNRS School on Mass held in Orléans, France, in June 2008. All contributions have been anonymously refereed and, with the cooperation of the authors, revised by the editors to ensure overall consistency.
Author |
: Eric Poisson |
Publisher |
: Cambridge University Press |
Total Pages |
: 795 |
Release |
: 2014-05-29 |
ISBN-10 |
: 9781107032866 |
ISBN-13 |
: 1107032865 |
Rating |
: 4/5 (66 Downloads) |
Synopsis Gravity by : Eric Poisson
A unique graduate textbook that develops powerful approximation methods and their applications to real-life astrophysical systems.
Author |
: Committee on Gravitational Physics |
Publisher |
: National Academies Press |
Total Pages |
: 109 |
Release |
: 1999-11-17 |
ISBN-10 |
: 0309083745 |
ISBN-13 |
: 9780309083744 |
Rating |
: 4/5 (45 Downloads) |
Synopsis Gravitational Physics by : Committee on Gravitational Physics
Gravitational Physics assesses the achievements of the field over the past decade in both theory and experiment, identifies the most promising opportunities for research in the next decade, and describes the resources necessary to realize those opportunities. A major theme running through the opportunities is the exploration of strong gravitational fields, such as those associated with black holes. The book, part of the ongoing decadal survey Physics in a New Era, examines topics such as gravitational waves and their detection, classical and quantum theory of strong gravitational fields, precision measurements, and astronomical observations relevant to the predictions of Einstein's theory of general relativity.
Author |
: Kip S. Thorne |
Publisher |
: Princeton University Press |
Total Pages |
: 1551 |
Release |
: 2017-09-05 |
ISBN-10 |
: 9780691159027 |
ISBN-13 |
: 0691159025 |
Rating |
: 4/5 (27 Downloads) |
Synopsis Modern Classical Physics by : Kip S. Thorne
A groundbreaking text and reference book on twenty-first-century classical physics and its applications This first-year graduate-level text and reference book covers the fundamental concepts and twenty-first-century applications of six major areas of classical physics that every masters- or PhD-level physicist should be exposed to, but often isn't: statistical physics, optics (waves of all sorts), elastodynamics, fluid mechanics, plasma physics, and special and general relativity and cosmology. Growing out of a full-year course that the eminent researchers Kip Thorne and Roger Blandford taught at Caltech for almost three decades, this book is designed to broaden the training of physicists. Its six main topical sections are also designed so they can be used in separate courses, and the book provides an invaluable reference for researchers. Presents all the major fields of classical physics except three prerequisites: classical mechanics, electromagnetism, and elementary thermodynamics Elucidates the interconnections between diverse fields and explains their shared concepts and tools Focuses on fundamental concepts and modern, real-world applications Takes applications from fundamental, experimental, and applied physics; astrophysics and cosmology; geophysics, oceanography, and meteorology; biophysics and chemical physics; engineering and optical science and technology; and information science and technology Emphasizes the quantum roots of classical physics and how to use quantum techniques to elucidate classical concepts or simplify classical calculations Features hundreds of color figures, some five hundred exercises, extensive cross-references, and a detailed index An online illustration package is available