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Titlebook: General Relativity; Norbert Straumann Textbook 2013Latest edition Springer Science+Business Media Dordrecht 2013 Einstein’s Field Equation

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發(fā)表于 2025-3-21 18:10:02 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱General Relativity
編輯Norbert Straumann
視頻videohttp://file.papertrans.cn/383/382107/382107.mp4
概述Provides a complete revision and extension of the first edition.General Relativity and Relativistic Astrophysics’ with a whole new chapter on cosmology.The book provides a comprehensive and timely int
叢書名稱Graduate Texts in Physics
圖書封面Titlebook: General Relativity;  Norbert Straumann Textbook 2013Latest edition Springer Science+Business Media Dordrecht 2013 Einstein’s Field Equation
描述This book provides a completely revised and expanded version of the previous classic edition ‘General Relativity and Relativistic Astrophysics’. In Part I the foundations of general relativity are thoroughly developed, while Part II is devoted to tests of general relativity and many of its applications. Binary pulsars – our best laboratories for general relativity – are studied in considerable detail. An introduction to gravitational lensing theory is included as well, so as to make the current literature on the subject accessible to readers. Considerable attention is devoted to the study of compact objects, especially to black holes. This includes a detailed derivation of the Kerr solution, Israel’s proof of his uniqueness theorem, and a derivation of the basic laws of black hole physics. Part II ends with Witten’s proof of the positive energy theorem, which is presented in detail, together with the required tools on spin structures and spinor analysis. In Part III, all of the differential geometric tools required are developed in detail. A great deal of effort went into refining and improving the text for the new edition. New material has been added, including a chapter on cosmol
出版日期Textbook 2013Latest edition
關(guān)鍵詞Einstein’s Field Equations; Fermat’s Principle; Fermi Transport; Friedmann-Lema?tre Models; Kerr Solutio
版次2
doihttps://doi.org/10.1007/978-94-007-5410-2
isbn_softcover978-94-007-9954-7
isbn_ebook978-94-007-5410-2Series ISSN 1868-4513 Series E-ISSN 1868-4521
issn_series 1868-4513
copyrightSpringer Science+Business Media Dordrecht 2013
The information of publication is updating

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Physics in External Gravitational Fieldsly to the kinematical framework of GR and determines—suitable interpreted—the coupling of physical systems to external gravitational fields. This is discussed in detail in the present chapter. Although Einstein’s Equivalence Principle (EEP) is somewhat vague, since it is not entirely clear what is m
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Einstein’s Field Equationsr, we shall first give a simple physical motivation for the field equation and will then show that it is determined by only a few natural requirements (Lovelock theorem), with two coupling constants. One is just Newtons gravitational constant, and the other is the much discussed cosmological constan
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The Positive Mass Theoremmatter, i.e., matter with positive local energy density, whose total energy (including gravitational contributions) is negative. In this chapter we will give essentially E.?Witten’s proof of the positive energy theorem, which makes crucial use of spinor fields. To be complete, we develop the necessa
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Essentials of Friedmann–Lema?tre Modelsgy. This last chapter of Part II contains only a concise treatment of the Friedmann–Lema?tre models, together with some crucial observations that can be described within this idealized class of cosmological models. In particular, we derive the theoretical tools for the analyzes of the luminosity-red
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