Generation of Combinod Maxwell-Einstein-Klein-Gordon Fields from Purely Gravitational Cases
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This article is published in Progress of Theoretical Physics.The article was published on 1965-03-01 and is currently open access. It has received 8 citations till now. The article focuses on the topics: Einstein & Classical field theory.read more
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The Pseudo-Riemannian Space-Time Manifold M4
TL;DR: In this paper, a brief review of the special theory of relativity is provided, without proof, for future application, since the emphasis of this book is general relativity, we will state some of the results in this section without proof.
Book ChapterDOI
Tensor Analysis on Differentiable Manifolds
TL;DR: In this article, the authors define an N-dimensional differentiable manifold M as a set with a topology in which open subsets are known, and a connected Hausdorff manifold is paracompact if and only if it has a countable basis of open sets.
Book ChapterDOI
Spherically Symmetric Space-Time Domains
TL;DR: The first exact nontrivial solution of Einstein's (vacuum) field equations (2.160i) was obtained by Schwarzschild [231] and this solution was very important in regard to experimental verifications of the theory of general relativity.
Book ChapterDOI
Algebraic Classification of Field Equations
TL;DR: Some background material for this chapter is covered in Appendix 3, which may be worthwhile before reading this chapter for those who would like a review.
Book ChapterDOI
The Coupled Einstein–Maxwell–Klein–Gordon Equations
TL;DR: The contents of this chapter generally lie outside the focus of an introductory curriculum, and therefore, this chapter may be considered optional for an introductory course as discussed by the authors, however, it may not be suitable for all introductory courses.