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Titlebook: Quantum Mechanics from General Relativity; An Approximation for Mendel Sachs Book 1986 D. Reidel Publishing Company, Dordrecht, Holland 198

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发表于 2025-3-21 17:27:43 | 显示全部楼层 |阅读模式
书目名称Quantum Mechanics from General Relativity
副标题An Approximation for
编辑Mendel Sachs
视频video
丛书名称Fundamental Theories of Physics
图书封面Titlebook: Quantum Mechanics from General Relativity; An Approximation for Mendel Sachs Book 1986 D. Reidel Publishing Company, Dordrecht, Holland 198
描述This monograph is a sequel to my earlier work, General Relativity and Matter [1], which will be referred to henceforth as GRM. The monograph, GRM, focuses on the full set of implications of General Relativity Theory, as a fundamental theory of matter in all domains, from elementary particle physics to cosmology. It is shown there to exhibit an explicit unification of the gravitational and electromagnetic fields of force with the inertial manifestations of matter, expressing the latter explicitly in terms of a covariant field theory within the structure of this general theory. This monograph will focus, primarily, on the special relativistic limit of the part of this general field theory of matter that deals with inertia, in the domain where quantum mechanics has been evoked in contemporary physics as a funda­ mental explanation for the behavior of elementary matter. Many of the results presented in this book are based on earlier published works in the journals, which will be listed in the Bibliography. These results will be presented here in an expanded form, with more discussion on the motivation and explanation for the theoretical development of the subject than space would allow
出版日期Book 1986
关键词Potential; electromagnetism; mechanics; model; quantum mechanics; statistics
版次1
doihttps://doi.org/10.1007/978-94-009-4664-4
isbn_softcover978-94-010-8573-1
isbn_ebook978-94-009-4664-4Series ISSN 0168-1222 Series E-ISSN 2365-6425
issn_series 0168-1222
copyrightD. Reidel Publishing Company, Dordrecht, Holland 1986
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Epilogue,anations for the emperical facts about irreversible processes in nature, in terms of arguments about intrinsic statistics and probabilities of complex material systems; the second subject deals with the methods of scientic investigation that I believe are in the best interests of progress in science.
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Quantum Mechanics from the Matter Field Equations and Derivation of the Pauli Exclusion Principle,all of the successful mathematical predictions of quantum mechanics? The assertion is that until a satisfactory replacement appears on the scene, physicists should keep to the usual quantum mechanical scheme of calculation, in spite of its weaknesses, since it is, at least, an empirically successful theory.
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,The Particle—Antiparticle Pair Without Annihilation Creation,’ systems, within the context of this theory — assuming again that the ‘rest’ of the closed system may either be neglected altogether or that it may be represented by an averaged background matter field.
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The Electromagnetic Interaction,hapters. The latter incorporation is a crucial ingredient in the derivation of important features of the field equations of inertia, such as the derivation from first principles of the Pauli exclusion principle (in Chapter 6).
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Fundamental Outlook, of quantum mechanics could be rooted in an approach entirely different from the present-day approach of the Copenhagen school or any of its theoretical modifications that have evolved over the years, that still maintain its essential probabilistic view [6].
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A Covariant Field Theory of Inertia,l theory of gravitation, has to do with the origin of the inertial mass of matter. To resolve the problem, it would perhaps be significant to keep in view two outstanding empirical features of inertial mass. The first one, which has been known since the earliest observations of planetary motion, is
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The Electromagnetic Interaction,to necessarily entail an incorporation of the electromagnetic force (minimally) as well as gravity. The gravitational manifestations of interacting matter are expressed in this theory in terms of the quaternion metrical field, which was derived and discussed in detail in . [., Ch. 6]. The general fo
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