Results for 'Relativity Theory'

961 found
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  1.  90
    Relativity theory between structural and dynamical explanations.Mauro Dorato - 2006 - International Studies in the Philosophy of Science 21 (1):95 – 102.
    (2007). Relativity Theory between Structural and Dynamical Explanations. International Studies in the Philosophy of Science: Vol. 21, No. 1, pp. 95-102.
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  2. The a-theory and special relativity.Special Relativity - 2008 - In L. Nathan Oaklander (ed.), The philosophy of time. New York: Routledge. pp. 4--7.
     
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  3.  64
    Relativity Theory Refounded.Diederik Aerts - 2018 - Foundations of Science 23 (3):511-547.
    We put forward a new view of relativity theory that makes the existence of a flow of time compatible with the four-dimensional block universe. To this end, we apply the creation-discovery view elaborated for quantum mechanics to relativity theory and in such a way that time and space become creations instead of discoveries and an underlying non temporal and non spatial reality comes into existence. We study the nature of this underlying non temporal and non spatial (...)
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  4.  47
    Relativity Theory as a Theory of Principles: A Reading of Cassirer’s Zur Einstein’schen Relativitätstheorie.Marco Giovanelli - 2023 - Hopos: The Journal of the International Society for the History of Philosophy of Science 13 (2):261-296.
    In his Zur Einstein’schen Relativitätstheorie, Ernst Cassirer presents relativity theory as the last manifestation of the tradition of the “physics of principles” that, starting from the nineteenth century, has progressively prevailed over that of the “physics of models.” In particular, according to Cassirer, the relativity principle plays a role similar to the energy principle in previous physics. In this article, I argue that this comparison represents the core of Cassirer’s neo-Kantian interpretation of relativity. Cassirer pointed out (...)
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  5. Classical relativity theory.David Malament - 2006 - In Jeremy Butterfield & John Earman (eds.), Philosophy of Physics. Amsterdam and Boston: Elsevier.
    This survey article is divided into two parts. In the first (section 2), I give a brief account of the structure of classical relativity theory. In the second (section 3), I discuss three special topics: (i) the status of the relative simultaneity relation in the context of Minkowski spacetime; (ii) the ``geometrized" version of Newtonian gravitation theory (also known as Newton-Cartan theory); and (iii) the possibility of recovering the global geometric structure of spacetime from its ``causal (...)
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  6. Relativity Theory: Its Origins and Impact on Modern Thought.L. Pearce Williams - 1970 - British Journal for the Philosophy of Science 21 (2):216-217.
  7.  11
    Relativity theory of protons and electrons.Arthur Stanley Eddington - 1936 - Cambridge, Eng.,: The University Press.
  8.  43
    Mach and Relativity Theory: ANeverending Story in HOPOSia?Gereon Wolters - 2019 - In Friedrich Stadler (ed.), Ernst Mach – Life, Work, Influence. Springer Verlag.
    Michael Ende’s bestseller/The Neverending Story/is set in a magical world called “Fantastica”. In Fantastica, there are heroes and villains, just as in the world of universities and academies. There is even an entity, or better: a non-entity of shaky existence, das Nichts, the Nothingness – loved by some philosophers like Martin Heidegger. In Fantastica Nothingness is able to create trouble and destruction. The same is true in the land of academic history and philosophy of science – let us call it (...)
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  9. Relativity theory: What is reality? [REVIEW]Diederik Aerts - 1996 - Foundations of Physics 26 (12):1627-1644.
    In classical Newtonian physics there was a clear understanding of “what reality is.≓ Indeed in this classical view, reality at a certain time is the collection of all what is actual at this time, and this is contained in “the present.≓ Often it is stated that three-dimensional space and one-dimensional time hare been substituted by four-dimensional space-time in relativity theory, and as a consequence the classical concept of reality, as that which is “present,≓ cannot be retained. Is reality (...)
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  10. On relativity theory and openness of the future.Howard Stein - 1991 - Philosophy of Science 58 (2):147-167.
    It has been repeatedly argued, most recently by Nicholas Maxwell, that the special theory of relativity is incompatible with the view that the future is in some degree undetermined; and Maxwell contends that this is a reason to reject that theory. In the present paper, an analysis is offered of the notion of indeterminateness (or "becoming") that is uniquely appropriate to the special theory of relativity, in the light of a set of natural conditions upon (...)
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  11.  7
    Relativity theory.L. Pearce Williams - 1968 - New York,: Wiley.
  12. (1 other version)Relativity Theory may not have the last Word on the Nature of Time: Quantum Theory and Probabilism.Nicholas Maxwell - 2016 - In Giancarlo Ghirardi & Shyam Wuppuluri (eds.), Space, Time and the Limits of Human Understanding. Cham: Imprint: Springer. pp. 109-124.
    Two radically different views about time are possible. According to the first, the universe is three dimensional. It has a past and a future, but that does not mean it is spread out in time as it is spread out in the three dimensions of space. This view requires that there is an unambiguous, absolute, cosmic-wide "now" at each instant. According to the second view about time, the universe is four dimensional. It is spread out in both space and time (...)
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  13.  65
    The Reaction to Relativity Theory I: The Anti-Einstein Campaign in Germany in 1920.Hubert Goenner - 1993 - Science in Context 6 (1):107-133.
    The ArgumentDevelopments in theoretical physics, even when they are revolutionary for physics, usually donotenter public awareness. The reaction to the special relativity theory is one of the few exceptions. The conceptual changes brought by special relativity to our notions of space and time, induced a lively debate not only within intellectual circles but in many strata of the educated middle class. In this article, I focus on a particular moment of public reaction to special and general (...) theory and to its creator Albert Einstein. I try to paint a picture of the anti-Einstein campaign in Germany of 1920, with finer brush strokes than those applied previously by others. My aim is to embed the campaign into the cultural and political climate of the Weimar republic. Without leaving the realm of physics only a superficial understanding of what happened seems possible. My thesis is that the anti-Einstein-campaign was organized, and the physicists involved in it used, mainly in order to rally support for one of the German right-wing parties, the Deutschnationale Volkspartei. (shrink)
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  14.  88
    The Extended Relativity Theory in Born-Clifford Phase Spaces with a Lower and Upper Length Scales and Clifford Group Geometric Unification.Carlos Castro - 2005 - Foundations of Physics 35 (6):971-1041.
    We construct the Extended Relativity Theory in Born-Clifford-Phase spaces with an upper R and lower length λ scales (infrared/ultraviolet cutoff). The invariance symmetry leads naturally to the real Clifford algebra Cl (2, 6, R) and complexified Clifford Cl C (4) algebra related to Twistors. A unified theory of all Noncommutative branes in Clifford-spaces is developed based on the Moyal-Yang star product deformation quantization whose deformation parameter involves the lower/upper scale $$(\hbar \lambda / R)$$. Previous work led us (...)
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  15.  59
    Relativity theory of information and communication in natural language.Graziella Tonfoni - 1998 - AI and Society 12 (4):322-327.
    The present paper is meant to summarise and enlighten the theoretical implications of the twin theories of text comprehension and of text compression. Compatibility and non-exclusiveness of particle-like analysis of language and wave-like analysis of intentionality are also demonstrated within the newly established quantum linguistics framework. The informative state of language is viewed as being relatively stable; once activated and subject to motion, therefore reaching a communicative state, different phenomena occur, which may be observed, analysed and visualised through CPP-TRS observational (...)
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  16.  91
    Conventions in Relativity Theory and Quantum Mechanics.Svozil Karl - 2002 - Foundations of Physics 32 (4):479-502.
    The conventionalistic aspects of physical world perception are reviewed with an emphasis on the constancy of the speed of light in relativity theory and the irreversibility of measurements in quantum mechanics. An appendix contains a complete proof of Alexandrov's theorem using mainly methods of affine geometry.
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  17.  1
    The new relativity theory.Chaim Israel Schafler - 1966 - [Haifa]: Israel Science Publications.
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  18. Heidegger and relativity theory.Adam Beck - 2005 - Angelaki 10 (1):163 – 179.
    (2005). Heidegger and Relativity Theory. Angelaki: Vol. 10, continental philosophy and the sciences the german traditionissue editor: damian veal, pp. 163-179.
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  19. Does special relativity theory tell us anything new about space and time?László E. Szabó - 2003
    It will be shown that, in comparison with the pre-relativistic Galileo-invariant conceptions, special relativity tells us nothing new about the geometry of spacetime. It simply calls something else "spacetime", and this something else has different properties. All statements of special relativity about those features of reality that correspond to the original meaning of the terms "space" and "time" are identical with the corresponding traditional pre-relativistic statements. It will be also argued that special relativity and Lorentz theory (...)
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  20.  2
    The relativity theory of A. N. Whitehead.John Lighton Synge - 1951 - [College Park,: University of Maryland, Institute for Fluid Dynamics and Applied Mathematics].
  21.  50
    Multiscale Integration in Scale Relativity Theory.Laurent Nottale - 2011 - Foundations of Science 16 (4):307-309.
    We give a “direction for use” of the scale relativity theory and apply it to an example of spontaneous multiscale integration including four embedded levels of organization (intracellular, cell, tissue and organism-like levels). We conclude by an update of our analysis of the arctic sea ice melting.
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  22. Relativism, and Social Theory.".On Relativity - 1986 - In Joseph Margolis, Michael Krausz & Richard M. Burian (eds.), Rationality, relativism, and the human sciences. Boston: M. Nijhoff. pp. 209--22.
     
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  23. The Newtonian limit of relativity theory and the rationality of theory change.Ardnés Rivadulla - 2004 - Synthese 141 (3):417 - 429.
    The aim of this paper is to elucidate the question of whether Newtonian mechanics can be derived from relativity theory. Physicists agree that classical mechanics constitutes a limiting case of relativity theory. By contrast, philosophers of science like Kuhn and Feyerabend affirm that classical mechanics cannot be deduced from relativity theory because of the incommensurability between both theories; thus what we obtain when we take the limit c in relativistic mechanics cannot be Newtonian mechanics (...)
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  24.  29
    Testing Relativity Theory for One-way Light Propagation.Thomas E. Phipps Jr - 2005 - Apeiron 12 (1):136.
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  25.  1
    The relativity theories of Einstein--untenable.Axel Ideström - 1948 - Uppsala,: Almqvist & Wiksells boktr..
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  26. Ether and Electrons in Relativity Theory.Scott A. Walter - 2018 - In Jaume Navarro (ed.), Ether and Modernity. pp. 67-87.
    This chapter discusses the roles of ether and electrons in relativity theory. One of the most radical moves made by Albert Einstein was to dismiss the ether from electrodynamics. His fellow physicists felt challenged by Einstein’s view, and they came up with a variety of responses, ranging from enthusiastic approval, to dismissive rejection. Among the naysayers were the electron theorists, who were unanimous in their affirmation of the ether, even if they agreed with other aspects of Einstein’s (...) of relativity. The eventual success of the latter theory (circa 1911) owed much to Hermann Minkowski’s idea of four-dimensional spacetime, which was portrayed as a conceptual substitute of sorts for the ether. (shrink)
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  27.  78
    Mead's Interpretation of Relativity Theory.Jake E. Stone - 2013 - Journal of Speculative Philosophy 27 (2):153-171.
    Scholars who engage with texts that were written by George Herbert Mead (e.g., 1925e.g., 1926e.g., 1929e.g., 1932e.g., 1938) in the latter half of the 1920s are faced with the task of comprehending Mead’s interpretation of relativity theory and also understanding why relativity theory was considered by Mead to have such profound implications for his own philosophy. As several scholars of Mead’s work have explained (e.g., Joas 1997; Martin 2007; Rosenthal and Bourgeois 1991), Mead was a realist. (...)
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  28. On relativity theory and openness of the future.Nicholas Maxwell - 1993 - Philosophy of Science 60 (2):341-348.
    In a recent paper, Howard Stein makes a number of criticisms of an earlier paper of mine ('Are Probabilism and Special Relativity Incompatible?', Phil. Sci., 1985), which explored the question of whether the idea that the future is genuinely 'open' in a probabilistic universe is compatible with special relativity. I disagree with almost all of Stein's criticisms.
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  29. Shifting Sands: An Interest-Relative Theory of Vagueness.Delia Graff - 2000 - Philosophical Topics 28 (1):45-81.
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  30.  30
    Einstein's Relativity Theory and the structure of the universe.E. S. Essien - 2008 - Sophia: An African Journal of Philosophy 10 (1).
  31. (1 other version)Dust and time: on relativity theory and the reality of time.Claudio Calosi - 2009 - Humana. Mente 8:113-130.
     
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  32.  75
    Does Species Evolution Follow Scale Laws? First Applications of the Scale Relativity Theory to Fossil and Living-beings.Jean Chaline - 2010 - Foundations of Science 15 (3):279-302.
    We have demonstrated, using the Cantor dust method, that the statistical distribution of appearance and disappearance of rodents species (Arvicolid rodent radiation in Europe) follows power laws strengthening the evidence for a fractal structure set. Self-similar laws have been used as model for the description of a huge number of biological systems. With Nottale we have shown that log-periodic behaviors of acceleration or deceleration can be applied to branching macroevolution, to the time sequences of major evolutionary leaps (global life tree, (...)
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  33.  27
    Further Insights into Thermal Relativity Theory and Black Hole Thermodynamics.Carlos Castro Perelman - 2021 - Foundations of Physics 51 (5):1-14.
    We continue to explore the consequences of Thermal Relativity Theory to the physics of black holes. The thermal analog of Lorentz transformations in the tangent space of the thermodynamic manifold are studied in connection to the Hawking evaporation of Schwarzschild black holes and one finds that there is no bound to the thermal analog of proper accelerations despite the maximal bound on the thermal analog of velocity given by the Planck temperature. The proper entropic infinitesimal interval corresponding to (...)
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  34.  58
    The conceptual foundations of contemporary relativity theory.John Cowperthwaite Graves - 1971 - Cambridge, Mass.,: M.I.T. Press.
    The central conceptual idea of the contemporary theory of general relativity--or geometrodynamics--is the identification of matter with the structure of space-time. No entities foreign to space-time, like masses, charges, or independent fields are needed, and physics thus becomes identical with the geometry of space-time. This idea implies a philosophical description of the universe that is monistic and organic, characterized by an all-encompassing interdependence of events. Moreover, it is an idea with deep roots in the history of philosophy. For (...)
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  35.  11
    Philosophical Backgrounds of the Relativity Theory : A Short History of Philosophical Investigations on the Nature of Space and Time. 강형구 - 2022 - Journal of the Daedong Philosophical Association 99:1-30.
    20세기 초 등장한 상대성 이론은 혁신적인 물리학 이론으로서, 물리학의 발전뿐만 아 니라 철학적 사유의 발전을 그 배경으로 삼고 있다. 실제로 뉴턴이 17세기 말 고전역학을 제시한 이후 시간과 공간의 본성에 관한 철학적 문제가 본격적으로 제기되었다. 흄은 시 간과 공간에 대해 인간의 지각에 기초한 경험주의적인 해석을, 칸트는 시간과 공간이 외 부 세계에 존재하는 실체가 아니라 인간의 감각 경험을 가능하게 하는 일종의 인식 형식 이라는 해석을 제시했다. 19세기 전반기에 발견되어 체계적으로 개발된 비유클리드 기하 학은 시간과 공간의 본성에 대한 인간의 이해에 중요한 변화를 가져왔다. (...)
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  36.  40
    On Superluminal Particles and the Extended Relativity Theories.Carlos Castro - 2012 - Foundations of Physics 42 (9):1135-1152.
    Superluminal particles are studied within the framework of the Extended Relativity theory in Clifford spaces (C-spaces). In the simplest scenario, it is found that it is the contribution of the Clifford scalar component π of the poly-vector-valued momentum which is responsible for the superluminal behavior in ordinary spacetime due to the fact that the effective mass $\mathcal{M} = \sqrt{ M^{2} - \pi^{2} }$ is imaginary (tachyonic). However, from the point of view of C-space, there is no superluminal (tachyonic) (...)
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  37.  59
    Disconfirmation of Whitehead’s, Relativity Theory-A Critical Reply.Dean R. Fowler - 1974 - Process Studies 4 (4):288-290.
  38. Time Lapse and the Degeneracy of Time: Gödel, Proper Time and Becoming in Relativity Theory.Richard T. W. Arthur - unknown
    In the transition to Einstein’s theory of Special Relativity (SR), certain concepts that had previously been thought to be univocal or absolute properties of systems turn out not to be. For instance, mass bifurcates into (i) the relativistically invariant proper mass m0, and (ii) the mass relative to an inertial frame in which it is moving at a speed v = βc, its relative mass m, whose quantity is a factor γ = (1 – β2) -1/2 times the (...)
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  39. (2 other versions)Shifting sands: An interest relative theory of vagueness.Delia Graff Fara - 2000 - Philosophical Topics 28 (1):45--81.
    I propose that the meanings of vague expressions render the truth conditions of utterances of sentences containing them sensitive to our interests. For example, 'expensive' is analyzed as meaning 'costs a lot', which in turn is analyzed as meaning 'costs significantly greater than the norm'. Whether a difference is a significant difference depends on what our interests are. Appeal to the proposal is shown to provide an attractive resolution of the sorites paradox that is compatible with classical logic and semantics.
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  40.  53
    The Newtonian Limit of Relativity Theory and the Rationality of Theory Change.Andrés Rivadulla - 2004 - Synthese 141 (3):417 - 429.
    The aim of this paper is to elucidate the question of whether Newtonian mechanics can be derived from relativity theory. Physicists agree that classical mechanics constitutes a limiting case of relativity theory. By contrast, philosophers of science like Kuhn and Feyerabend affirm that classical mechanics cannot be deduced from relativity theory because of the incommensurability between both theories; thus what we obtain when we take the limit c → ∞ in relativistic mechanics cannot be (...)
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  41. The combination of relativity theory and quantum theory.Arthur Stanley Eddington - 1943 - Dublin: Institute for Advanced Studies.
     
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  42.  75
    (1 other version)Combining Statistical-Thermodynamics and Relativity Theory: Methodological and Foundations Problems.John Earman - 1978 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1978:157 - 185.
  43.  68
    Remarks on the Interest-relative Theory of Vagueness.María Cerezo - 2013 - Acta Analytica 28 (3):381-394.
    I discuss the interest-relative account of vagueness and argue for a distinction between relational vague predicates and non-relational vague predicates depending on the kind of properties expressed by them. The strategy rests on three arguments arising from the existence of clear cases of a vague predicate, from contexts in which a different answer is required for questions about whether a vague predicate applies to an item, and whether such an item satisfies the interest of an agent, and from cases where (...)
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  44.  17
    Relativity Theory and Historicity of Physical Systems.Hans-Jürgen Treder - 1970 - In Hermann Bondi, Wolfgang Yourgrau & Allen duPont Breck (eds.), Physics, logic, and history. New York,: Plenum Press. pp. 253--264.
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  45. Covariance/invariance: A Cognitive Heuristic in Einstein's Relativity Theory Formation.Andrea Cerroni - 2000 - Foundations of Science 5 (2):209-224.
    Relativity Theory by Albert Einstein has been so far littleconsidered by cognitive scientists, notwithstanding its undisputedscientific and philosophical moment. Unfortunately, we don't have adiary or notebook as cognitively useful as Faraday's. But physicshistorians and philosophers have done a great job that is relevant bothfor the study of the scientist's reasoning and the philosophy ofscience. I will try here to highlight the fertility of a `triangulation'using cognitive psychology, history of science and philosophy of sciencein starting answering a clearly very (...)
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  46.  48
    (1 other version)Wittgenstein’s Thought Experiments and Relativity Theory.Carlo Penco - 2019 - In A. C. Grayling, Shyam Wuppuluri, Christopher Norris, Nikolay Milkov, Oskari Kuusela, Danièle Moyal-Sharrock, Beth Savickey, Jonathan Beale, Duncan Pritchard, Annalisa Coliva, Jakub Mácha, David R. Cerbone, Paul Horwich, Michael Nedo, Gregory Landini, Pascal Zambito, Yoshihiro Maruyama, Chon Tejedor, Susan G. Sterrett, Carlo Penco, Susan Edwards-Mckie, Lars Hertzberg, Edward Witherspoon, Michel ter Hark, Paul F. Snowdon, Rupert Read, Nana Last, Ilse Somavilla & Freeman Dyson (eds.), Wittgensteinian : Looking at the World From the Viewpoint of Wittgenstein’s Philosophy. Springer Verlag. pp. 341-362.
    In this paper, I discuss the similarity between Wittgenstein’s use of thought experiments and Relativity Theory. I begin with introducing Wittgenstein’s idea of “thought experiments” and a tentative classification of different kinds of thought experiments in Wittgenstein’s work. Then, after presenting a short recap of some remarks on the analogy between Wittgenstein’s point of view and Einstein’s, I suggest three analogies between the status of Wittgenstein’s mental experiments and Relativity theory: the topics of time dilation, the (...)
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  47.  7
    An evaluation of relativity theory after a half-century.Charles Musès - 1953 - New York,: S. Weiser.
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  48.  19
    An interaction interpretation of special relativity theory. Part II.Richard Schlegel - 1973 - Foundations of Physics 3 (3):277-295.
    The interaction interpretation of special relativity theory (elaborated in Part I) is discussed in relation to quantum theory. The relativistic transformations (Lorentz processes) of physical variables, on the interaction interpretation, are observation-interaction dependent, just as are the physical values (eigenvalues) of systems described by quantum-theoretic state functions; a common, basic structure of the special relativity and quantum theories can therefore be presented. The constancy of the light speed is shown to follow from interaction-transformations of frequency and (...)
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  49. Robert Hermann.Bohr-Sommerfeld Quantization in General Relativity - 1980 - In A. R. Marlow (ed.), Quantum theory and gravitation. New York: Academic Press.
     
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  50.  51
    (1 other version)On relative orbital rotation in relativity theory.David B. Malament - 2003 - In A. Ashtekar (ed.), Revisiting the Foundations of Relativistic Physics. Springer. pp. 175--190.
    We consider the following question within both Newtonian physics and relativity theory. "Given two point particles X and Y, if Y is rotating relative to X, does it follow that X is rotating relative to Y?" As it stands the question is ambiguous. We discuss one way to make it precise and show that, on that reading at least, the answers given by the two theories are radically different. The relation of relative orbital rotation turns out to be (...)
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