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Einstein and the quantum: fifty years of struggle

In Robert G. Colodny (ed.), From Quarks to Quasars: Philosophical Problems of Modern Physics. University of Pittsburgh Press. pp. 349--81 (1986)

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  1. False Vacuum: Early Universe Cosmology and the Development of Inflation.Chris Smeenk - 2005 - In Eisenstaedt Jean & Knox A. J. (eds.), The Universe of General Relativity. Birkhauser. pp. 223-257.
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  • Revisiting the Einstein—Bohr Dialogue.Don Howard - 2007 - Iyyun 56:57–90.
    as the chief novelty in the quantum description of nature, Einstein for having found vindication in 3 relativity theory for either positivism or realism, depending upon whom one asks. Famous as is each in his own domain, they are famous also, together, for their decades-long disagreement over the future of fundamental physics, their respective embrace and rejection of quantum indeterminacy being only the most widely-known point of contention.
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  • The nature of Einstein's objections to the Copenhagen interpretation of quantum mechanics.Michel Paty - 1995 - Foundations of Physics 25 (1):183-204.
    In what follows, I examine three main points which may help us to understand the deep nature of Einstein's objections to quantum mechanics. After having played a fundamental pioneer role in the birth of quantum physics, Einstein was, as is well known, far less enthusiastic about its constitution as a quantum mechanics and, since 1927, he constantly argued against the pretention of its founders and proponents to have settled a definitive and complete theory. I emphasize first the importance of the (...)
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  • Modular localization and the holistic structure of causal quantum theory, a historical perspective.Bert Schroer - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 49:109-147.
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  • Bohr and the Photon.John Stachel - 2009 - In Wayne C. Myrvold & Joy Christian (eds.), Quantum Reality, Relativistic Causality, and Closing the Epistemic Circle. Springer. pp. 69--83.
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  • Length matters: The einstein–swann correspondence and the constructive approach to the special theory of relativity.Amit Hagar - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (3):532-556.
    I discuss a rarely mentioned correspondence between Einstein and Swann on the constructive approach to the special theory of relativity, in which Einstein points out that the attempts to construct a dynamical explanation of relativistic kinematical effects require postulating a fundamental length scale in the level of the dynamics. I use this correspondence to shed light on several issues under dispute in current philosophy of spacetime that were highlighted recently in Harvey Brown’s monograph Physical Relativity, namely, Einstein’s view on the (...)
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  • Quantum theory and the observation problem.Ravi Gomatam - 1999 - Journal of Consciousness Studies 6 (11-12):11-12.
    Although quantum theory is applicable, in principle, to both the microscopic and macroscopic realms, the strategy of practically applying quantum theory by retaining a classical conception of the macroscopic world has had tremendous success. This has nevertheless rendered the task of interpretation daunting. We argue the need for recognizing and solving the ‘observation problem', namely constructing a ‘quantum-compatible’ view of the properties and states of macroscopic objects in everyday thinking to realistically interpret quantum theory consistently at both the microscopic and (...)
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  • Review essay.Don Howard - 1991 - Synthese 86 (1):123-141.
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  • A simplified genesis of quantum mechanics.Olivier Darrigol - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (2):151-166.
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  • Einstein and Bohr's Rhetoric of Complementarity.Mara Beller - 1993 - Science in Context 6 (1):241-255.
    The ArgumentThe aim of this paper is to provide a critical perspective for Einstein's opposition to the Copenhagen interpretation of quantum physics, by analyzing the ingenious rhetoric of Bohr's principle of complementarity. I argue that what Bohr presents as arguments of “inevitability” are in fact merely arguments for the consistency of the quantum-mechanical scheme. Einstein's resistance to being persuaded by this potent technique of argumentation, and his rejection of Bohr's interpretation of quantum physics, appear consequently as an eminently reasonable position (...)
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  • Einstein, the reality of space, and the action-reaction principle.Dennis Lehmkuhl, P. Ghose & Harvey Brown - unknown
    Einstein regarded as one of the triumphs of his 1915 theory of gravity - the general theory of relativity - that it vindicated the action-reaction principle, while Newtonian mechanics as well as his 1905 special theory of relativity supposedly violated it. In this paper we examine why Einstein came to emphasise this position several years after the development of general relativity. Several key considerations are relevant to the story: the connection Einstein originally saw between Mach's analysis of inertia and both (...)
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  • (1 other version)Einstein's scientific style in the exploration of the quantum domain (a view on the relationship between theory and its object).Michel Paty - 2005 - Scientiae Studia 3 (4):597-619.
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  • Einstein et «Zweistein».John Stachel - 2005 - Revue de Synthèse 126 (2):353-365.
    Comme le suggère le sobriquet « Zweistein », Wolfgang Pauli fut considéré par la communauté des théoriciens de la physique comme son membre le plus éminent après Albert Einstein. Durant plus de trente-cinq ans, les deux hommes entretinrent des relations intellectuelles et personnelles. Cet article analyse les relations entre quatre thèmes récurrents de leurs discussions. 1) La théorie de la relativité: à l'âge de 20 ans, Pauli préparait un manuel qui fera autorité sur la relativité, manuel qu'il révisera vers la (...)
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  • (1 other version)Sobre o encontro casual de Norbert Wiener com Albert Einstein em uma viagem de trem.Michel Paty & Olival Freire Júnior - 2005 - Scientiae Studia 3 (4):621-634.
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  • Walther Bothe's contributions to the understanding of the wave-particle duality of light.Dieter Fick & Horst Kant - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (4):395-405.
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  • One hundred years of general relativity: Albert Einstein: Relativity: The special and the general theory, 100th anniversary edition. Princeton, NJ: Princeton University Press, 2015, 320 pp, £19.95 HB Andrew Robinson, Einstein. A Hundred Years of Relativity. Princeton, NJ: Princeton University Press, 2015, 256 pp, £18.95 PB.Katherine Brading, Sebastián Murgueitio Ramírez & Laura Wells - 2017 - Metascience 26 (1):49-57.
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  • Remarks on Einstein's original approach towards a quantum theory of radiation (about the article "Einstein y el efecto Compton").Michel Paty - 2013 - Scientiae Studia 11 (1):221-242.
    No artigo "Einstein y el efecto Compton", publicado neste número de SCIENTIÆ UDIA: , os autores estranham o fato de Einstein não ter declarado mais claramente o quanto esse efeito comprovava definitivamente o carácter corpuscular da radiação. A presente nota crítica pretende fornecer elementos adicionais de apreciação que permitam acompanhar o método de exploração do domínio dos quanta elaborado por Einstein, na ausência de uma teoria adequada, e praticado por ele de 1905 à 1925, evidenciando por esse meio propriedades inéditas (...)
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  • A note on the prehistory of indistinguishable particles.Daniela Monaldi - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (4):383-394.
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  • Pascual Jordan's resolution of the conundrum of the wave-particle duality of light.Anthony Duncan & Michel Janssen - 2008 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (3):634-666.
    In 1909, Einstein derived a formula for the mean square energy fluctuation in blackbody radiation. This formula is the sum of a wave term and a particle term. In a key contribution to the 1926 Dreim¨.
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  • The interpretation of the Einstein-Rupp experiments and their influence on the history of quantum mechanics.Jeroen van Dongen - 2007 - Historical Studies in the Physical and Biological Sciences 37:121-131.
    The Einstein-Rupp experiments were proposed in 1926 by Albert Einstein to study the wave versus particle nature of light. Einstein presented a theoretical analysis of these experiments to the Berlin Academy together with results of Emil Rupp, who claimed to have successfully carried them out. However, as the preceding paper has shown, Rupp's success was the result of scientific fraud. This paper will argue, after exploring their interpretation, that the experiments were a relevant part of the background to such celebrated (...)
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  • (1 other version)‘But one must not legalize the mentioned sin’: Phenomenological vs. dynamical treatments of rods and clocks in Einstein׳s thought.Marco Giovanelli - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 48 (1):20-44.
    The paper offers a historical overview of Einstein's oscillating attitude towards a "phenomenological" and "dynamical" treatment of rods and clocks in relativity theory. Contrary to what it has been usually claimed in recent literature, it is argued that this distinction should not be understood in the framework of opposition between principle and constructive theories. In particular Einstein does not seem to have plead for a "dynamical" explanation for the phenomenon rods contraction and clock dilation which was initially described only "kinematically". (...)
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