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  1. Physics and Philosophy: The Revolution in Modern Science.Werner Heisenberg - 1958 - New York: Harper.
    The seminal work by one of the most important thinkers of the twentieth century, Physics and Philosophy is Werner Heisenberg's concise and accessible narrative of the revolution in modern physics, in which he played a towering role. The outgrowth of a celebrated lecture series, this book remains as relevant, provocative, and fascinating as when it was first published in 1958. A brilliant scientist whose ideas altered our perception of the universe, Heisenberg is considered the father of quantum physics; he is (...)
  • The Historical Roots of ''Foundations of Quantum Physics'' as a Field of Research (1950–1970).Olival Freire - 2004 - Foundations of Physics 34 (11):1741-1760.
    The rising interest, in the late 20th century, in the foundations of quantum physics, a subject in which Franco Selleri has excelled, has suggested the fair question: how did it become so? The current answer says that experiments have allowed to bring into the laboratories some previous gedanken experiments, beginning with those about EPR and related to Bell’s inequalities. I want to explore an alternative view, by which there would have been, before Bell’s inequalities experimental tests, a change in the (...)
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  • Introduction.Abner Shimony - 1985 - Dialectica 39 (2):83-84.
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  • The Philosophy of Quantum Mechanics: The Interpretations of Quantum Mechanics in Historical Perspective.Lawrence Sklar - 1977 - Philosophy of Science 44 (2):332-332.
  • Device Physics vis‐à‐vis Fundamental Physics in Cold War America: The Case of Quantum Optics.Joan Bromberg - 2006 - Isis 97:237-259.
    Historians have convincingly shown the close ties U.S. physicists had with the military during the Cold War and have raised the question of whether this alliance affected the content of physics. Some have asserted that it distorted physics, shifting attention from fundamental problems to devices. Yet the papers of physicists in quantum electronics and quantum optics, fields that have been exemplary for those who hold the distortion thesis, show that the same scientists who worked on military devices simultaneously pursued fundamental (...)
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  • Quantum theory as an indication of a new order in physics. Part A. The development of new orders as shown through the history of physics.D. Bohm - 1971 - Foundations of Physics 1 (4):359-381.
    In this paper, we discuss the general significance of order in physics, as a first step toward the development of new notions of order. We begin with a brief historical discussion of the notions of order underlying ancient Greek views, and then go on to show how these changed in key ways with the rise of classical physics. This leads to a broader view of the significance of order, which helps to indicate what is to be meant by a change (...)
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  • On the intuitive understanding of nonlocality as implied by quantum theory.D. J. Bohm & B. J. Hiley - 1975 - Foundations of Physics 5 (1):93-109.
    We bring out the fact that the essential new quality implied by the quantum theory is nonlocality; i.e., that a system cannot be analyzed into parts whose basic properties do not depend on the state of the whole system. This is done in terms of the causal interpretation of the quantum theory, proposed by one of us (D.B.) in 2952, involving the introduction of the “quantum potential.” We show that this approach implies a new universal type of description, in which (...)
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  • On the impossible pilot wave.J. S. Bell - 1982 - Foundations of Physics 12 (10):989-999.
    The strange story of the von Neumann impossibility proof is recalled, and the even stranger story of later impossibility proofs, and how the impossible was done by de Broglie and Bohm. Morals are drawn.
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  • An exchange on local beables.John S. Bell, J. Clauser, M. Horne & A. Shimony - 1985 - Dialectica 39 (2):85-96.
    Summarya) Bell tries to formulate more explicitly a notion of “local causality”: correlations between physical events in different space‐time regions should be explicable in terms of physical events in the overlap of the backward light cones. It is shown that ordinary relativistic quantum field theory is not locally causal in this sense, and cannot be embedded in a locally causal theory.b) Clauser, Home and Shimony criticize several steps in Bell's argument that any theory of local “beables” is incompatible with quantum (...)
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  • Image and Logic: A Material Culture of Microphysics.Peter Galison (ed.) - 1997 - University of Chicago Press: Chicago.
    Engages with the impact of modern technology on experimental physicists. This study reveals how the increasing scale and complexity of apparatus has distanced physicists from the very science which drew them into experimenting, and has fragmented microphysics into different technical traditions.
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  • Conceptual foundations of quantum mechanics.Bernard D' Espagnat - 1971 - Redwood City, Calif.: Addison-Wesley, Advanced Book Program.
    Conceptual Foundations of Quantum Mechanics provides a detailed view of the conceptual foundations and problems of quantum physics, and a clear and comprehensive account of the fundamental physical implications of the quantum formalism. This book deals with nonseparability, hidden variable theories, measurement theories and several related problems. Mathematical arguments are presented with an emphasis on simple but adequately representative cases. The conclusion incorporates a description of a set of relationships and concepts that could compose a legitimate view of the world.
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  • The infamous boundary: seven decades of controversy in quantum physics.David Wick - 1995 - Boston: Birkhauser.
    The author of this book has traced the major lines of argument over those years in a most engaging style with clear descriptions of the concepts and ideas.
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  • Observation and Interpretation in the Philosophy of Physics, with Special Reference to Quantum Mechanics Proceedings.Stephan Körner - 1957 - Dover Publications.
     
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  • Pedagogy and the Practice of Science: Historical and Contemporary Perspectives.Wiebe E. Bijker, Michael Gordin, Trevor Pinch, Graeme Gooday, Hugh Gusterson & Kenji Ito - 2005 - MIT Press.
    Studies examining the ways in which the training of engineers and scientists shapes their research strategies and scientific identities.
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  • The theory of the universal wave function.Hugh Everett Iii - 1973 - In B. DeWitt & N. Graham (eds.), The Many-Worlds Interpretation of Quantum Mechanics. Princeton Up. pp. 3.
  • Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?Albert Einstein, Boris Podolsky & Nathan Rosen - 1935 - Physical Review (47):777-780.
  • Beables for quantum field theory.J. S. Bell - 1987 - In Basil J. Hiley & D. Peat (eds.), Quantum Implications: Essays in Honour of David Bohm. Methuen. pp. 227--234.
  • A Suggested Interpretation of the Quantum Theory in Terms of ‘Hidden’ Variables, I and II.David Bohm - 1952 - Physical Review (85):166-193.
  • Atomic-cascade Photons and Quantum-mechanical Nonlocality.J. S. Bell - 2004 - In Speakable and Unspeakable in Quantum Mechanics. Cambridge University Press. pp. 105--110.
  • La Nouvelle Cuisine.J. S. Bell - 2004 - In Speakable and Unspeakable in Quantum Mechanics. Cambridge University Press. pp. 232--248.
     
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  • On the Einstein Podolsky Rosen paradox.J. S. Bell - 2004 [1964] - In Speakable and Unspeakable in Quantum Mechanics. Cambridge University Press. pp. 14--21.
  • On the Problem of Hidden Variables in Quantum Mechanics.J. S. Bell - 2004 - In Speakable and Unspeakable in Quantum Mechanics. Cambridge University Press. pp. 1--13.
  • Bell, Bohm, and von Neumann: some philosophical inequalities concerning no-go theorems and the axiomatic method.Michael Stoeltzner - 2001 - In T. Placek & J. Butterfield (eds.), Non-Locality and Modality. Kluwer Academic Publishers. pp. 37--58.
    The present paper investigates the philosophical relationship between John von Neumann’s Nohidden-variable theorem and Bell’s inequalities. Bell erroneously takes the axiomatic method as implying a finality claim and thus ignores von Neumann’s strongly pragmatist stance towards mathematical physics. If one considers, however, Hilbert’s axiomatic method as a critical enterprise, Bell’s theorem improves von Neumann’s by defining a more appropriate notion of ‘ hidden variable’ that permits one to include Bohm’s interpretation which recovers the predictive content of quantum mechanics. Contrary to (...)
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  • Subtle Is the Lord: The Science and the Life of Albert Einstein.Abraham Pais - 1986 - Science and Society 50 (1):117-121.
     
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  • Bell's Theorem and the Different Concepts of Locality.P. H. Eberhard - 1978 - Il Nuovo Cimento 46:392--419.
  • A General Argument Against Superluminal Transmission through the Quantum Mechanical Measurement Process.G. C. Ghirardi, A. Rimini & T. Weber - 1980 - Lettere Al Nuovo Cimento 27:294--298.
  • Observation and interpretation in the philosophy of physics, with special reference to quantum mechanics.S. Körner - 1967 - Revue Philosophique de la France Et de l'Etranger 157:419-420.
     
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  • Simulating physics with computers.R. P. Feynman - 1982 - International Journal of Theoretical Physics 21 (6):467-488.