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  1. Quantum Equilibrium and the Origin of Absolute Uncertainty.Detlef Durr, Sheldon Goldstein & Nino Zanghi - 1992 - Journal of Statistical Physics 67:843-907.
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  • A global equilibrium as the foundation of quantum randomness.Detlef Dürr, Sheldon Goldstein & Nino Zanghí - 1993 - Foundations of Physics 23 (5):721-738.
    We analyze the origin of quantum randomness within the framework of a completely deterministic theory of particle motion—Bohmian mechanics. We show that a universe governed by this mechanics evolves in such a way as to give rise to the appearance of randomness, with empirical distributions in agreement with the predictions of the quantum formalism. Crucial ingredients in our analysis are the concept of the effective wave function of a subsystem and that of a random system. The latter is a notion (...)
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  • Theory construction and selection in modern physics: the S matrix.James T. Cushing - 1990 - New York: Cambridge University Press.
    One of the major philosophical problems in physical sciences is what criteria should determine how scientific theories are selected and justified in practice and whether, in describing observable physical phenomena, such theories are effectively constrained to be unique. This book studies the example of a particular theory, the S-matrix theory. The S-matrix program was initiated by Heisenberg to deal with difficulties encountered in quantum field theories in describing particular phenomena. Since then, each theory has at different times been favored as (...)
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  • Quantum Mechanics. Historical Contingency and the Copenhagen Hegemony.James T. Cushing - 1996 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 27 (2):353-358.
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  • Quantum Mechanics: Historical Contingency and the Copenhagen Hegemony.James T. Cushing - 1994 - University of Chicago Press.
    Why does one theory "succeed" while another, possibly clearer interpretation, fails? By exploring two observationally equivalent yet conceptually incompatible views of quantum mechanics, James T. Cushing shows how historical contingency can be crucial to determining a theory's construction and its position among competing views. Since the late 1920s, the theory formulated by Niels Bohr and his colleagues at Copenhagen has been the dominant interpretation of quantum mechanics. Yet an alternative interpretation, rooted in the work of Louis de Broglie in the (...)
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  • Models and methodologies in current theoretical high-energy physics.James T. Cushing - 1982 - Synthese 50 (1):5 - 101.
    A case study of the development of quantum field theory and of S-matrix theory, from their inceptions to the present, is presented. The descriptions of science given by Kuhn and by Lakatos are compared and contrasted as they apply to this case study. The episodes of the developments of these theories are then considered as candidates for competing research programs in Lakatos' methodology of scientific research programs. Lakatos' scheme provides a reasonable overall description and a plausible assessment of the relative (...)
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  • The Structure of Scientific Inference.Robert L. Causey - 1976 - Philosophical Review 85 (1):137.
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  • Foundations of science.Norman Robert Campbell - 1920 - New York,: Dover Publications.
    Reprint of the original, first published in 1919.
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  • Foundations of Science: The Philosophy of Theory and Experiment.Norman Robert Campbell - 1957 - Dover Publications.
    A bridge between semipopular works for the general reader has technical treatises written for specialists, this excellent work discusses the foundation ideas and background of modern physics. It is not a text on theoretical physics, but a discussion of the methods of physical description and construction of theory. It is especially valuable for a physicist with a background in elementary calculus who is interested in the ideas which give meaning to the data and tools of modern physics.
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  • Wholeness and the implicate order.David Bohm - 1980 - New York: Routledge.
    In this classic work David Bohm, writing clearly and without technical jargon, develops a theory of quantum physics which treats the totality of existence as an unbroken whole.
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  • Wholeness and the Implicate Order.David Bohm - 1981 - British Journal for the Philosophy of Science 32 (3):303-305.
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  • Wholeness and the Implicate Order.David Bohm - 1980 - New York: Routledge.
    In his classic work, _Wholeness and the Implicate Order_, David Bohm develops a theory of quantum physics which treats the totality of existence, including matter and consciousness, as an unbroken whole. David Bohm presents a rational and scientific theory which explains cosmology and the nature of reality; written clearly, and without the use of technical jargon, it is essential reading for those interested in physics, philosophy, psychology and the connection between consciousness and matter. David Bohm was one of the foremost (...)
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  • Wholeness and the Implicate Order.David Bohm - 1980 - New York: Routledge.
    David Bohm was one of the foremost scientific thinkers and philosophers of our time. Although deeply influenced by Einstein, he was also, more unusually for a scientist, inspired by mysticism. Indeed, in the 1970s and 1980s he made contact with both J. Krishnamurti and the Dalai Lama whose teachings helped shape his work. In both science and philosophy, Bohm's main concern was with understanding the nature of reality in general and of consciousness in particular. In this classic work he develops (...)
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  • The undivided universe: an ontological interpretation of quantum theory.David Bohm - 1993 - New York: Routledge. Edited by B. J. Hiley.
    In the The Undivided Universe, David Bohn and Basil Hiley present a radically different approach to quantum theory.
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  • The Undivided Universe: An Ontological Interpretation of Quantum Theory.D. Bohm, B. J. Hiley & J. S. Bell - 1993 - Synthese 107 (1):145-165.
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  • A Suggested Interpretation of the Quantum Theory in Terms of ‘Hidden’ Variables, I and II.David Bohm - 1952 - Physical Review (85):166-193.
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  • Models and Analogies in Science.Mary B. Hesse - 1966 - Philosophy and Rhetoric 3 (3):190-191.
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  • Constructing Quarks: A Sociological History of Particle Physics.Andrew Pickering - 1990 - Synthese 82 (1):163-174.
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  • Models and Analogies in Science.Mary Hesse - 1965 - British Journal for the Philosophy of Science 16 (62):161-163.
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  • (2 other versions)Quantum Non-Locality and Relativity: Metaphysical Intimations of Modern Physics.Tim Maudlin - 1997 - Noûs 31 (4):557-568.
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  • Constructing Quarks: A sociological history of particle physics.Andrew Pickering - 1984 - University of Chicago Press.
    Inviting a reappraisal of the status of scientific knowledge, Andrew Pickering suggests that scientists are not mere passive observers and reporters of nature.
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  • Models and Analogies in Science.Mary B. Hesse - 1963 - [Notre Dame, Ind.]: University of Notre Dame Press.
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  • The structure of scientific inference.Mary B. Hesse - 1974 - [London]: Macmillan.
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  • On a Realistic Theory for Quantum Physics.Sheldon Goldstein - unknown
    future evolution of the field. These ideas thou h old 'th k oug o, are ei er un nown oz misunderstood, Our point here is that a stron realistic os". g ' ' posi'.ion has consequences: it offers a completely natural..
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  • (1 other version)Quantum Non-Locality and Relativity: Aristotelian Society Series.Tim Maudlin & Lawrence Sklar - 1994 - British Journal for the Philosophy of Science 45 (3):933-934.
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