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  1. (1 other version)The emergence and interpretation of probability in Bohmian mechanics.Craig Callender - 2006 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (2):351-370.
    A persistent question about the deBroglie–Bohm interpretation of quantum mechanics concerns the understanding of Born’s rule in the theory. Where do the quantum mechanical probabilities come from? How are they to be interpreted? These are the problems of emergence and interpretation. In more than 50 years no consensus regarding the answers has been achieved. Indeed, mirroring the foundational disputes in statistical mechanics, the answers to each question are surprisingly diverse. This paper is an opinionated survey of this literature. While acknowledging (...)
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  • Quantum propensities.Mauricio Suárez - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (2):418-438.
    This paper reviews four attempts throughout the history of quantum mechanics to explicitly employ dispositional notions in order to solve the quantum paradoxes, namely: Margenau's latencies, Heisenberg's potentialities, Maxwell's propensitons, and the recent selective propensities interpretation of quantum mechanics. Difficulties and challenges are raised for all of them, and it is concluded that the selective propensities approach nicely encompasses the virtues of its predecessors. Finally, some strategies are discussed for reading similar dispositional notions into two other well-known interpretations of quantum (...)
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  • (1 other version)Quantum probability and many worlds.Meir Hemmo & Itamar Pitowsky - 2006 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (2):333-350.
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  • Finding Darwin's God: A Scientist's Search for Common Ground between God and Evolution.Kenneth R. Miller - 2002 - Journal of the History of Biology 35 (1):181-183.
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  • The coherence theory of truth.Nicholas Rescher - 1973 - Oxford,: Clarendon Press.
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  • (1 other version)An Essay on Free Will.Peter Van Inwagen - 1983 - New York: Oxford University Press.
    "This is an important book, and no one interested in issues which touch on the free will will want to ignore it."--Ethics. In this stimulating and thought-provoking book, the author defends the thesis that free will is incompatible with determinism. He disputes the view that determinism is necessary for moral responsbility. Finding no good reason for accepting determinism, but believing moral responsiblity to be indubitable, he concludes that determinism should be rejected.
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  • (3 other versions)The Coherence Theory of Truth.Nicholas Rescher - 1973 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 5 (2):382-389.
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  • Life's Solution: Inevitable Humans in a Lonely Universe.W. Hinzen - 2005 - Mind 114 (454):403-407.
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  • How to Think about the Problem of Free Will.Peter Inwagen - 2008 - The Journal of Ethics 12 (3-4):327-341.
    In this essay I present what is, I contend, the free-will problem properly thought through, or at least presented in a form in which it is possible to think about it without being constantly led astray by bad terminology and confused ideas. Bad terminology and confused ideas are not uncommon in current discussions of the problem. The worst such pieces of terminology are “libertarian free will” and “compatibilist free will.” The essay consists partly of a defense of the thesis that (...)
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  • (1 other version)The emergence and interpretation of probability in Bohmian mechanics.Craig Callender - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (2):351-370.
    A persistent question about the deBroglie–Bohm interpretation of quantum mechanics concerns the understanding of Born’s rule in the theory. Where do the quantum mechanical probabilities come from? How are they to be interpreted? These are the problems of emergence and interpretation. In more than 50 years no consensus regarding the answers has been achieved. Indeed, mirroring the foundational disputes in statistical mechanics, the answers to each question are surprisingly diverse. This paper is an opinionated survey of this literature. While acknowledging (...)
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  • How to Think about the Problem of Free Will.Peter van Inwagen - 2008 - The Journal of Ethics 12 (3-4):327 - 341.
    In this essay I present what is, I contend, the free-will problem properly thought through, or at least presented in a form in which it is possible to think about it without being constantly led astray by bad terminology and confused ideas. Bad terminology and confused ideas are not uncommon in current discussions of the problem. The worst such pieces of terminology are "libertarian free will" and "compatibilist free will." The essay consists partly of a defense of the thesis that (...)
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  • The Many-Worlds Interpretation of Quantum Mechanics.B. DeWitt & N. Graham (eds.) - 1973 - Princeton UP.
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  • (1 other version)Quantum probability and many worlds.Meir Hemmo - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (2):333-350.
    We discuss the meaning of probabilities in the many worlds interpretation of quantum mechanics. We start by presenting very briefly the many worlds theory, how the problem of probability arises, and some unsuccessful attempts to solve it in the past. Then we criticize a recent attempt by Deutsch to derive the quantum mechanical probabilities from the nonprobabilistic parts of quantum mechanics and classical decision theory. We further argue that the Born probability does not make sense even as an additional probability (...)
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  • An essay on free will.Peter van Inwagen & A. Phillips Griffiths - 1985 - Revue Philosophique de la France Et de l'Etranger 175 (4):557-558.
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  • Creation and Nothing, A Biblical, Philosophical, and Scientific Exploration.William Lane Craig - 2005 - Philosophy 80 (313):455-459.
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  • The entangled God: divine relationality and quantum physics.Kirk Wegter-McNelly - 2011 - London: Routledge.
    Setting the stage -- Relationality in contemporary theology -- Separateness in classical physics -- Entanglement in quantum physics -- Philosophical perspectives -- Entanglement, theologically speaking.
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  • Indeterminism in classical physics.Walter Hoering - 1969 - British Journal for the Philosophy of Science 20 (3):247-255.
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  • Der Alte mit dem Würfel: ein Beitrag zur Metaphysik der Quantenmechanik.Anna Ijjas - 2011 - Göttingen: Vandenhoeck & Ruprecht.
    Anna Ijjas entwickelt neue Ansatze, indem sie die Unzulanglichkeit gangiger Deutungsversuche aufzeigt, mit dem Ziel, auf diese Weise zum Denken und zum Gesprach anzuregen.
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  • Is classical mechanics really time-reversible and deterministic?Keith Hutchison - 1993 - British Journal for the Philosophy of Science 44 (2):307-323.
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  • Chance as an Explanatory Factor in Evolutionary Biology.Timothy Shanahan - 1991 - History and Philosophy of the Life Sciences 13 (2):249 - 268.
    Darwinian evolutionary biology has often been criticized for appealing to the notion of 'chance' in its explanations. According to some critics, such appeals exhibit the explanatory poverty of evolutionary theory. In response, defenders of Darwinism sometimes downplay the importance of 'chance' in evolution. I believe that both of these approaches are mistaken. The main thesis of this paper is that the term 'chance' encompasses a number of distinct concepts, and that at least some of these concepts serve essential explanatory functions (...)
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  • Evolutionary and Molecular Biology: Scientific Perspectives on Divine Action.Robert Russell, Stoeger J., R. William & Francisco José Ayala - 1998 - Vatican Observatory.
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  • Science and Providence : God's Interaction with the World.J. C. Polkinghorne - 1989 - Spck.
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  • Does quantum mechanics play a non-trivial role in life?P. C. W. Davies - unknown
    There have been many claims that quantum mechanics plays a key role in the origin and/or operation of biological organisms, beyond merely providing the basis for the shapes and sizes of biological molecules and their chemical affinities. These range from Schr¨odinger’s suggestion that quantum fluctuations produce mutations, to Hameroff and Penrose’s conjecture that quantum coherence in microtubules is linked to consciousness. I review some of these claims in this paper, and discuss the serious problem of decoherence. I advance some further (...)
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  • Beyond the Big Bang: Quantum Cosmologies and God.Willem B. Drees - 1993 - British Journal for the Philosophy of Science 44 (3):577-578.
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