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Philosophy of Physics

Philosophical Quarterly 44 (177):538-540 (1994)

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  1. Selection, drift, and the “forces” of evolution.Christopher Stephens - 2004 - Philosophy of Science 71 (4):550-570.
    Recently, several philosophers have challenged the view that evolutionary theory is usefully understood by way of an analogy with Newtonian mechanics. Instead, they argue that evolutionary theory is merely a statistical theory. According to this alternate approach, natural selection and random genetic drift are not even causes, much less forces. I argue that, properly understood, the Newtonian analogy is unproblematic and illuminating. I defend the view that selection and drift are causes in part by attending to a pair of important (...)
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  • The philosophical case for open theism.Alan Rhoda - 2007 - Philosophia 35 (3-4):301-311.
    The goal of this paper is to defend open theism vis-à-vis its main competitors within the family of broadly classical theisms, namely, theological determinism and the various forms of non-open free-will theism, such as Molinism and Ockhamism. After isolating two core theses over which open theists and their opponents differ, I argue for the open theist position on both points. Specifically, I argue against theological determinists that there are future contingents. And I argue against non-open free-will theists that future contingency (...)
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  • Scientific Realism and Quantum Mechanics: Revisiting a Controversial Relation.Maria Panagiotatou - 2017 - International Studies in the Philosophy of Science 31 (3):243-259.
    ABSTRACT: The article examines the controversial relation of scientific realism with quantum mechanics. To this end, two distinct discussions are invoked: the discussion about ‘realism’ in the context of quantum mechanics and the discussion about ‘scientific realism’ in the context of the general philosophy of science. The aim is to distinguish them in order, first, to argue that the former—revolving around ‘local realism’ and the theorems of Bell and Kochen–Specker—unjustifiably identifies realism with features of a particular worldview, and thereby fosters (...)
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  • Functionalism, superduperfunctionalism, and physicalism: lessons from supervenience.Ronald Endicott - 2016 - Synthese 193 (7):2205-2235.
    Philosophers almost universally believe that concepts of supervenience fail to satisfy the standards for physicalism because they offer mere property correlations that are left unexplained. They are thus compatible with non-physicalist accounts of those relations. Moreover, many philosophers not only prefer some kind of functional-role theory as a physically acceptable account of mind-body and other inter-level relations, but they use it as a form of “superdupervenience” to explain supervenience in a physically acceptable way. But I reject a central part of (...)
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  • Are thought experiments “disturbing”? The case of armchair physics.Samuel Schindler & Pierre Saint-Germier - 2020 - Philosophical Studies 177 (9):2671-2695.
    Proponents of the “negative program” in experimental philosophy have argued that judgements in philosophical cases, also known as case judgements, are unreliable and that the method of cases should be either strongly constrained or even abandoned. Here we put one of the main proponent’s account of why philosophical cases may cause the unreliability of case judgements to the test. We conducted our test with thought experiments from physics, which exhibit the exact same supposedly “disturbing characteristics” of philosophical cases.
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  • Teacher and student with a critical pan-epistemic orientation: An ethical necessity for Africanising the educational curriculum in Africa.M. B. Ramose - 2016 - South African Journal of Philosophy 35 (4):546-555.
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  • Some Trends in the Philosophy of Physics.Henrik Zinkernagel - 2011 - Theoria 26 (2):215-241.
    A short review of some recent developments in the philosophy of physics is presented. I focus on themes which illustrate relations and points of common interest between philosophy of physics and three of its `neighboring' elds: Physics, metaphysics and general philosophy of science. The main examples discussed in these three `border areas' are decoherence and the interpretation of quantum mechanics; time in physics and metaphysics; and methodological issues surrounding the multiverse idea in modern cosmology.
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  • The ontological duality of space—Time variables.Rom Harré - 1997 - International Studies in the Philosophy of Science 11 (1):83-96.
    Abstract The grammar of spatial and temporal concepts cannot, it is argued, be the same in their application to the (manifest) world as perceived and to the (nether) world of unobservable causes as modelled in physics. A parallel case is the dual meaning of colour words, for hues and for material dispositions. The keys to differentiating the two main ranges of uses of ?s? and ?t? are: differences in criteria of numerical and qualitative identity in the two ?worlds'; differences in (...)
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  • Reductionism's demise: Cold comfort.Donald H. Wacome - 2004 - Zygon 39 (2):321-337.
    . Nonreductive physicalism, as opposed to reductionism, enjoys wide popularity by virtue of being regarded as comporting with the traditional image of human beings as free and ontologically unique without the difficulties of mind-body dualism. A consideration of reasons, both good and bad, for which reductionism is rejected suggests instead that the move to nonreductive physicalism does nothing to mitigate the implications of a physicalist account of human nature.
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  • (3 other versions)Möglichkeit, Wirklichkeit und Quantenmechanik.Boris Koznjak - 2007 - Prolegomena 6 (2):223-252.
    In this paper a possible interpretative value of Aristotle’s fundamental ontological doctrine of potentiality and actuality is considered in the context of operationally undoubtedly the most successful but interpretatively still controversial theory of modern physics – quantum mechanics – especially regarding understanding the nature of the world, the phenomena of which it describes and predicts so successfully. In particular, beings of the atomic world are interpreted as real potential beings actualized by the measurement process in appropriate experimental arrangement, and the (...)
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