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  1. (1 other version)Scientific Explanation and the Causal Structure of the World.Wesley C. Salmon - 1984 - Princeton University Press.
    The philosophical theory of scientific explanation proposed here involves a radically new treatment of causality that accords with the pervasively statistical character of contemporary science. Wesley C. Salmon describes three fundamental conceptions of scientific explanation--the epistemic, modal, and ontic. He argues that the prevailing view is untenable and that the modal conception is scientifically out-dated. Significantly revising aspects of his earlier work, he defends a causal/mechanical theory that is a version of the ontic conception. Professor Salmon's theory furnishes a robust (...)
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  • Explanatory unification and the causal structure of the world.Philip Kitcher - 1962 - In Philip Kitcher & Wesley C. Salmon (eds.), Scientific Explanation. Univ of Minnesota Pr. pp. 410-505.
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  • Contrastive explanation and the demons of determinism.Christopher Hitchcock - 1999 - British Journal for the Philosophy of Science 50 (4):585-612.
    It it tempting to think that if an outcome had some probability of not occurring, then we cannot explain why that outcome in fact occurred. Despite this intuition, most philosophers of science have come to admit the possibility of indeterministic explanation. Yet some of them continue to hold that if an outcome was not determined, it cannot be explained why that outcome rather than some other occurred. I argue that this is an untenable compromise: if indeterministic explanation is possible, then (...)
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  • The contrast theory of why-questions.Dennis Temple - 1988 - Philosophy of Science 55 (1):141-151.
    Classic studies of explanation, such as those of Hempel and Bromberger, took it for granted that an explanation-seeking question of the form "Why P?" should be understood as asking about the proposition P. This view has been recently challenged by Bas van Fraassen and Alan Garfinkel. They acknowledge that some questions have the surface form "Why P?", but they hold that a correct reading for why-questions should take the form "Why P (rather than Q)?", where Q is a contrasting alternative. (...)
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  • (1 other version)Multiple realization and the metaphysics of reduction.Jaegwon Kim - 1992 - Philosophy and Phenomenological Research 52 (1):1-26.
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  • Testament of a recovering eliminativist.Andrew Melnyk - 1996 - Philosophy of Science 63 (3):S185-S193.
    If physicalism is true (e.g., if every event is a fundamental-physical event), then it looks as if there is a fundamental-physical explanation of everything. If so, then what is to become of special scientific explanations? They seem to be excluded by the fundamental-physical ones, and indeed to be excellent candidates for elimination. I argue that, if physicalism is true, there probably is a fundamental-physical explanation of everything, but that nevertheless there can perfectly well be special scientific explanations as well, notwithstanding (...)
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  • (1 other version)Multiple Realization and the Metaphysics of Reduction.Jaegwon Kim - 2003 - In John Heil (ed.), Philosophy of Mind: A Guide and Anthology. New York: Oxford University Press.
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  • A Primer on Determinism.John Earman - 1986 - D. Reidel.
    Determinism is a perennial topic of philosophical discussion. Very little acquaintance with the philosophical literature is needed to reveal the Tower of ...
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  • Contrastive explanation and causal triangulation.Peter Lipton - 1991 - Philosophy of Science 58 (4):687-697.
    Alan Garfinkel (1981) and Bas van Fraassen (1980), among others, have proposed a contrastive theory of explanation, according to which the proper form of an explanatory why-question is not simply "Why P?" but "Why P rather than Q?". Dennis Temple (1988) has argued in this journal that the contrastive explanandum "P rather than Q" is equivalent to the conjunction, "P and not-Q". I show that the contrast is not equivalent to the conjunction, nor to other plausible noncontrastive candidates. I then (...)
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  • The statistical character of evolutionary theory.Barbara L. Horan - 1994 - Philosophy of Science 61 (1):76-95.
    This paper takes a critical look at the idea that evolutionary theory is a statistical theory. It argues that despite the strong instrumental motivation for statistical theories, they are not necessary to explain deterministic systems. Biological evolution is fundamentally a result of deterministic processes. Hence, a statistical theory is not necessary for describing the evolutionary forces of genetic drift and natural selection, nor is it needed for describing the fitness of organisms. There is a computational advantage to the statistical theory (...)
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  • Nonlocality, local indeterminism and consciousness.David Hodgson - 1996 - Ratio 9 (1):1-22.
    In this paper, I argue that a satisfactory account of consciousness will involve both (1) local indeterminism, in that some relevant events are not wholly and unequivocally pre‐determined by immediately prior local events, and (2) nonlocality, in that, within the leeways left by local indeterminism, what happens can be immediately affected by spatially separated or extended events. I briefly consider if this can be avoided by treating consciousness as supervenient and epiphenomenal; and I suggest that current theories of consciousness break (...)
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  • Emergence and strange attractors.David V. Newman - 1996 - Philosophy of Science 63 (2):245-61.
    Recent work in the Philosophy of Mind has suggested that alternatives to reduction are required in order to explain the relationship between psychology and biology or physics. Emergence has been proposed as one such alternative. In this paper, I propose a precise definition of emergence, and I argue that chaotic systems provide concrete examples of properties that meet this definition. In particular, I suggest that being in the basin of attraction of a strange attractor is an emergent property of any (...)
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  • (1 other version)The causal efficacy of content.Gabriel Segal & Elliott Sober - 1991 - Philosophical Studies 63 (July):1-30.
    Several philosophers have argued recently that semantic properties do play a causal role. 1 It is our view that none of these arguments are satisfactory. Our aim is to reveal some of the deficiencies of these arguments, and to reassess the question in our own way. In section 1, we shall explain in more detail what is involved in the pretheoretical idea of a causally efficacious property and so provide a fuller sense of the issue. In section 2 we shall (...)
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  • Review of Daniel Clement Dennett: Elbow Room: The Varieties of Free Will Worth Wanting[REVIEW]Daniel C. Dennett - 1986 - Ethics 96 (2):423-425.
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  • (1 other version)Is the Theory of Natural Selection a Statistical Theory?Alexander Rosenberg - 1988 - Canadian Journal of Philosophy 18 (sup1):187-207.
    In The Structure of Biological Science I argued that the theory of natural selection is a statistical theory for reasons much like those which makes thermodynamics a statistical theory. In particular, the theory claims that fitness differences are large enough and the life span of species long enough for increases in average fitness always to appear in the long run; and this claim, I held, is of the same form as the statistical version of the second law of thermodynamics.For the (...)
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  • Apportioning Causal Responsibility.Elliott Sober - 1988 - Journal of Philosophy 85 (6):303.
    (Journal of Philosophy, 1988, 85:303-318).
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  • Scientific Explanation and the Causal Structure of the World. Wesley Salmon.James H. Fetzer - 1987 - Philosophy of Science 54 (4):597-610.
    If the decades of the forties through the sixties were dominated by discussion of Hempel's “covering law“ explication of explanation, that of the seventies was preoccupied with Salmon's “statistical relevance” conception, which emerged as the principal alternative to Hempel's enormously influential account. Readers of Wesley C. Salmon's Scientific Explanation and the Causal Structure of the World, therefore, ought to find it refreshing to discover that its author has not remained content with a facile defense of his previous investigations; on the (...)
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  • (1 other version)Explaining contrastive facts.David-Hillel Ruben - 1986 - Analysis 46 (4):35-37.
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  • (1 other version)Explaining Contrastive Facts.David-Hillel Ruben - 1987 - Analysis 47 (1):35-37.
    Are explanations contrastive? I argue that any contrastive argument and can be reduced to a non-contrastive one, and hence a theory of explanation need not treat them as an additional kind of explanation.
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  • (1 other version)Is the Theory of Natural Selection a Statistical Theory?Alexander Rosenberg - 1988 - Canadian Journal of Philosophy, Supplementary Volume 14:187-207.
    In The Structure of Biological Science I argued that the theory of natural selection is a statistical theory for reasons much like those which makes thermodynamics a statistical theory. In particular, the theory claims that fitness differences are large enough and the life span of species long enough for increases in average fitness always to appear in the long run; and this claim, I held, is of the same form as the statistical version of the second law of thermodynamics.For the (...)
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  • A Real Contrast.Peter Lipton - 1987 - Analysis 47 (4):207 - 208.
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  • Is indeterminism the source of the statistical character of evolutionary theory?Leslie Graves, Barbara L. Horan & Alex Rosenberg - 1999 - Philosophy of Science 66 (1):140-157.
    We argue that Brandon and Carson's (1996) "The Indeterministic Character of Evolutionary Theory" fails to identify any indeterminism that would require evolutionary theory to be a statistical or probabilistic theory. Specifically, we argue that (1) their demonstration of a mechanism by which quantum indeterminism might "percolate up" to the biological level is irrelevant; (2) their argument that natural selection is indeterministic because it is inextricably connected with drift fails to join the issue with determinism; and (3) their view that experimental (...)
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  • (1 other version)The Structure of Biological Science.Alexander Rosenberg - 1987 - British Journal for the Philosophy of Science 38 (1):119-121.
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  • Mind and Brain.Ted Honderich - 1989 - Oxford, GB: Oxford University Press.
    This text examines the exact nature of the relation between mental and neural events; how both sorts of events come about; and their relation to actions. The answers that Honderich provides in Volume I constitute a new determinist philosophy of mind.
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