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  1. (1 other version)The Rise and Fall of British Emergentism.Brian P. Mclaughlin - 1992 - In Ansgar Beckermann, Hans Flohr & Jaegwon Kim (eds.), Emergence or Reduction?: Essays on the Prospects of Nonreductive Physicalism. New York: Walter de Gruyter. pp. 49-93.
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  • On the Plurality of Worlds.Allen Stairs - 1988 - Philosophy and Phenomenological Research 49 (2):333-352.
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  • Philosophy of Natural Science.Carl G. Hempel - 1967 - British Journal for the Philosophy of Science 18 (1):70-72.
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  • Physicalism, or Something near Enough.Jaegwon Kim - 2006 - Philosophical Quarterly 56 (223):306-310.
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  • (1 other version)Explanation, Reduction and Empiricism.P. K. Feyerabend - 1967 - Critica 1 (2):103-106.
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  • (1 other version)Cosmic Hermeneutics vs. Emergence: The Challenge of the Explanatory Gap.Tim Crane - 2010 - In Graham Macdonald & Cynthia Macdonald (eds.), Emergence in mind. New York: Oxford University Press. pp. 22-34.
    This chapter defends Terence Horgan's claim that any genuinely physicalist position must distinguish itself from (what has been traditionally known as) emergentism. It argues that physicalism is necessarily reductive in character — it must either give a reductive account of apparently non‐physical entities, or a reductive explanation of why there are non‐physical entities. It contends that many recent ‘non‐reductive’ physicalists do not do this, and that because of this they cannot adequately distinguish their view from emergentism. The conclusion is that (...)
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  • Mind and Meaning.Brian Loar - 1981 - New York: Cambridge University Press.
    Is linguistic meaning to be accounted for independently of the states of mind of language users, or can it only be explained in terms of them? If the latter, what account of the mental states in question avoids circularity? In this book Brian Loar offers a subtle and comprehensive theory that both preserves the natural priority of the mind in explanations of meaning, and gives an independent characterisation of its features. the nature of meaning and its relation to the mind (...)
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  • Who’s Afraid of Nagelian Reduction?Foad Dizadji-Bahmani, Roman Frigg & Stephan Hartmann - 2010 - Erkenntnis 73 (3):393-412.
    We reconsider the Nagelian theory of reduction and argue that, contrary to a widely held view, it is the right analysis of intertheoretic reduction. The alleged difficulties of the theory either vanish upon closer inspection or turn out to be substantive philosophical questions rather than knock-down arguments.
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  • On the Plurality of Worlds.David K. Lewis - 1986 - Malden, Mass.: Wiley-Blackwell.
    This book is a defense of modal realism; the thesis that our world is but one of a plurality of worlds, and that the individuals that inhabit our world are only a few out of all the inhabitants of all the worlds. Lewis argues that the philosophical utility of modal realism is a good reason for believing that it is true.
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  • (1 other version)The Structure of Science.Ernest Nagel - 1961 - Les Etudes Philosophiques 17 (2):275-275.
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  • Computability and Logic.George Boolos, John Burgess, Richard P. & C. Jeffrey - 1980 - New York: Cambridge University Press. Edited by John P. Burgess & Richard C. Jeffrey.
    Computability and Logic has become a classic because of its accessibility to students without a mathematical background and because it covers not simply the staple topics of an intermediate logic course, such as Godel's incompleteness theorems, but also a large number of optional topics, from Turing's theory of computability to Ramsey's theorem. This 2007 fifth edition has been thoroughly revised by John Burgess. Including a selection of exercises, adjusted for this edition, at the end of each chapter, it offers a (...)
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  • Philosophy of natural science.Carl Gustav Hempel - 1966 - Englewood Cliffs, N.J.,: Prentice-Hall.
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  • (1 other version)The sciences of the artificial.Herbert Alexander Simon - 1969 - [Cambridge,: M.I.T. Press.
    Continuing his exploration of the organization of complexity and the science of design, this new edition of Herbert Simon's classic work on artificial ...
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  • Aspects of scientific explanation.Carl G. Hempel - 1965 - In Carl Gustav Hempel (ed.), Aspects of Scientific Explanation and Other Essays in the Philosophy of Science. New York: The Free Press. pp. 504.
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  • The Structure of Science: Problems in the Logic of Scientific Explanation.Ernest Nagel - 1961 - New York, NY, USA: Harcourt, Brace & World.
    Introduction: Science and Common Sense Long before the beginnings of modern civilization, men ac- quired vast funds of information about their environment. ...
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  • Mind, Language and Reality: Philosophical Papers.Hilary Putnam - 1975 - New York: Cambridge University Press.
    Professor Hilary Putnam has been one of the most influential and sharply original of recent American philosophers in a whole range of fields. His most important published work is collected here, together with several new and substantial studies, in two volumes. The first deals with the philosophy of mathematics and of science and the nature of philosophical and scientific enquiry; the second deals with the philosophy of language and mind. Volume one is now issued in a new edition, including an (...)
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  • (1 other version)The devil in the details: asymptotic reasoning in explanation, reduction, and emergence.Robert W. Batterman - 2002 - New York: Oxford University Press.
    Robert Batterman examines a form of scientific reasoning called asymptotic reasoning, arguing that it has important consequences for our understanding of the scientific process as a whole. He maintains that asymptotic reasoning is essential for explaining what physicists call universal behavior. With clarity and rigor, he simplifies complex questions about universal behavior, demonstrating a profound understanding of the underlying structures that ground them. This book introduces a valuable new method that is certain to fill explanatory gaps across disciplines.
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  • On the emergence of time in quantum gravity.Jeremy Butterfield & Chris Isham - 1999 - In The Arguments of Time. New York: Oup/British Academy. pp. 111--168.
    We discuss from a philosophical perspective the way in which the normal concept of time might be said to `emerge' in a quantum theory of gravity. After an introduction, we briefly discuss the notion of emergence, without regard to time. We then introduce the search for a quantum theory of gravity ; and review some general interpretative issues about space, time and matter. We then discuss the emergence of time in simple quantum geometrodynamics, and in the Euclidean approach. Section 6 (...)
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  • (2 other versions)Special sciences (or: The disunity of science as a working hypothesis).Jerry Fodor - 1974 - Synthese 28 (2):97-115.
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  • Types of inter-theoretic reduction.Lawrence Sklar - 1967 - British Journal for the Philosophy of Science 18 (2):109-124.
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  • (1 other version)How to define theoretical terms.David Lewis - 1970 - Journal of Philosophy 67 (13):427-446.
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  • The hole truth.Jeremy Butterfield - 1989 - British Journal for the Philosophy of Science 40 (1):1-28.
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  • Mind in a physical world: An essay on the mind–body problem and mental causation.Jaegwon Kim - 1998 - MIT Press.
    This book, based on Jaegwon Kim's 1996 Townsend Lectures, presents the philosopher's current views on a variety of issues in the metaphysics of the mind...
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  • Converging on emergence: Consciousness, causation and explanation.Michael Silberstein - 2001 - Journal of Consciousness Studies 8 (9-10):61-98.
    I will argue that emergence is an empirically plausible and unique philosophical/ scientific framework for bridging the ontological gap and the explanatory gap with respect to phenomenal consciousness. On my view the ontological gap is the gap between fundamental ingredients/parts of reality that are not conscious and beings/wholes that are conscious. The explanatory gap is the current lack of a philosophical/scientific theory that explains how non-conscious parts can become conscious wholes. Both gaps are of course conceptual as well as empirical (...)
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  • (1 other version)The rise and fall of british emergentism.Brian P. McLaughlin - 1992 - In Ansgar Beckermann, Hans Flohr & Jaegwon Kim (eds.), Emergence or Reduction?: Prospects for Nonreductive Physicalism. De Gruyter.
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  • Emergence: Core ideas and issues.Jaegwon Kim - 2006 - Synthese 151 (3):547-559.
    This paper explores the fundamental ideas that have motivated the idea of emergence and the movement of emergentism. The concept of reduction, which lies at the heart of the emergence idea is explicated, and it is shown how the thesis that emergent properties are irreducible gives a unified account of emergence. The paper goes on to discuss two fundamental unresolved issues for emergentism. The first is that of giving a “positive” characterization of emergence; the second is to give a coherent (...)
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  • Two concepts of intertheoretic reduction.Thomas Nickles - 1973 - Journal of Philosophy 70 (April):181-201.
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  • (2 other versions)Special sciences.Jerry A. Fodor - 1974 - Synthese 28 (2):97-115.
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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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  • Concepts of supervenience.Jaegwon Kim - 1984 - Philosophy and Phenomenological Research 45 (December):153-76.
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  • Physicalism: Ontology, determination and reduction.Geoffrey Paul Hellman & Frank Wilson Thompson - 1975 - Journal of Philosophy 72 (October):551-64.
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  • Physicalism.Thomas Nagel - 1965 - Philosophical Review 74 (July):339-56.
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  • Physicalism, or Something Near Enough.Jaegwon Kim - 2005 - Princeton University Press.
    "This is a fine volume that clarifies, defends, and moves beyond the views that Kim presented in Mind in a Physical World.
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  • (1 other version)There is No Question of Physicalism.Tim Crane & D. H. Mellor - 1990 - Mind 99 (394):185-206.
    Many philosophers are impressed by the progress achieved by physical sciences. This has had an especially deep effect on their ontological views: it has made many of them physicalists. Physicalists believe that everything is physical: more precisely, that all entities, properties, relations, and facts are those which are studied by physics or other physical sciences. They may not all agree with the spirit of Rutherford's quoted remark that 'there is physics; and there is stamp-collecting',' but they all grant physical science (...)
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  • Emergence: A Philosophical Account.Paul Humphreys - 2016 - New York, NY, United States of America: Oup Usa.
    Emergence develops a novel account of diachronic ontological emergence called transformational emergence and locates it in an established historical framework. The author shows how many problems affecting ontological emergence result from a dominant but inappropriate metaphysical tradition and provides a comprehensive assessment of current theories of emergence.
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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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  • (1 other version)On the Plurality of Worlds.William G. Lycan - 1988 - Journal of Philosophy 85 (1):42-47.
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  • On the Plurality of Worlds.David Lewis - 1986 - Revue Philosophique de la France Et de l'Etranger 178 (3):388-390.
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  • (1 other version)Computability and Logic.George S. Boolos, John P. Burgess & Richard C. Jeffrey - 2003 - Bulletin of Symbolic Logic 9 (4):520-521.
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  • Kim On Reduction.Ausonio Marras - 2002 - Erkenntnis 57 (2):231-257.
    In Mind in a Physical World (1998), Jaegwon Kim has recently extended his ongoing critique of `non-reductive materialist' positions in philosophy of mind by arguing that Nagel's model of reduction is the wrong paradigm in terms of which to contest the issue of psychophysical reduction, and that an altogether different model of scientific reduction – a functional model of reduction – is needed. In this paper I argue, first, that Kim's conception of the Nagelian model is substantially impoverished and potentially (...)
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  • Reduction and emergence: a critique of Kim.Paul Needham - 2009 - Philosophical Studies 146 (1):93-116.
    In a recent critique of the doctrine of emergentism championed by its classic advocates up to C. D. Broad, Jaegwon Kim (Philosophical Studies 63:31–47, 1999) challenges their view about its applicability to the sciences and proposes a new account of how the opposing notion of reduction should be understood. Kim is critical of the classic conception advanced by Nagel and uses his new account in his criticism of emergentism. I question his claims about the successful reduction achieved in the sciences (...)
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  • Reduction without reductionism: A defence of Nagel on connectability.Colin Klein - 2009 - Philosophical Quarterly 59 (234):39-53.
    Unlike the overall framework of Ernest Nagel's work on reduction, his theory of intertheoretic connection still has life in it. It handles aptly cases where reduction requires complex representation of a target domain. Abandoning his formulation as too liberal was a mistake. Arguments that it is too liberal at best touch only Nagel's deductivist theory of explanation, not his condition of connectability. Taking this condition seriously gives a powerful view of reduction, but one which requires us to index explanatory power (...)
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  • Downward causation in fluid convection.Robert C. Bishop - 2008 - Synthese 160 (2):229 - 248.
    Recent developments in nonlinear dynamics have found wide application in many areas of science from physics to neuroscience. Nonlinear phenomena such as feedback loops, inter-level relations, wholes constraining and modifying the behavior of their parts, and memory effects are interesting candidates for emergence and downward causation. Rayleigh–Bénard convection is an example of a nonlinear system that, I suggest, yields important insights for metaphysics and philosophy of science. In this paper I propose convection as a model for downward causation in classical (...)
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  • On the explanatory role of mathematics in empirical science.Robert W. Batterman - 2010 - British Journal for the Philosophy of Science 61 (1):1-25.
    This paper examines contemporary attempts to explicate the explanatory role of mathematics in the physical sciences. Most such approaches involve developing so-called mapping accounts of the relationships between the physical world and mathematical structures. The paper argues that the use of idealizations in physical theorizing poses serious difficulties for such mapping accounts. A new approach to the applicability of mathematics is proposed.
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  • Hydrodynamics versus molecular dynamics: Intertheory relations in condensed matter physics.Robert W. Batterman - 2006 - Philosophy of Science 73 (5):888-904.
    This paper considers the relationship between continuum hydrodynamics and discrete molecular dynamics in the context of explaining the behavior of breaking droplets. It is argued that the idealization of a fluid as a continuum is actually essential for a full explanation of the drop breaking phenomenon and that, therefore, the less "fundamental," emergent hydrodynamical theory plays an ineliminable role in our understanding.
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  • Emergence, Singularities, and Symmetry Breaking.Robert W. Batterman - 2011 - Foundations of Physics 41 (6):1031-1050.
    This paper looks at emergence in physical theories and argues that an appropriate way to understand socalled “emergent protectorates” is via the explanatory apparatus of the renormalization group. It is argued that mathematical singularities play a crucial role in our understanding of at least some well-defined emergent features of the world.
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  • Explanatory instability.Robert W. Batterman - 1992 - Noûs 26 (3):325-348.
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  • Critical phenomena and breaking drops: Infinite idealizations in physics.Robert Batterman - 2004 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 36 (2):225-244.
    Thermodynamics and Statistical Mechanics are related to one another through the so-called "thermodynamic limit'' in which, roughly speaking the number of particles becomes infinite. At critical points (places of physical discontinuity) this limit fails to be regular. As a result, the "reduction'' of Thermodynamics to Statistical Mechanics fails to hold at such critical phases. This fact is key to understanding an argument due to Craig Callender to the effect that the thermodynamic limit leads to mistakes in Statistical Mechanics. I discuss (...)
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  • (1 other version)There is no Question of Physicalism.Tim Crane & D. H. Mellor - 1995 - In Paul K. Moser & J. D. Trout (eds.), Contemporary Materialism: A Reader. New York: Routledge. pp. 65.
    Many philosophers are impressed by the progress achieved by physical sciences. This has had an especially deep effect on their ontological views: it has made many of them physicalists. Physicalists believe that everything is physical: more precisely, that all entities, properties, relations and facts are those which are studied by physics or other physical sciences...
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  • (3 other versions)Mind – dust or magic? Panpsychism versus emergence.James van Cleve - 1990 - Philosophical Perspectives 4:215-226.
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