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  1. (1 other version)A Materialist Theory of the Mind.D. M. Armstrong - 1968 - New York: Routledge. Edited by Ted Honderich.
    Breaking new ground in the debate about the relation of mind and body, David Armstrong's classic text - first published in 1968 - remains the most compelling and comprehensive statement of the view that the mind is material or physical. In the preface to this new edition, the author reflects on the book's impact and considers it in the light of subsequent developments. He also provides a bibliography of all the key writings to have appeared in the materialist debate.
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  • Nature's Metaphysics: Laws and Properties.Alexander Bird - 2007 - New York: Oxford University Press.
    Professional philosophers and advanced students working in metaphysics and the philosophy of science will find this book both provocative and stimulating.
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  • Scientific Essentialism.Brian Ellis - 2001 - New York: Cambridge University Press.
    Scientific Essentialism defends the view that the fundamental laws of nature depend on the essential properties of the things on which they are said to operate, and are therefore not independent of them. These laws are not imposed upon the world by God, the forces of nature or anything else, but rather are immanent in the world. Ellis argues that ours is a dynamic world consisting of more or less transient objects which are constantly interacting with each other, and whose (...)
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  • Powers: A Study in Metaphysics.George Molnar - 2003 - New York: Oxford University Press. Edited by Stephen Mumford.
    George Molnar came to see that the solution to a number of the problems of contemporary philosophy lay in the development of an alternative to Hume's metaphysics. This alternative would have real causal powers at its centre. Molnar set about developing a thorough account of powers that might persuade those who remained, perhaps unknowingly, in the grip of Humean assumptions. He succeeded in producing something both highly focused and at the same time wide-ranging. He showed both that the notion of (...)
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  • Quantum Mechanics and Experience.David Z. Albert - 1992 - Harvard Up.
    Presents a guide to the basics of quantum mechanics and measurement.
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  • Dispositions.Stephen Mumford - 1998 - Oxford, GB: Clarendon Press.
    Stephen Mumford puts forward a new theory of dispositions, showing how central their role is in metaphysics and philosophy of science. Much of our understanding of the physical and psychological world is expressed in terms of dispositional properties--from the solubility of sugar to the belief that zebras have stripes. Mumford discusses what it means to say that something has a property of this kind, and how dispositions can possibly be real things in the world. His clear, straightforward, realist account reveals (...)
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  • A Materialist Theory of the Mind.D. Armstrong - 1968 - Philosophical Quarterly 19 (74):73-79.
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  • Dispositions and conditionals.C. B. Martin - 1994 - Philosophical Quarterly 44 (174):1-8.
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  • The structure and interpretation of quantum mechanics.R. I. G. Hughes - 1989 - Cambridge: Harvard University Press.
    R.I.G Hughes offers the first detailed and accessible analysis of the Hilbert-space models used in quantum theory and explains why they are so successful.
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  • Dispositions and antidotes.Alexander Bird - 1998 - Philosophical Quarterly 48 (191):227-234.
    In ‘Finkish Dispositions’1 David Lewis proposes an analysis of dispositions which improves on the simple conditional analysis. In this paper I show that Lewis’ analysis still fails. I also argue that repairs are of no avail, and suggest why this is so.
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  • Three theses about dispositions.Elizabeth W. Prior, Robert Pargetter & Frank Jackson - 1982 - American Philosophical Quarterly 19 (3):251-257.
    I. Causal Thesis: Dispositions have a causal basis. II. Distinctness Thesis: Dispositions are distinct from their causal basis. III. Impotence Thesis: Dispositions are not causally active.
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  • (1 other version)Dispositions.Stephen Mumford - 1994 - Cogito 8 (2):141-146.
    Mumford puts forward a new theory of dispositions, showing how central their role in metaphysics and philosophy of science is. Much of our understanding of the physical and psychological world is expressed in terms of dispositional properties--from the spin of a sub-atomic particle to the solubility of sugar. Mumford discusses what it means to say that something has a property of this kind and how dispositions can possibly be real things in the world.
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  • In defense of dispositions.D. H. Mellor - 1974 - Philosophical Review 83 (2):157-181.
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  • The Ungrounded Argument.Stephen Mumford - 2006 - Synthese 149 (3):471-489.
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  • (1 other version)The Structure and Interpretation of Quantum Mechanics.R. I. G. Hughes - 1992 - Tijdschrift Voor Filosofie 54 (4):735-736.
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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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  • GRW as an ontology of dispositions.Mauro Dorato & Michael Esfeld - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (1):41-49.
    The paper argues that the formulation of quantum mechanics proposed by Ghirardi, Rimini and Weber (GRW) is a serious candidate for being a fundamental physical theory and explores its ontological commitments from this perspective. In particular, we propose to conceive of spatial superpositions of non-massless microsystems as dispositions or powers, more precisely propensities, to generate spontaneous localizations. We set out five reasons for this view, namely that (1) it provides for a clear sense in which quantum systems in entangled states (...)
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  • Dispositions, relational properties and the quantum world.Mauro Dorato - 2017 - In Maximilien Kistler (ed.), Dispositions and Causal Powers, Routledge, 2017,. London: Routledge. pp. pp.249-270..
    In this paper I examine the role of dispositional properties in the most frequently discussed interpretations of non-relativistic quantum mechanics. After offering some motivation for this project, I briefly characterize the distinction between non-dispositional and dispositional properties in the context of quantum mechanics by suggesting a necessary condition for dispositionality – namely contextuality – and, consequently, a sufficient condition for non-dispositionality, namely non-contextuality. Having made sure that the distinction is conceptually sound, I then analyze the plausibility of the widespread, monistic (...)
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  • Quantum Selections, Propensities and the Problem of Measurement.Mauricio Suárez - 2004 - British Journal for the Philosophy of Science 55 (2):219-255.
    This paper expands on, and provides a qualified defence of, Arthur Fine's selective interactions solution to the measurement problem. Fine's approach must be understood against the background of the insolubility proof of the quantum measurement. I first defend the proof as an appropriate formal representation of the quantum measurement problem. The nature of selective interactions, and more generally selections, is then clarified, and three arguments in their favour are offered. First, selections provide the only known solution to the measurement problem (...)
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  • (1 other version)Dispositions.Michael Fara - 2008 - Stanford Encyclopedia of Philosophy.
    The glass vase on my desk is fragile. It should be handled with care because it it is likely to shatter or crack if it is knocked, dropped, or otherwise treated roughly. The vase has certain dispositions, for example the disposition to shatter when dropped. But what is this disposition? It seems on the one hand to be a perfectly real property, a genuine respect of similarity common to glass vases, china cups, ancient manuscripts, and anything else fragile. Yet on (...)
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  • Nonlocal Character of Quantum Theory.Henry P. Stapp - 1997 - American Journal of Physics 65:300.
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  • Dispositional Properties.Geoffrey Hunter - 1966 - Philosophical Quarterly 16 (65):388-389.
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  • Filled in space.Stephen Mumford - 2004 - In B. Gnassounou & M. Kistler (eds.), Dispositions Et Pouvoirs Causaux. Vrin.
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  • (1 other version)How to strengthen Bell's theorem using counterfactuals.Tomasz Bigaj - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (1):58-66.
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  • (1 other version)How to (properly) strengthen Bell's theorem using counterfactuals.Tomasz Bigaj - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (1):58-66.
    Bell’s theorem in its standard version demonstrates that the joint assumptions of the hidden-variable hypothesis and the principle of local causation lead to a conflict with quantum-mechanical predictions. In his latest counterfactual strengthening of Bell’s theorem, Stapp attempts to prove that the locality assumption itself contradicts the quantum-mechanical predictions in the Hardy case. His method relies on constructing a complex, non-truth functional formula which consists of statements about measurements and outcomes in some region R, and whose truth value depends on (...)
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