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  1. 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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  • The Scientific Image.William Demopoulos & Bas C. van Fraassen - 1982 - Philosophical Review 91 (4):603.
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  • On the Physical Reality of Quantum Waves.Gennaro Auletta & Gino Tarozzi - 2004 - Foundations of Physics 34 (11):1675-1694.
    The main interpretations of the quantum-mechanical wave function are presented emphasizing how they can be divided into two ensembles: The ones that deny and the other ones that attribute a form of reality to quantum waves. It is also shown why these waves cannot be classical and must be submitted to the restriction of the complementarity principle. Applying the concept of smooth complementarity, it is shown that there can be no reason to attribute reality only to the events and not (...)
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  • Universals and scientific realism.David Malet Armstrong - 1978 - New York: Cambridge University Press.
    v. 1. Nominalism and realism.--v. 2. A theory of universals.
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  • Composition as a Fiction.Gideon Rosen & Cian Dorr - 2002 - In Richard M. Gale (ed.), The Blackwell Guide to Metaphysics. Malden, MA: Wiley-Blackwell. pp. 151–174.
    This chapter contains sections titled: 1 A Question about Composition 2 Some Answers 3 How Shall We Decide? 4 Common Sense and Unrestricted Composition 5 Common Sense and Compositional Nihilism 6 Compositional Nihilism and the Self 7 The Appeal to Science 8 Problem or Pseudoproblem? What To Do?
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  • Nominalistic systems.Rolf A. Eberle - 1970 - Dordrecht,: Reidel.
    1. 1. PROGRAM It will be our aim to reconstruct, with precision, certain views which have been traditionally associated with nominalism and to investigate problems arising from these views in the construction of interpreted formal systems. Several such systems are developed in accordance with the demand that the sentences of a system which is acceptable to a nominalist must not imply the existence of any entities other than individuals. Emphasis will be placed on the constructionist method of philosophical analysis. To (...)
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  • Universalism entails Extensionalism.Achille C. Varzi - 2009 - Analysis 69 (4):599-604.
    I argue that Universalism (the thesis that mereological composition is unrestricted) entails Extensionalism (the thesis that sameness of composition is sufficient for identity) as long as the parthood relation is transitive and satisfies the Weak Supplementation principle (to the effect that whenever a thing has a proper part, it has another part disjoint from the first).
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  • Axioms for the part relation.Nicholas Rescher - 1955 - Philosophical Studies 6 (1):8-11.
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  • A Confutation of Convergent Realism.Larry Laudan - 1980 - In Yuri Balashov & Alexander Rosenberg (eds.), Philosophy of Science: Contemporary Readings. Routledge. pp. 211.
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  • A confutation of convergent realism.Larry Laudan - 1981 - Philosophy of Science 48 (1):19-49.
    This essay contains a partial exploration of some key concepts associated with the epistemology of realist philosophies of science. It shows that neither reference nor approximate truth will do the explanatory jobs that realists expect of them. Equally, several widely-held realist theses about the nature of inter-theoretic relations and scientific progress are scrutinized and found wanting. Finally, it is argued that the history of science, far from confirming scientific realism, decisively confutes several extant versions of avowedly 'naturalistic' forms of scientific (...)
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  • Nominalistic Systems.Michael Jubien - 1973 - Philosophical Review 82 (4):540.
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  • What Is Classical Mereology?Paul Hovda - 2009 - Journal of Philosophical Logic 38 (1):55 - 82.
    Classical mereology is a formal theory of the part-whole relation, essentially involving a notion of mereological fusion, or sum. There are various different definitions of fusion in the literature, and various axiomatizations for classical mereology. Though the equivalence of the definitions of fusion is provable from axiom sets, the definitions are not logically equivalent, and, hence, are not inter-changeable when laying down the axioms. We examine the relations between the main definitions of fusion and correct some technical errors in prominent (...)
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  • Reflections on Nelson Goodman’s: The Structure of Appearance.Carl G. Hempel - 1953 - Philosophical Review 62 (1):108-116.
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  • A philosopher looks at quantum information theory.Amit Hagar - 2003 - Philosophy of Science 70 (4):752-775.
    Recent suggestions to supply quantum mechanics (QM) with realistic foundations by reformulating it in light of quantum information theory (QIT) are examined and are found wanting by pointing to a basic conceptual problem that QIT itself ignores, namely, the measurement problem. Since one cannot ignore the measurement problem and at the same time pretend to be a realist, as they stand, the suggestions to reformulate QM in light of QIT are nothing but instrumentalism in disguise.
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  • Temi e problemi di filosofia della fisica.Evandro Agazzi - 1969 - Milano,: C. Manfredi.
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  • Relational quantum mechanics.Carlo Rovelli - 1996 - International Journal of Theoretical Physics 35 (8):1637--1678.
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  • Composition as a fiction.Gideon Rosen & Cian Dorr - 2002 - In Richard Gale (ed.), The Blackwell Companion to Metaphysics. Blackwell. pp. 151--174.
    Region R Question: How many objects — entities, things — are contained in R? Ignore the empty space. Our question might better be put, 'How many material objects does R contain?' Let's stipulate that A, B and C are metaphysical atoms: absolutely simple entities with no parts whatsoever besides themselves. So you don't have to worry about counting a particle's top half and bottom half as different objects. Perhaps they are 'point-particles', with no length, width or breadth. Perhaps they are (...)
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  • The Structure and Interpretation of Quantum Mechanics.R. I. G. Hughes - 1992 - Tijdschrift Voor Filosofie 54 (4):735-736.
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  • Part and whole in quantum mechanics.Tim Maudlin - 1998 - In Elena Castellani (ed.), Interpreting Bodies. Princeton University Press. pp. 46--60.
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