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Coherence, entanglement, and reductionist explanation in quantum physics,"

In A. Ashtekar (ed.), Revisiting the Foundations of Relativistic Physics. pp. 523--542 (2003)

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  1. The Growth of Biological Thought: Diversity, Evolution, and Inheritance.Ernst Mayr - 1982 - Harvard University Press.
    Explores the development of the ideas of evolutionary biology, particularly as affected by the increasing understanding of genetics and of the chemical basis of inheritance.
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  • (4 other versions)Mental Events.Donald Davidson - 1970 - In Essays on Actions and Events: Philosophical Essays Volume 1. Oxford, GB: Clarendon Press. pp. 207-224.
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  • (4 other versions)Mental Events.Donald Davidson - 1970 - In Lawrence Foster & Joe William Swanson (eds.), Experience and Theory. London, England: Humanities Press.
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  • (1 other version)On reduction.John Kemeny & Paul Oppenheim - 1956 - Philosophical Studies 7 (1-2):6 - 19.
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  • Approaches to reduction.Kenneth F. Schaffner - 1967 - Philosophy of Science 34 (2):137-147.
    Four current accounts of theory reduction are presented, first informally and then formally: (1) an account of direct theory reduction that is based on the contributions of Nagel, Woodger, and Quine, (2) an indirect reduction paradigm due to Kemeny and Oppenheim, (3) an "isomorphic model" schema traceable to Suppes, and (4) a theory of reduction that is based on the work of Popper, Feyerabend, and Kuhn. Reference is made, in an attempt to choose between these schemas, to the explanation of (...)
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  • (2 other versions)Introduction to Logic.J. Dopp - 1957 - Journal of Symbolic Logic 22 (4):353-354.
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  • Introduction to logic.Patrick Suppes - 1957 - Mineola, N.Y.: Dover Publications.
    Coherent, well organized text familiarizes readers with complete theory of logical inference and its applications to math and the empirical sciences. Part I deals with formal principles of inference and definition; Part II explores elementary intuitive set theory, with separate chapters on sets, relations, and functions. Last section introduces numerous examples of axiomatically formulated theories in both discussion and exercises. Ideal for undergraduates; no background in math or philosophy required.
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  • The supervenience of biological concepts.Alexander Rosenberg - 1978 - Philosophy of Science 45 (3):368-386.
    In this paper the concept of supervenience is employed to explain the relationship between fitness as employed in the theory of natural selection and population biology and the physical, behavioral and ecological properties of organisms that are the subjects of lower level theories in the life sciences. The aim of this analysis is to account simultaneously for the fact that the theory of natural selection is a synthetic body of empirical claims, and for the fact that it continues to be (...)
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  • Structure and comparison of genetic theories: (2) the reduction of character-factor genetics to molecular genetics.W. Balzer & C. M. Dawe - 1986 - British Journal for the Philosophy of Science 37 (2):177-191.
    The present paper has two aims. First, we reconstruct the core of molecular genetics (MOLGEN) i.e. the array of theoretical assumptions which underly all or most applications of molecular genetics. Second, we define a reduction relation p reducing character-factor genetics (CFG) to MOLGEN. That p is a reduction relation is proved by establishing that p satisfies the two major conditions which are discussed in the literature as necessary or ‘essential’ for reduction. This substantiates the claim that molecular genetics is ‘better (...)
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  • (1 other version)On Reduction.John G. Kemeny & Paul Oppenheim - 1968 - Journal of Symbolic Logic 33 (2):316-317.
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  • Metaphysical Problems in the Foundations of Quantum Mechanics.Abner Shimony - 1978 - International Philosophical Quarterly 18 (1):3-17.
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  • Articulation of Parts Explanation in Biology and the Rational Search for Them.Stuart A. Kauffman - 1970 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1970:257 - 272.
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