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  1. The Scientific Image.William Demopoulos & Bas C. van Fraassen - 1982 - Philosophical Review 91 (4):603.
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  • Semirealism.Anjan Chakravartty - 1998 - Studies in History and Philosophy of Science Part A 29 (3):391-408.
    The intuition of the naı¨ve realist, miracle arguments notwithstanding, is countered forcefully by a host of considerations, including the possibility of underdetermination, and criticisms of abductive inferences to explanatory hypotheses. Some have suggested that an induction may be performed, from the perspective of present theories, on their predecessors. Past theories are thought to be false, strictly speaking; it is thus likely that present-day theories are also false, and will be taken as such at an appropriate future time.
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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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  • Why general relativity does need an interpretation.Gordon Belot - 1996 - Philosophy of Science 63 (3):88.
    There is a widespread impression that General Relativity, unlike Quantum Mechanics, is in no need of an interpretation. I present two reasons for thinking that this is a mistake. The first is the familiar hole argument. I argue that certain skeptical responses to this argument are too hasty in dismissing it as being irrelevant to the interpretative enterprise. My second reason is that interpretative questions about General Relativity are central to the search for a quantum theory of gravity. I illustrate (...)
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  • How is Quantum Field Theory Possible?Sunny Y. Auyang - 1995 - New York: Oxford University Press.
    Quantum field theory (QFT) combines quantum mechanics with Einstein's special theory of relativity and underlies elementary particle physics. This book presents a philosophical analysis of QFT. It is the first treatise in which the philosophies of space-time, quantum phenomena, and particle interactions are encompassed in a unified framework. Describing the physics in nontechnical terms, and schematically illustrating complex ideas, the book also serves as an introduction to fundamental physical theories. The philosophical interpretation both upholds the reality of the quantum world (...)
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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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  • The philosophical impact of contemporary physics.Milič Čapek - 1961 - Princeton, N.J.,: Van Nostrand.
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  • The Leibniz-Clarke Correspondence. Edited by H. G. Alexander New York: Philosophical Library, Inc., 1956. Pp. lvi. 200. $4.75.Edward C. Moore - 1957 - Philosophy of Science 24 (4):367-369.
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  • The lessons of the hole argument.Robert Rynasiewicz - 1994 - British Journal for the Philosophy of Science 45 (2):407-436.
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  • The Essence of Space-Time.Tim Maudlin - 1988 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1988:82 - 91.
    I argue that Norton & Earman's hole argument, despite its historical association with General Relativity, turns upon very general features of any linguistic system that can represent substances by names. After exploring various means by which mathematical objects can be interpreted as representing physical possibilities, I suggest that a form of essentialism can solve the hole dilemma without abandoning either determinism or substantivalism. Finally, I identify the basic tenets of such an essentialism in Newton's writings and consider how they can (...)
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  • Universals and Scientific Realism.[author unknown] - 1980 - British Journal for the Philosophy of Science 31 (1):69-79.
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  • Conceptual Development of 20th Century Field Theories.Tian Yu Cao - 1997 - Cambridge University Press.
    From reviews of the hardback edition: a deep study of 20th century field ... of the conceptual origins and development of twentieth century field theories, ...
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  • Error and the Growth of Experimental Knowledge.Deborah G. Mayo - 1996 - University of Chicago.
    This text provides a critique of the subjective Bayesian view of statistical inference, and proposes the author's own error-statistical approach as an alternative framework for the epistemology of experiment. It seeks to address the needs of researchers who work with statistical analysis.
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  • .Jeremy Butterfield & John Earman - 1977
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  • Structural realism: The best of both worlds?John Worrall - 1989 - Dialectica 43 (1-2):99-124.
    The no-miracles argument for realism and the pessimistic meta-induction for anti-realism pull in opposite directions. Structural Realism---the position that the mathematical structure of mature science reflects reality---relieves this tension.
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  • Structural Realism: The Best of Both Worlds?John Worrall - 1989 - Dialectica 43 (1-2):99-124.
    SummaryenThe main argument for scientific realism is that our present theories in science are so successful empirically that they can't have got that way by chance - instead they must somehow have latched onto the blueprint of the universe. The main argument against scientific realism is that there have been enormously successful theories which were once accepted but are now regarded as false. The central question addressed in this paper is whether there is some reasonable way to have the best (...)
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  • The Scientific Image by Bas C. van Fraassen. [REVIEW]Michael Friedman - 1982 - Journal of Philosophy 79 (5):274-283.
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  • The Philosophical Impact of Contemporary Physics.Mary Hesse - 1963 - Philosophical Quarterly 13 (53):379-381.
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  • Rings, holes and substantivalism: On the program of Leibniz algebras.Robert Rynasiewicz - 1992 - Philosophy of Science 59 (4):572-589.
    In a number of publications, John Earman has advocated a tertium quid to the usual dichotomy between substantivalism and relationism concerning the nature of spacetime. The idea is that the structure common to the members of an equivalence class of substantival models is captured by a Leibniz algebra which can then be taken to directly characterize the intrinsic reality only indirectly represented by the substantival models. An alleged virtue of this is that, while a substantival interpretation of spacetime theories falls (...)
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  • A Theory of Time and Space.Alfred Arthur Robb - 1914 - Cambridge University Press.
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  • Is structural realism the best of both worlds?Stathis Psillos - 1995 - Dialectica 49 (1):15-46.
    In a recent series of papers, John Worrall has defended and elaborated a philosophical position – traced back to Poincaré– which he calls structural realism. This view stands in between scientific realism and agnostic instrumentalism and intends to accommodate both the intuitions that underwrite the ‘no miracles’ argument for scientific realism and the existence of scientific revolutions which lead to radical theoretical changes. Structural realism presents itself as the best of both worlds. In this paper I critically examine the epistemic (...)
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  • Is Structural Realism the Best of Both Worlds?Stathis Psilos - 1995 - Dialectica 49 (1):15-46.
    In a recent series of papers, John Worrall has defended and elaborated a philosophical position – traced back to Poincaré– which he calls structural realism. This view stands in between scientific realism and agnostic instrumentalism and intends to accommodate both the intuitions that underwrite the ‘no miracles’ argument for scientific realism and the existence of scientific revolutions which lead to radical theoretical changes. Structural realism presents itself as the best of both worlds. In this paper I critically examine the epistemic (...)
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  • Relational theories of euclidean space and Minkowski spacetime.Brent Mundy - 1983 - Philosophy of Science 50 (2):205-226.
    We here present explicit relational theories of a class of geometrical systems (namely, inner product spaces) which includes Euclidean space and Minkowski spacetime. Using an embedding approach suggested by the theory of measurement, we prove formally that our theories express the entire empirical content of the corresponding geometric theory in terms of empirical relations among a finite set of elements (idealized point-particles or events) thought of as embedded in the space. This result is of interest within the general phenomenalist tradition (...)
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  • What is structural realism?James Ladyman - 1998 - Studies in History and Philosophy of Science Part A 29 (3):409-424.
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  • The Metaphysics of Space-Time Substantivalism.Carl Hoefer - 1996 - Journal of Philosophy 93 (1):5-27.
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  • Absolute versus relational spacetime: For better or worse, the debate goes on.Carl Hoefer - 1998 - British Journal for the Philosophy of Science 49 (3):451-467.
    The traditional absolutist-relationist debate is still clearly formulable in the context of General Relativity Theory (GTR), despite the important differences between Einstein's theory and the earlier context of Newtonian physics. This paper answers recent arguments by Robert Rynasiewicz against the significance of the debate in the GTR context. In his (1996) (‘Absolute vs. Relational Spacetime: An Outmoded Debate?’), Rynasiewicz argues that already in the late nineteenth century, and even more so in the context of General Relativity theory, the terms of (...)
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  • Substance, modality and spacetime.Richard Healey - 1995 - Erkenntnis 42 (3):287 - 316.
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  • Explaining Science.Ronald Giere - 1991 - Noûs 25 (3):386-388.
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  • Foundations of Space-Time Theories.Michael Friedman - 1987 - Noûs 21 (4):595-601.
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  • Spacetime theory as physical geometry.Robert Disalle - 1995 - Erkenntnis 42 (3):317-337.
    Discussions of the metaphysical status of spacetime assume that a spacetime theory offers a causal explanation of phenomena of relative motion, and that the fundamental philosophical question is whether the inference to that explanation is warranted. I argue that those assumptions are mistaken, because they ignore the essential character of spacetime theory as a kind of physical geometry. As such, a spacetime theory does notcausally explain phenomena of motion, but uses them to construct physicaldefinitions of basic geometrical structures by coordinating (...)
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  • On dynamics, indiscernibility, and spacetime ontology.Robert Disalle - 1994 - British Journal for the Philosophy of Science 45 (1):265-287.
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  • The Semantic Conception of Theories and Scientific Realism.Frederick Suppe - 1989 - University of Illinois Press.
    Frederick Suppe has come to enjoy a position of undisputed leadership in the post-positivistic philosophy of science.
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  • Error and the growth of experimental knowledge.Deborah Mayo - 1996 - International Studies in the Philosophy of Science 15 (1):455-459.
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  • Absolute versus relational space‐time: An outmoded debate.Robert Rynasiewicz - 1996 - Journal of Philosophy 93 (6):279-306.
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  • The metaphysics of space‐time substantivalism.Carl Hoefer - 1996 - Journal of Philosophy 93 (1):5-27.
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  • Models and mathematics in physics: The role of group theory.Steven French - 1999 - In Jeremy Butterfield & Constantine Pagonis (eds.), From Physics to Philosophy. Cambridge University Press. pp. 187--207.
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  • The meaning of general covariance.John Stachel - 1993 - In John Earman, A. Janis & G. Massey (eds.), Philosophical Problems of the Internal and External Worlds: Essays on the Philosophy of Adolph Grünbaum. University of Pittsburgh Press. pp. 129--60.
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  • The Structure of Scientific Theories.Frederick Suppe - 1977 - Critica 11 (31):138-140.
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  • Newtonian space-time.Howard Stein - 1967 - Texas Quarterly 10 (3):174--200.
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  • Halfway through the Woods: Contemporary research on space and time.Carlo Rovelli - 1997 - In John Earman & John Norton (eds.), The Cosmos of Science. University of Pittsburgh Press. pp. 180--223.
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  • The origin and nature of time.Dudley Shapere - 1996 - Philosophia Scientiae 1 (S1):197-220.
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  • Error and the Growth of Experimental Knowledge.Deborah Mayo - 1997 - British Journal for the Philosophy of Science 48 (3):455-459.
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  • Scientific Explanation.P. Kitcher & W. C. Salmon - 1992 - British Journal for the Philosophy of Science 43 (1):85-98.
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  • The Leibniz-Clarke Correspondence.H. G. Alexander - 1956 - Philosophy 32 (123):365-366.
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  • A Theory of Time and Space.Alfred A. Robb - 1915 - Mind 24 (96):555-561.
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