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  1. Explaining Science: A Cognitive Approach by Ronald N. Giere. [REVIEW]Philip Kitcher - 1991 - Journal of Philosophy 88 (3):163-167.
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  • (1 other version)4 decades of scientific explanation.Wesley C. Salmon - 1989 - Minnesota Studies in the Philosophy of Science 13:3-219.
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  • (1 other version)Properties.D. M. Armstrong - 1997 - In David Hugh Mellor & Alex Oliver (eds.), Properties. New York: Oxford University Press.
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  • (1 other version)Four Decades of Scientific Explanation.Wesley C. Salmon & Anne Fagot-Largeault - 1989 - History and Philosophy of the Life Sciences 16 (2):355.
    As Aristotle stated, scientific explanation is based on deductive argument--yet, Wesley C. Salmon points out, not all deductive arguments are qualified explanations. The validity of the explanation must itself be examined. _Four Decades of Scientific Explanation_ provides a comprehensive account of the developments in scientific explanation that transpired in the last four decades of the twentieth century. It continues to stand as the most comprehensive treatment of the writings on the subject during these years. Building on the historic 1948 essay (...)
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  • (1 other version)Pursuit of truth.Willard Van Orman Quine - 1990 - Cambridge, Mass.: Harvard University Press.
    " This is a key book for understanding the effort that a major philosopher has made a large part of his life's work: to naturalize epistemology in the twentieth ...
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  • On empirically equivalent systems of the world.Willard van Orman Quine - 1975 - Erkenntnis 9 (3):313-28.
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  • Explanatory unification and the causal structure of the world.Philip Kitcher - 1962 - In Philip Kitcher & Wesley C. Salmon (eds.), Scientific Explanation. Univ of Minnesota Pr. pp. 410-505.
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  • Laws and symmetry.Bas C. Van Fraassen - 1989 - New York: Oxford University Press.
    Metaphysicians speak of laws of nature in terms of necessity and universality; scientists, in terms of symmetry and invariance. In this book van Fraassen argues that no metaphysical account of laws can succeed. He analyzes and rejects the arguments that there are laws of nature, or that we must believe there are, and argues that we should disregard the idea of law as an adequate clue to science. After exploring what this means for general epistemology, the author develops the empiricist (...)
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  • The pragmatics of scientific explanation.Matti Sintonen - 1984 - Helsinki: Academic Bookstore [distributor].
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  • Structural representation and surrogative reasoning.Chris Swoyer - 1991 - Synthese 87 (3):449 - 508.
    It is argued that a number of important, and seemingly disparate, types of representation are species of a single relation, here called structural representation, that can be described in detail and studied in a way that is of considerable philosophical interest. A structural representation depends on the existence of a common structure between a representation and that which it represents, and it is important because it allows us to reason directly about the representation in order to draw conclusions about the (...)
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  • A tradition of natural kinds.Ian Hacking - 1991 - Philosophical Studies 61 (1-2):109-26.
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  • Meaning postulates.Rudolf Carnap - 1952 - Philosophical Studies 3 (5):65 - 73.
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  • Aristotelian syllogisms and generalized quantifiers.Dag Westerståhl - 1989 - Studia Logica 48 (4):577-585.
    The paper elaborates two points: i) There is no principal opposition between predicate logic and adherence to subject-predicate form, ii) Aristotle's treatment of quantifiers fits well into a modern study of generalized quantifiers.
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  • (1 other version)Empirical equivalence and underdetermination.Larry Laudan & Jarrett Leplin - 1991 - Journal of Philosophy 88 (9):449-472.
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  • Explanation and scientific understanding.Michael Friedman - 1974 - Journal of Philosophy 71 (1):5-19.
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  • The model-theoretic approach in the philosophy of science.Newton C. A. Costaa & Steven French - 1990 - Philosophy of Science 57 (2):248-265.
    An introduction to the model-theoretic approach in the philosophy of science is given and it is argued that this program is further enhanced by the introduction of partial structures. It is then shown that this leads to a natural and intuitive account of both "iconic" and mathematical models and of the role of the former in science itself.
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  • Equivalent descriptions.Yemima Ben-Menahem - 1990 - British Journal for the Philosophy of Science 41 (2):261-279.
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  • Realism, Anti-Foundationalism and the Enthusiasm for Natural Kinds.Richard Boyd - 1991 - Philosophical Studies 61 (1):127-148.
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  • (1 other version)Ontological relativity and other essays.Willard Van Orman Quine (ed.) - 1969 - New York: Columbia University Press.
    This volume consists of the first of the John Dewey Lectures delivered under the auspices of Columbia University's Philosophy Department as well as other essays by the author. Intended to clarify the meaning of the philosophical doctrines propounded by Professor Quine in 'Word and Objects', the essays included herein both support and expand those doctrines.
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  • Introduction to Lattices and Order.B. A. Davey & H. A. Priestley - 2002 - Cambridge University Press.
    This new edition of Introduction to Lattices and Order presents a radical reorganization and updating, though its primary aim is unchanged. The explosive development of theoretical computer science in recent years has, in particular, influenced the book's evolution: a fresh treatment of fixpoints testifies to this and Galois connections now feature prominently. An early presentation of concept analysis gives both a concrete foundation for the subsequent theory of complete lattices and a glimpse of a methodology for data analysis that is (...)
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  • Features of similarity.Amos Tversky - 1977 - Psychological Review 84 (4):327-352.
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  • Explanation: in search of the rationale.Matti Sintonen - 1962 - In Philip Kitcher & Wesley C. Salmon (eds.), Scientific Explanation. Univ of Minnesota Pr. pp. 13--253.
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  • The semantic approach to scientific theories.Bas C. van Frassen - 1987 - In Nancy Nersessian (ed.), The Process of science: contemporary philosophical approaches to understanding scientific practice. Hingham, MA, USA: Kluwer Academic Publishers.
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  • Abstract Measurement Theory.Louis Narens (ed.) - 1985 - MIT Press.
    The need for quantitative measurement represents a unifying bond that links all the physical, biological, and social sciences. Measurements of such disparate phenomena as subatomic masses, uncertainty, information, and human values share common features whose explication is central to the achievement of foundational work in any particular mathematical science as well as for the development of a coherent philosophy of science. This book presents a theory of measurement, one that is "abstract" in that it is concerned with highly general axiomatizations (...)
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  • Der Logische Aufbau der Welt.Rudolf Carnap - 1928 - Hamburg: Meiner Verlag.
    Das Ziel: Konstitutionssystem der Begriffe Das Ziel der vorliegenden Untersuchungen ist die Aufstellung eines erkenntnismäßig-logischen Systems der ...
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  • Foundations of Space-Time Theories.Micheal Friedman - 1983 - Princeton University Press.
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  • The Structure of Appearance.Nelson Goodman - 1951 - Cambridge, MA, USA: Harvard University Press.
    With this third edition of Nelson Goodman's The Structure of Appear ance, we are pleased to make available once more one of the most in fluential and important works in the philosophy of our times. Professor Geoffrey Hellman's introduction gives a sustained analysis and appreciation of the major themes and the thrust of the book, as well as an account of the ways in which many of Goodman's problems and projects have been picked up and developed by others. Hellman also (...)
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  • Theoretical Realism and Theoretical Equivalence.Clark Glymour - 1970 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1970:275 - 288.
    Your use of the JSTOR archive indicates your acceptance of J STOR’s Terms and Conditions of Use, available at http://www.jstor.org/about/tenns.htm1. J STOR’s Terms and Conditions of Use provides, in part, that unless you have obtained prior permission, you may not download an entire issue of a journal or multiple copies of articles, and you may use content in the JSTOR archive only for your personal, non—commercial use.
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  • Quine's dilemma.Roger F. Gibson - 1986 - Synthese 69 (1):27 - 39.
    Quine has long maintained in connection with his theses of under-determination of physical theory and indeterminacy of translation that there is a fact of the matter to physics but no fact of the matter to translation. In this paper, I investigate Quine's reasoning for this claim. I show that Quine's thinking about under-determination over the last twenty-five years has landed him in a contradiction: he says of two global physical theories that are empirically equivalent but logically incompatible that only one (...)
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  • Explaining Science.Ronald Giere - 1991 - Noûs 25 (3):386-388.
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  • Quine, Underdetermination, and Skepticism.Lars Bergström - 1993 - Journal of Philosophy 90 (7):331-358.
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  • (1 other version)Empirical Equivalence and Underdetermination.Larry Laudan & Jarrett Leplin - 1991 - Journal of Philosophy 88 (9):449.
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  • Laws and Symmetry.Bas C. Van Fraassen - 1989 - Revue Philosophique de la France Et de l'Etranger 182 (3):327-329.
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  • Foundations of Space-Time Theories.Michael Friedman - 1987 - Noûs 21 (4):595-601.
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  • The Model-Theoretic Approach in the Philosophy of Science.Newton C. A. Da Costa & Steven French - 1990 - Philosophy of Science 57 (2):248 - 265.
    An introduction to the model-theoretic approach in the philosophy of science is given and it is argued that this program is further enhanced by the introduction of partial structures. It is then shown that this leads to a natural and intuitive account of both "iconic" and mathematical models and of the role of the former in science itself.
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  • Problems and projects.Nelson Goodman (ed.) - 1972 - Indianapolis,: Bobbs-Merrill.
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  • The structure of Daltonian stoichiometry.W. Balzer, C. -U. Moulines & J. D. Sneed - 1987 - Erkenntnis 26 (1):103 - 127.
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  • Embeddability, syntax, and semantics in accounts of scientific theories.Peter Turney - 1990 - Journal of Philosophical Logic 19 (4):429 - 451.
    Recently several philosophers of science have proposed what has come to be known as the semantic account of scientific theories. It is presented as an improvement on the positivist account, which is now called the syntactic account of scientific theories. Bas van Fraassen claims that the syntactic account does not give a satisfactory definition of "empirical adequacy" and "empirical equivalence". He contends that his own semantic account does define these notations acceptably, through the concept of "embeddability", a concept which he (...)
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  • On natural properties in metaphysics.Barry Taylor - 1993 - Mind 102 (405):81-100.
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  • Foundational aspects of theories of measurement.Dana Scott & Patrick Suppes - 1958 - Journal of Symbolic Logic 23 (2):113-128.
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  • Zeeman-göbel topologies.Adrian Heathcote - 1988 - British Journal for the Philosophy of Science 39 (2):247-261.
    Zeeman argued that the Euclidean (i. e. manifold) topology of Minkowski space-time should be replaced by a strictly finer topology that was to have a closer connection with the indefinite metric. This proposal was extended in 1976 by Rudiger Göbel and Hawking, King and McCarthy to the space-times of General Relativity. It is the purpose of this paper to argue that these suggestions for replacement misrepresent the significance of the manifold topology and overstate the necessity for a finer topology. The (...)
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  • Replacing one theory by another under preservation of a given feature.Rolf A. Eberle - 1971 - Philosophy of Science 38 (4):486-501.
    The conditions are examined under which one theory is said to be replaceable by another, while preserving those features of the original theory which made it serviceable for a given purpose. Among such replacements, special attention is given to ones which qualify as so-called reductions of a theory, and some theorems are proved concerning the notion of a reduction.
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  • (1 other version)Properties.David M. Armstrong - 1991 - In Kevin Mulligan (ed.), Language, Truth and Ontology. Dordrecht, Netherland: Kluwer Academic Publishers. pp. 14--27.
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  • Natural predicates and topological structures of conceptual spaces.Thomas Mormann - 1993 - Synthese 95 (2):219 - 240.
    In the framework of set theory we cannot distinguish between natural and non-natural predicates. To avoid this shortcoming one can use mathematical structures as conceptual spaces such that natural predicates are characterized as structurally nice subsets. In this paper topological and related structures are used for this purpose. We shall discuss several examples taken from conceptual spaces of quantum mechanics (orthoframes), and the geometric logic of refutative and affirmable assertions. In particular we deal with the problem of structurally distinguishing between (...)
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  • Topology, cosmology and convention.Clark Glymour - 1972 - Synthese 24 (1-2):195 - 218.
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  • Grünbaum on the conventionality of geometry.Michael Friedman - 1972 - Synthese 24 (1-2):219 - 235.
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  • (2 other versions)Topology via Logic.P. T. Johnstone & Steven Vickers - 1991 - Journal of Symbolic Logic 56 (3):1101.
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  • More on Quine's Dilemma of Underdetermination.Roger F. Gibson - 1991 - Dialectica 45 (1):59-66.
    SummaryQuine's doctrine of underdetermination of physical theory presents him with a dilemma: Should he say of two global theory formulations that are empirically equivalent, logically compatible, equally simple, but which cannot be rendered logically equivalent by any known reconstrual of predicates, that they are both true or that only one of them is true ? If the former, then Quine's commitment to naturalism is at risk; if the latter, then his commitment to empiricism is at risk. When confronted with the (...)
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  • Embedding and uniqueness in relationist theories.Brent Mundy - 1991 - Philosophy of Science 58 (1):102-124.
    Relationist theories of space or space-time based on embedding of a physical relational system A into a corresponding geometrical system B raise problems associated with the degree of uniqueness of the embedding. Such uniqueness problems are familiar in the representational theory of measurement (RTM), and are dealt with by imposing a condition of uniqueness of embeddings up to composition with an "admissible transformation" of the space B. Friedman (1983) presents an alternative treatment of the uniqueness problem for embedding relationist theories, (...)
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  • The Structure of Appearance.Nelson Goodman - 1956 - Studia Logica 4:255-261.
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