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  1. (1 other version)Causality.Judea Pearl - 2000 - New York: Cambridge University Press.
    Written by one of the preeminent researchers in the field, this book provides a comprehensive exposition of modern analysis of causation. It shows how causality has grown from a nebulous concept into a mathematical theory with significant applications in the fields of statistics, artificial intelligence, economics, philosophy, cognitive science, and the health and social sciences. Judea Pearl presents and unifies the probabilistic, manipulative, counterfactual, and structural approaches to causation and devises simple mathematical tools for studying the relationships between causal connections (...)
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  • (1 other version)On the Concept of a Random Sequence.Alonzo Church - 1940 - Journal of Symbolic Logic 5 (2):71-72.
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  • (1 other version)On the Concept of a Random Sequence.Alonzo Church - 1940 - Bulletin of the American Mathematical Society 46 (2):130--135.
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  • (2 other versions)Causes and Explanations: A Structural-Model Approach. Part II: Explanations.Y. Halpern Joseph & Pearl Judea - 2005 - British Journal for the Philosophy of Science 56 (4):889-911.
    We propose new definitions of explanation, using structural equations to model counterfactuals. The definition is based on the notion of actual cause, as defined and motivated in a companion article. Essentially, an explanation is a fact that is not known for certain but, if found to be true, would constitute an actual cause of the fact to be explained, regardless of the agent’s initial uncertainty. We show that the definition handles well a number of problematic examples from the literature.
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  • Causes and Conditions.J. L. Mackie - 1965 - American Philosophical Quarterly 2 (4):245 - 264.
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  • (2 other versions)Causes and Explanations: A Structural-Model Approach. Part II: Explanations.Joseph Y. Halpern & Judea Pearl - 2005 - British Journal for the Philosophy of Science 56 (4):889-911.
    We propose new definitions of (causal) explanation, using structural equations to model counterfactuals. The definition is based on the notion of actual cause, as defined and motivated in a companion article. Essentially, an explanation is a fact that is not known for certain but, if found to be true, would constitute an actual cause of the fact to be explained, regardless of the agent's initial uncertainty. We show that the definition handles well a number of problematic examples from the literature.
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  • The Disorder of Things: Metaphysical Foundations of the Disunity of Science.John Dupré - 1993 - Harvard University Press.
    With this manifesto, John Dupré systematically attacks the ideal of scientific unity by showing how its underlying assumptions are at odds with the central conclusions of science itself.
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  • Probabilistic Reasoning in Intelligent Systems: Networks of Plausible Inference.Judea Pearl - 1988 - Morgan Kaufmann.
    The book can also be used as an excellent text for graduate-level courses in AI, operations research, or applied probability.
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  • A probabilistic theory of causality.Patrick Suppes - 1970 - Amsterdam: North-Holland Pub. Co..
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  • Contextual unanimity and the units of selection problem.Stuart Glennan - 2002 - Philosophy of Science 69 (1):118-137.
    Sober and Lewontin's critique of genic selectionism is based upon the principle that a unit of selection should make a context‐independent contribution to fitness. Critics have effectively shown that this principle is flawed. In this paper I show that the context independence principle is an instance of a more general principle for characterizing causes,called the contextual unanimity principle. I argue that this latter principle, while widely accepted, is erroneous. What is needed is to replace the approach to causality characterized by (...)
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  • Probabilistic causality and the question of transitivity.Ellery Eells & Elliott Sober - 1983 - Philosophy of Science 50 (1):35-57.
    After clarifying the probabilistic conception of causality suggested by Good (1961-2), Suppes (1970), Cartwright (1979), and Skyrms (1980), we prove a sufficient condition for transitivity of causal chains. The bearing of these considerations on the units of selection problem in evolutionary theory and on the Newcomb paradox in decision theory is then discussed.
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  • Probabilistic causality: Reply to John dupré.Ellery Eells - 1987 - Philosophy of Science 54 (1):105-114.
    John Dupré (1984) has recently criticized the theory of probabilistic causality developed by, among others, Good (1961-62), Suppes (1970), Cartwright (1979), and Skyrms (1980). He argues that there is a tension or incompatibility between one of its central requirements for the presence of a causal connection, on the one hand, and a feature of the theory pointed out by Elliott Sober and me (1983), on the other. He also argues that the requirement just alluded to should be given up. I (...)
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  • (1 other version)Causal laws and effective strategies.Nancy Cartwright - 1979 - Noûs 13 (4):419-437.
    La autora presenta algunas criticas generales al proyecto de reducir las leyes causales a probabilidades. Además, muestra que las leyes causales son imprescindibles para poder diferenciar las strategias efectivas de las que no lo son y da un criterio para considerar cuando podemos deducir causalidad a través de datos estadísticos.
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  • Causality: Models, Reasoning and Inference.Judea Pearl - 2000 - Tijdschrift Voor Filosofie 64 (1):201-202.
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  • (2 other versions)Probabilistic Causality.Wesley C. Salmon - 1980 - Pacific Philosophical Quarterly 61 (1-2):50-74.
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  • A Probabilistic Theory of Causality.P. Suppes - 1973 - British Journal for the Philosophy of Science 24 (4):409-410.
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  • (2 other versions)Statistical explanation.Wesley C. Salmon - 1970 - In Robert G. Colodny (ed.), The Nature and Function of Scientific Theories: Essays in Contemporary Science and Philosophy. University of Pittsburgh Press. pp. 173--231.
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  • (2 other versions)Causal Necessity: A Pragmatic Investigation of the Necessity of Laws.Richard C. Jeffrey - 1980 - Journal of Symbolic Logic 50 (2):557-558.
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  • Probabilistic causal structure.Kevin B. Korb - 1999 - In Howard Sankey (ed.), Causation and Laws of Nature. Kluwer Academic Publishers. pp. 265--311.
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  • [Handout 12].J. L. Mackie - unknown
    1. Causal knowledge is an indispensable element in science. Causal assertions are embedded in both the results and the procedures of scientific investigation. 2. It is therefore worthwhile to investigate the meaning of causal statements and the ways in which we can arrive at causal knowledge.
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  • Difference-making in context.Peter Menzies - 2004 - In John Collins, Ned Hall & Laurie Paul (eds.), Causation and Counterfactuals. MIT Press.
    Several different approaches to the conceptual analysis of causation are guided by the idea that a cause is something that makes a difference to its effects. These approaches seek to elucidate the concept of causation by explicating the concept of a difference-maker in terms of better-understood concepts. There is no better example of such an approach than David Lewis’ analysis of causation, in which he seeks to explain the concept of a difference-maker in counterfactual terms. Lewis introduced his counterfactual theory (...)
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  • Causal necessity: a pragmatic investigation of the necessity of laws.Brian Skyrms - 1980 - New Haven: Yale University Press.
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  • (1 other version)The intransitivity of causation revealed in equations and graphs.Christopher Hitchcock - 2001 - Journal of Philosophy 98 (6):273-299.
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  • (1 other version)The Intransitivity of Causation Revealed in Equations and Graphs.Christopher Hitchcock - 2001 - Journal of Philosophy 98 (6):273.
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  • The Chances of Explanation.Paul Humphreys - 1994 - British Journal for the Philosophy of Science 45 (1):353-374.
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  • Causal Generalizations and Good Advice.Christopher Hitchcock - 2001 - The Monist 84 (2):218-241.
    The aim of this paper is to explicate causal generalizations such as.
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  • Probabilistic Reasoning in Intelligent Systems: Networks of Plausible Inference.J. Pearl, F. Bacchus, P. Spirtes, C. Glymour & R. Scheines - 1988 - Synthese 104 (1):161-176.
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  • Nature's Capacities and Their Measurement.Tim Maudlin & Nancy Cartwright - 1993 - Journal of Philosophy 90 (11):599.
    This book on the philosophy of science argues for an empiricism, opposed to the tradition of David Hume, in which singular rather than general causal claims are primary; causal laws express facts about singular causes whereas the general causal claims of science are ascriptions of capacities or causal powers, capacities to make things happen. Taking science as measurement, Cartwright argues that capacities are necessary for science and that these can be measured, provided suitable conditions are met. There are case studies (...)
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  • . . .And away from a theory of explanation itself.Christopher Hitchcock - 2005 - Synthese 143 (1-2):109-124.
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  • The Disorder of Things: Metaphysical Foundations of the Disunuty of Science.[author unknown] - 1995 - Proceedings and Addresses of the American Philosophical Association 68 (3):84-86.
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