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Accuracy and Coherence: Prospects for an Alethic Epistemology of Partial Belief

In Franz Huber & Christoph Schmidt-Petri (eds.), Degrees of belief. London: Springer. pp. 263-297 (2009)

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  1. Probability and Evidence.Paul Horwich - 1982 - Cambridge: Cambridge University Press.
    In this influential study of central issues in the philosophy of science, Paul Horwich elaborates on an important conception of probability, diagnosing the failure of previous attempts to resolve these issues as stemming from a too-rigid conception of belief. Adopting a Bayesian strategy, he argues for a probabilistic approach, yielding a more complete understanding of the characteristics of scientific reasoning and methodology. Presented in a fresh twenty-first-century series livery, and including a specially commissioned preface written by Colin Howson, illuminating its (...)
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  • (1 other version)Theory of Probability: A Critical Introductory Treatment.Bruno de Finetti - 1970 - New York: John Wiley.
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  • Truth and probability.Frank Ramsey - 2010 - In Antony Eagle (ed.), Philosophy of Probability: Contemporary Readings. New York: Routledge. pp. 52-94.
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  • Scientific reasoning: the Bayesian approach.Peter Urbach & Colin Howson - 1993 - Chicago: Open Court. Edited by Peter Urbach.
    Scientific reasoning is—and ought to be—conducted in accordance with the axioms of probability. This Bayesian view—so called because of the central role it accords to a theorem first proved by Thomas Bayes in the late eighteenth ...
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  • Probabilism and induction.Richard Jeffrey - 1986 - Topoi 5 (1):51-58.
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  • Conditionalization, cogency, and cognitive value.Graham Oddie - 1997 - British Journal for the Philosophy of Science 48 (4):533-541.
    Why should a Bayesian bother performing an experiment, one the result of which might well upset his own favored credence function? The Ramsey-Good theorem provides a decision theoretic answer. Provided you base your decision on expected utility, and the the experiment is cost-free, performing the experiment and then choosing has at least as much expected utility as choosing without further ado. Furthermore, doing the experiment is strictly preferable just in case at least one possible outcome of the experiment could alter (...)
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  • (1 other version)A nonpragmatic vindication of probabilism.James M. Joyce - 1998 - Philosophy of Science 65 (4):575-603.
    The pragmatic character of the Dutch book argument makes it unsuitable as an "epistemic" justification for the fundamental probabilist dogma that rational partial beliefs must conform to the axioms of probability. To secure an appropriately epistemic justification for this conclusion, one must explain what it means for a system of partial beliefs to accurately represent the state of the world, and then show that partial beliefs that violate the laws of probability are invariably less accurate than they could be otherwise. (...)
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  • The Consistency Argument for Ranking Functions.Franz Huber - 2007 - Studia Logica 86 (2):299-329.
    The paper provides an argument for the thesis that an agent’s degrees of disbelief should obey the ranking calculus. This Consistency Argument is based on the Consistency Theorem. The latter says that an agent’s belief set is and will always be consistent and deductively closed iff her degrees of entrenchment satisfy the ranking axioms and are updated according to the ranktheoretic update rules.
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  • Justifying conditionalization: Conditionalization maximizes expected epistemic utility.Hilary Greaves & David Wallace - 2006 - Mind 115 (459):607-632.
    According to Bayesian epistemology, the epistemically rational agent updates her beliefs by conditionalization: that is, her posterior subjective probability after taking account of evidence X, pnew, is to be set equal to her prior conditional probability pold(·|X). Bayesians can be challenged to provide a justification for their claim that conditionalization is recommended by rationality—whence the normative force of the injunction to conditionalize? There are several existing justifications for conditionalization, but none directly addresses the idea that conditionalization will be epistemically rational (...)
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  • Dutch-book arguments depragmatized: Epistemic consistency for partial believers.David Christensen - 1996 - Journal of Philosophy 93 (9):450-479.
    The most immediately appealing model for formal constraints on degrees of belief is provided by probability theory, which tells us, for instance, that the probability of P can never be greater than that of (P v Q). But while this model has much intuitive appeal, many have been concerned to provide arguments showing that ideally rational degrees of belief would conform to the calculus of probabilities. The arguments most frequently used to make this claim plausible are the so-called "Dutch Book" (...)
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  • Probability and Evidence.Teddy Seidenfeld - 1984 - Philosophical Review 93 (3):474.
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  • Calibration: A Frequency Justification for Personal Probability.Bas van Fraassen - 1983 - In Robert S. Cohen & Larry Laudan (eds.), Physics, Philosophy and Psychoanalysis: Essays in Honor of Adolf Grünbaum. D. Reidel.
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  • Why scientists gather evidence.Patrick Maher - 1990 - British Journal for the Philosophy of Science 41 (1):103-119.
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  • (4 other versions)Probability and Evidence.Paul Horwich - 1984 - British Journal for the Philosophy of Science 35 (2):161-166.
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  • La Prévision: Ses Lois Logiques, Ses Sources Subjectives.Bruno de Finetti - 1937 - Annales de l'Institut Henri Poincaré 7 (1):1-68.
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  • (1 other version)Rational Credence and the Value of Truth.Allan Gibbard - 2008 - Oxford Studies in Epistemology 2:143-164.
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  • An Adamite Derivation of the Calculus of Probability.Abner Shimony - 1988 - In J. H. Fetzer (ed.), Probability and Causality: Essays in Honor of Wesley C. Salmon. D. Reidel.
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  • (1 other version)Rational Credence and the Value of Truth.Allan Gibbard - 2007 - In Tamar Szabo Gendler & John Hawthorne (eds.), Oxford Studies in Epistemology:Volume 2: Volume 2. Oxford University Press.
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  • Attitudes Toward Epistemic Risk and the Value of Experiments.Don Fallis - 2007 - Studia Logica 86 (2):215-246.
    Several different Bayesian models of epistemic utilities (see, e. g., [37], [24], [40], [46]) have been used to explain why it is rational for scientists to perform experiments. In this paper, I argue that a model-suggested independently by Patrick Maher [40] and Graham Oddie [46]-that assigns epistemic utility to degrees of belief in hypotheses provides the most comprehensive explanation. This is because this proper scoring rule (PSR) model captures a wider range of scientifically acceptable attitudes toward epistemic risk than the (...)
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  • Joyce’s Argument for Probabilism.Patrick Maher - 2002 - Philosophy of Science 69 (1):73-81.
    James Joyce's 'Nonpragmatic Vindication of Probabilism' gives a new argument for the conclusion that a person's credences ought to satisfy the laws of probability. The premises of Joyce's argument include six axioms about what counts as an adequate measure of the distance of a credence function from the truth. This paper shows that (a) Joyce's argument for one of these axioms is invalid, (b) his argument for another axiom has a false premise, (c) neither axiom is plausible, and (d) without (...)
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  • (4 other versions)Probability and Evidence.Paul Horwich - 1973 - Philosophical Review 82 (4):547.
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  • De finetti, countable additivity, consistency and coherence.Colin Howson - 2008 - British Journal for the Philosophy of Science 59 (1):1-23.
    Many people believe that there is a Dutch Book argument establishing that the principle of countable additivity is a condition of coherence. De Finetti himself did not, but for reasons that are at first sight perplexing. I show that he rejected countable additivity, and hence the Dutch Book argument for it, because countable additivity conflicted with intuitive principles about the scope of authentic consistency constraints. These he often claimed were logical in nature, but he never attempted to relate this idea (...)
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  • (4 other versions)Probability and Evidence.Paul Horwich - 1983 - Philosophy of Science 50 (4):659-660.
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  • Calibration, coherence, and scoring rules.Teddy Seidenfeld - 1985 - Philosophy of Science 52 (2):274-294.
    Can there be good reasons for judging one set of probabilistic assertions more reliable than a second? There are many candidates for measuring "goodness" of probabilistic forecasts. Here, I focus on one such aspirant: calibration. Calibration requires an alignment of announced probabilities and observed relative frequency, e.g., 50 percent of forecasts made with the announced probability of.5 occur, 70 percent of forecasts made with probability.7 occur, etc. To summarize the conclusions: (i) Surveys designed to display calibration curves, from which a (...)
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  • (4 other versions)Probability and Evidence.Paul Horwich - 1982 - Tijdschrift Voor Filosofie 47 (4):687-688.
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  • (4 other versions)Probability and Evidence.Paul Horwich - 1985 - Erkenntnis 23 (2):213-219.
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