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The Logical Foundations of Statistical Inference

Dordrecht and Boston: Reidel (1974)

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  1. Resurrecting logical probability.James Franklin - 2001 - Erkenntnis 55 (2):277-305.
    The logical interpretation of probability, or "objective Bayesianism'' – the theory that (some) probabilities are strictly logical degrees of partial implication – is defended. The main argument against it is that it requires the assignment of prior probabilities, and that any attempt to determine them by symmetry via a "principle of insufficient reason" inevitably leads to paradox. Three replies are advanced: that priors are imprecise or of little weight, so that disagreement about them does not matter, within limits; that it (...)
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  • The problem of representing incompletely ordered doxastic systems.Peter Forrest - 1989 - Synthese 79 (2):279 - 303.
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  • The philosophical scandal of the wrong kind of religious disagreement.Peter Forrest - 2009 - Sophia 48 (2):151-166.
    I argue for the following four theses: (1) The Dread Thesis: human beings should fear having false religious beliefs concerning some religious doctrines; (2) The Radical Uncertainty Thesis: we, namely most human beings in our culture at our time, are in a situation where we have to commit ourselves on the truth or falsity of some propositions of ultimate importance; (3) The Radical Choice Thesis: considerations of expected loss or gain do not always provide guidance as to how to commit (...)
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  • In defence of the armchair.Michael Fortescue - 1980 - Behavioral and Brain Sciences 3 (1):135-136.
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  • An Examination of John Schellenberg’s Austere Ultimism:: Review of J. L. Schellenberg: 1) Prolegomena to a Philosophy of Religion, 2005 ISBN: 978-0801443589, hb, 242pp.; 2) The Wisdom to Doubt: A Justification of Religious Skepticism, 2007, ISBN: 978-0801445545, hb, 342pp.; and 3) The Will to Imagine: A Justification of Skeptical Religion, 2009, ISBN: 978-0801447808, hb, 288pp.; Ithaca: Cornell University Press. [REVIEW]Peter Forrest - 2013 - Sophia 52 (3):535-551.
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  • Can any statements about human behavior be empirically validated?Baruch Fischoff - 1981 - Behavioral and Brain Sciences 4 (3):336-337.
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  • Psychological objectives for logical theories.J. St B. T. Evans - 1983 - Behavioral and Brain Sciences 6 (2):250-250.
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  • On defining rationality unreasonably.J. St B. T. Evans & P. Pollard - 1981 - Behavioral and Brain Sciences 4 (3):335-336.
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  • Rationality and the sanctity of competence.Hillel J. Einhorn & Robin M. Hogarth - 1981 - Behavioral and Brain Sciences 4 (3):334-335.
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  • Metatickles and the dynamics of deliberation.Ellery Eells - 1984 - Theory and Decision 17 (1):71-95.
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  • Newcomb's many solutions.Ellery Eells - 1984 - Theory and Decision 16 (1):59-105.
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  • Randomness Is Unpredictability.Antony Eagle - 2005 - British Journal for the Philosophy of Science 56 (4):749-790.
    The concept of randomness has been unjustly neglected in recent philosophical literature, and when philosophers have thought about it, they have usually acquiesced in views about the concept that are fundamentally flawed. After indicating the ways in which these accounts are flawed, I propose that randomness is to be understood as a special case of the epistemic concept of the unpredictability of a process. This proposal arguably captures the intuitive desiderata for the concept of randomness; at least it should suggest (...)
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  • Direct inference and the sleeping beauty problem.Kaila Draper - 2019 - Synthese 198 (3):2253-2271.
    This article is an attempt to use the insights of objective probability theory to solve the Sleeping Beauty problem. The approach is to develop a partial theory of direct inference and then apply that partial theory to the problem. One of the crucial components of the partial theory is the thesis that expected indefinite probabilities provide a reliable basis for direct inference. The article relies heavily on recent work by Paul D. Thorn to defend that thesis. The article’s primary conclusion (...)
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  • In philosophical defence of Bayesian rationality.Jon Dorling - 1983 - Behavioral and Brain Sciences 6 (2):249-250.
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  • The persistence of cognitive illusions.Persi Diaconis & David Freedman - 1981 - Behavioral and Brain Sciences 4 (3):333-334.
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  • Representation and Invariance of Scientific Structures.Patrick Suppes - 2002 - CSLI Publications (distributed by Chicago University Press).
    An early, very preliminary edition of this book was circulated in 1962 under the title Set-theoretical Structures in Science. There are many reasons for maintaining that such structures play a role in the philosophy of science. Perhaps the best is that they provide the right setting for investigating problems of representation and invariance in any systematic part of science, past or present. Examples are easy to cite. Sophisticated analysis of the nature of representation in perception is to be found already (...)
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  • Chance versus Randomness.Antony Eagle - 2010 - Stanford Encyclopedia of Philosophy.
    This article explores the connection between objective chance and the randomness of a sequence of outcomes. Discussion is focussed around the claim that something happens by chance iff it is random. This claim is subject to many objections. Attempts to save it by providing alternative theories of chance and randomness, involving indeterminism, unpredictability, and reductionism about chance, are canvassed. The article is largely expository, with particular attention being paid to the details of algorithmic randomness, a topic relatively unfamiliar to philosophers.
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  • Statistics as Inductive Inference.Jan-Willem Romeijn - unknown
    An inductive logic is a system of inference that describes the relation between propositions on data, and propositions that extend beyond the data, such as predictions over future data, and general conclusions on all possible data. Statistics, on the other hand, is a mathematical discipline that describes procedures for deriving results about a population from sample data. These results include predictions on future samples, decisions on rejecting or accepting a hypothesis about the population, the determination of probability assignments over such (...)
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  • A Resource-bounded Default Logic.Gregory Wheeler - 2004 - In J. Delgrande & T. Schaub (eds.), Proceedings of NMR 2004. AAAI.
    This paper presents statistical default logic, an expansion of classical (i.e., Reiter) default logic that allows us to model common inference patterns found in standard inferential statistics, including hypothesis testing and the estimation of a populations mean, variance and proportions. The logic replaces classical defaults with ordered pairs consisting of a Reiter default in the first coordinate and a real number within the unit interval in the second coordinate. This real number represents an upper-bound limit on the probability of accepting (...)
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  • Moral Obligation and Epistemic Risk.Zoe Johnson King & Boris Babic - 2020 - Oxford Studies in Normative Ethics 10:81-105.
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  • Agreeing to disagree and dilation.Jiji Zhang, Hailin Liu & Teddy Seidenfeld - unknown
    We consider Geanakoplos and Polemarchakis’s generalization of Aumman’s famous result on “agreeing to disagree", in the context of imprecise probability. The main purpose is to reveal a connection between the possibility of agreeing to disagree and the interesting and anomalous phenomenon known as dilation. We show that for two agents who share the same set of priors and update by conditioning on every prior, it is impossible to agree to disagree on the lower or upper probability of a hypothesis unless (...)
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