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  1. (1 other version)Conjectures and Refutations.K. Popper - 1963 - Les Etudes Philosophiques 21 (3):431-434.
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  • The Problem of Measure Sensitivity Redux.Peter Brössel - 2013 - Philosophy of Science 80 (3):378-397.
    Fitelson (1999) demonstrates that the validity of various arguments within Bayesian confirmation theory depends on which confirmation measure is adopted. The present paper adds to the results set out in Fitelson (1999), expanding on them in two principal respects. First, it considers more confirmation measures. Second, it shows that there are important arguments within Bayesian confirmation theory and that there is no confirmation measure that renders them all valid. Finally, the paper reviews the ramifications that this "strengthened problem of measure (...)
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  • The Logic of Explanatory Power.Jonah N. Schupbach & Jan Sprenger - 2011 - Philosophy of Science 78 (1):105-127.
    This article introduces and defends a probabilistic measure of the explanatory power that a particular explanans has over its explanandum. To this end, we propose several intuitive, formal conditions of adequacy for an account of explanatory power. Then, we show that these conditions are uniquely satisfied by one particular probabilistic function. We proceed to strengthen the case for this measure of explanatory power by proving several theorems, all of which show that this measure neatly corresponds to our explanatory intuitions. Finally, (...)
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  • Confirmation and justification. A commentary on Shogenji’s measure.David Atkinson - 2012 - Synthese 184 (1):49-61.
    So far no known measure of confirmation of a hypothesis by evidence has satisfied a minimal requirement concerning thresholds of acceptance. In contrast, Shogenji’s new measure of justification (Shogenji, Synthese, this number 2009) does the trick. As we show, it is ordinally equivalent to the most general measure which satisfies this requirement. We further demonstrate that this general measure resolves the problem of the irrelevant conjunction. Finally, we spell out some implications of the general measure for the Conjunction Effect; in (...)
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  • Statistical methods and scientific inference.Ronald Aylmer Fisher - 1955 - Edinburgh,: Oliver & Boyd.
    This work has been selected by scholars as being culturally important and is part of the knowledge base of civilization as we know it. This work is in the public domain in the United States of America, and possibly other nations. Within the United States, you may freely copy and distribute this work, as no entity has a copyright on the body of the work. Scholars believe, and we concur, that this work is important enough to be preserved, reproduced, and (...)
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  • (1 other version)Logical foundations of probability.Rudolf Carnap - 1950 - Chicago]: Chicago University of Chicago Press.
    APA PsycNET abstract: This is the first volume of a two-volume work on Probability and Induction. Because the writer holds that probability logic is identical with inductive logic, this work is devoted to philosophical problems concerning the nature of probability and inductive reasoning. The author rejects a statistical frequency basis for probability in favor of a logical relation between two statements or propositions. Probability "is the degree of confirmation of a hypothesis (or conclusion) on the basis of some given evidence (...)
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  • (1 other version)Objective knowledge: an evolutionary approach.Karl Raimund Popper - 1972 - New York: Oxford University Press.
    The essays in this volume represent an approach to human knowledge that has had a profound influence on many recent thinkers. Popper breaks with a traditional commonsense theory of knowledge that can be traced back to Aristotle. A realist and fallibilist, he argues closely and in simple language that scientific knowledge, once stated in human language, is no longer part of ourselves but a separate entity that grows through critical selection.
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  • (4 other versions)Conjectures and refutations: the growth of scientific knowledge.Karl Raimund Popper - 1965 - New York: Routledge.
    This classic remains one of Karl Popper's most wide-ranging and popular works, notable not only for its acute insight into the way scientific knowledge grows, but also for applying those insights to politics and to history.
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  • (1 other version)Realism and the aim of science.Karl R. Popper - 1988 - New York: Routledge. Edited by William Warren Bartley.
    Popper formulates and explains his non-justificationist theory of knowledge. Science--empirical science--aims at true explanatory theories, yet it can never prove, finally establish, or justify any of its theories as true, not even if it is in fact a true theory. Science must continue to question and criticize all its theories, even those which happen to be true.
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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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  • What Is the Point of Confirmation?Franz Huber - 2005 - Philosophy of Science 72 (5):1146-1159.
    Philosophically, one of the most important questions in the enterprise termed confirmation theory is this: Why should one stick to well confirmed theories rather than to any other theories? This paper discusses the answers to this question one gets from absolute and incremental Bayesian confirmation theory. According to absolute confirmation, one should accept ''absolutely well confirmed'' theories, because absolute confirmation takes one to true theories. An examination of two popular measures of incremental confirmation suggests the view that one should stick (...)
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  • (1 other version)Degree of confirmation.Karl R. Popper - 1954 - British Journal for the Philosophy of Science 5 (18):143-149.
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  • A second note on degree of confirmation.Karl R. Popper - 1956 - British Journal for the Philosophy of Science 7 (28):350-353.
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  • Discussion: Re‐solving irrelevant conjunction with probabilistic independence.James Hawthorne & Branden Fitelson - 2004 - Philosophy of Science 71 (4):505-514.
    Naive deductivist accounts of confirmation have the undesirable consequence that if E confirms H, then E also confirms the conjunction H·X, for any X—even if X is completely irrelevant to E and H. Bayesian accounts of confirmation may appear to have the same problem. In a recent article in this journal Fitelson (2002) argued that existing Bayesian attempts to resolve of this problem are inadequate in several important respects. Fitelson then proposes a new‐and‐improved Bayesian account that overcomes the problem of (...)
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  • Corroboration, explanation, evolving probability, simplicity and a sharpened razor.I. J. Good - 1968 - British Journal for the Philosophy of Science 19 (2):123-143.
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  • The Logic of Scientific Discovery.Patterns of Discovery.Karl R. Popper & Norwood R. Hanson - 1960 - Philosophy and Phenomenological Research 21 (2):266-268.
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  • Objective knowledge, an evolutionary approach.Karl R. Popper - 1974 - Revue Philosophique de la France Et de l'Etranger 166 (1):72-73.
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  • (2 other versions)Logik der Forschung.Karl R. Popper (ed.) - 1935 - Wien: J. Springer.
    Karl Raimund Poppers (1902-1994) Hauptwerk, die Logik der Forschung (1934), gilt als Grundlagenwerk des kritischen Rationalismus. Der kritische Rationalismus zeigt, warum unser Wissen fehlbar ist und versteht den Erkenntnisfortschritt als Resultat von Hypothesenbildung und -widerlegung. Der Sammelband orientiert sich an der Gliederung der Logik der Forschung. Seine Beiträge kommentieren die jeweiligen Themen nach aktueller Forschungslage.
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  • (4 other versions)The Logic of Scientific Discovery.Karl Popper - 1959 - Studia Logica 9:262-265.
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  • (2 other versions)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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  • (4 other versions)Conjectures and Refutations: The Growth of Scientific Knowledge.Karl Raimund Popper - 1962 - London, England: Routledge.
    The way in which knowledge progresses, and especially our scientific knowledge, is by unjustified anticipations, by guesses, by tentative solutions to our problems, by conjectures. These conjectures are controlled by criticism: that is, by attempted refutations, which include severely critical tests. They may survive these tests; but they can never be positively justified: they can neither be established as certainly true nor even as 'probable'. Criticism of our conjectures is of decisive importance: by bringing out our mistakes it makes us (...)
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  • New Axioms for Probability and Likelihood Ratio Measures.Vincenzo Crupi, Nick Chater & Katya Tentori - 2013 - British Journal for the Philosophy of Science 64 (1):189-204.
    Probability ratio and likelihood ratio measures of inductive support and related notions have appeared as theoretical tools for probabilistic approaches in the philosophy of science, the psychology of reasoning, and artificial intelligence. In an effort of conceptual clarification, several authors have pursued axiomatic foundations for these two families of measures. Such results have been criticized, however, as relying on unduly demanding or poorly motivated mathematical assumptions. We provide two novel theorems showing that probability ratio and likelihood ratio measures can be (...)
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  • “For unto every one that hath shall be given”. Matthew properties for incremental confirmation.Roberto Festa - 2012 - Synthese 184 (1):89-100.
    Confirmation of a hypothesis by evidence can be measured by one of the so far known incremental measures of confirmation. As we show, incremental measures can be formally defined as the measures of confirmation satisfying a certain small set of basic conditions. Moreover, several kinds of incremental measure may be characterized on the basis of appropriate structural properties. In particular, we focus on the so-called Matthew properties: we introduce a family of six Matthew properties including the reverse Matthew effect; we (...)
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  • Corroboration and rules of acceptance.Isaac Levi - 1962 - British Journal for the Philosophy of Science 13 (52):307-313.
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  • The plurality of bayesian measures of confirmation and the problem of measure sensitivity.Branden Fitelson - 1999 - Philosophy of Science 66 (3):378.
    Contemporary Bayesian confirmation theorists measure degree of (incremental) confirmation using a variety of non-equivalent relevance measures. As a result, a great many of the arguments surrounding quantitative Bayesian confirmation theory are implicitly sensitive to choice of measure of confirmation. Such arguments are enthymematic, since they tacitly presuppose that certain relevance measures should be used (for various purposes) rather than other relevance measures that have been proposed and defended in the philosophical literature. I present a survey of this pervasive class of (...)
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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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  • Logical Foundations of Probability.Ernest H. Hutten - 1950 - Journal of Symbolic Logic 16 (3):205-207.
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  • (2 other versions)Error and the Growth of Experimental Knowledge.Michael Kruse & Deborah G. Mayo - 1998 - Philosophical Review 107 (2):324.
    Once upon a time, logic was the philosopher’s tool for analyzing scientific reasoning. Nowadays, probability and statistics have largely replaced logic, and their most popular application—Bayesianism—has replaced the qualitative deductive relationship between a hypothesis h and evidence e with a quantitative measure of h’s probability in light of e.
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  • (1 other version)Popper’s Critical Rationalism: A Philosophical Investigation.Darrell P. Rowbottom - 2010 - New York: Routledge.
    _Popper’s Critical Rationalism_ presents Popper’s views on science, knowledge, and inquiry, and examines the significance and tenability of these in light of recent developments in philosophy of science, philosophy of probability, and epistemology. It develops a fresh and novel philosophical position on science, which employs key insights from Popper while rejecting other elements of his philosophy. Central theses include: Crucial questions about scientific method arise at the level of the group, rather than that of the individual. Although criticism is vital (...)
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  • Popper’s Measure of Corroboration and P.Darrell Patrick Rowbottom - 2013 - British Journal for the Philosophy of Science 64 (4):axs029.
    This article shows that Popper’s measure of corroboration is inapplicable if, as Popper argued, the logical probability of synthetic universal statements is zero relative to any evidence that we might possess. It goes on to show that Popper’s definition of degree of testability, in terms of degree of logical content, suffers from a similar problem. 1 The Corroboration Function and P(h|b) 2 Degrees of Testability and P(h|b).
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  • The big test of corroboration.Darrell Patrick Rowbottom - 2008 - International Studies in the Philosophy of Science 22 (3):293 – 302.
    This paper presents a new 'discontinuous' view of Popper's theory of corroboration, where theories cease to have corroboration values when new severe tests are devised which have not yet been performed, on the basis of a passage from The Logic of Scientific Discovery. Through subsequent analysis and discussion, a novel problem for Popper's account of corroboration, which holds also for the standard view, emerges. This is the problem of the Big Test : that the severest test of any hypothesis is (...)
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  • (1 other version)Popper's Critical Rationalism: A Philosophical Investigation.Darrell P. Rowbottom - 2010 - New York: Routledge.
    Popper’s Critical Rationalism presents Popper’s views on science, knowledge, and inquiry, and examines the significance and tenability of these in light of recent developments in philosophy of science, philosophy of probability, and epistemology. It develops a fresh and novel philosophical position on science, which employs key insights from Popper while rejecting other elements of his philosophy.
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  • Objective Knowledge, an Evolutionary Approach.Harry Ruja - 1973 - Philosophy and Phenomenological Research 34 (2):278-279.
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  • A third note on degree of corroboration or confirmation.K. R. Popper - 1957 - British Journal for the Philosophy of Science 8 (29):294.
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  • (1 other version)Degree of Factual Support.John G. Kemeny & Paul Oppenheim - 1955 - Journal of Symbolic Logic 20 (2):190-190.
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  • (1 other version)Degree of factual support.John G. Kemeny & Paul Oppenheim - 1952 - Philosophy of Science 19 (4):307-324.
    We wish to give a precise formulation of the intuitive concept: The degree to which the known facts support a given hypothesis.
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  • Inductive inconsistencies.Carl Gustav Hempel - 1960 - Synthese 12 (4):439-69.
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  • Review. [REVIEW]Barry Gower - 1997 - British Journal for the Philosophy of Science 48 (1):555-559.
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  • The importance of proving the null.C. R. Gallistel - 2009 - Psychological Review 116 (2):439-453.
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  • Putting the irrelevance back into the problem of irrelevant conjunction.Branden Fitelson - 2002 - Philosophy of Science 69 (4):611-622.
    Naive deductive accounts of confirmation have the undesirable consequence that if E confirms H, then E also confirms the conjunction H & X, for any X—even if X is utterly irrelevant to H (and E). Bayesian accounts of confirmation also have this property (in the case of deductive evidence). Several Bayesians have attempted to soften the impact of this fact by arguing that—according to Bayesian accounts of confirmation— E will confirm the conjunction H & X less strongly than E confirms (...)
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  • (1 other version)Review: Probability and Induction. [REVIEW]Ernest H. Hutten - 1958 - British Journal for the Philosophy of Science 9 (33):43-51.
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  • On Popper’s strong inductivism.José A. Díez - 2011 - Studies in History and Philosophy of Science Part A 42 (1):105-116.
    It is generally accepted that Popper‘s degree of corroboration, though “inductivist” in a very general and weak sense, is not inductivist in a strong sense, i.e. when by ‘inductivism’ we mean the thesis that the right measure of evidential support has a probabilistic character. The aim of this paper is to challenge this common view by arguing that Popper can be regarded as an inductivist, not only in the weak broad sense but also in a narrower, probabilistic sense. In section (...)
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  • (1 other version)The Logical Foundations of Probability. [REVIEW]Rudolf Carnap - 1950 - Journal of Philosophy 60 (13):362-364.
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  • (1 other version)Logical Foundations of Probability. [REVIEW]Arthur W. Burks - 1951 - Journal of Philosophy 48 (17):524-535.
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  • Objective Knowledge.K. R. Popper - 1972 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 4 (2):388-398.
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  • (1 other version)Logical Foundations of Probability.Rudolf Carnap - 1950 - Mind 62 (245):86-99.
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  • Conjectures et réfutations.Karl R. Popper, Michelle-irène & Marc B. de Launay - 1987 - Revue Philosophique de la France Et de l'Etranger 177 (1):90-92.
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  • (1 other version)Realism and the Aim of Science.Karl R. Popper & W. W. Bartley - 1983 - Philosophy of Science 50 (4):669-671.
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  • (1 other version)Realism and the Aim of Science.K. R. Popper & W. W. Bartley - 1984 - British Journal for the Philosophy of Science 35 (3):253-274.
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  • (2 other versions)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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