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  1. Review. [REVIEW]John Watkins - 1995 - British Journal for the Philosophy of Science 46 (4):610-616.
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  • Metaphysics and the advancement of science.J. W. N. Watkins - 1975 - British Journal for the Philosophy of Science 26 (2):91-121.
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  • Lawson on the Raven paradox and background knowledge.John Watkins - 1987 - British Journal for the Philosophy of Science 38 (4):567-571.
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  • What is a law of nature? A Humean answer.Peter Urbach - 1988 - British Journal for the Philosophy of Science 39 (2):193-209.
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  • Is any of Popper's arguments against historicism valid?Peter Urbach - 1978 - British Journal for the Philosophy of Science 29 (2):117-130.
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  • Two Impossibility Results for Measures of Corroboration.Jan Sprenger - 2018 - British Journal for the Philosophy of Science 69 (1):139--159.
    According to influential accounts of scientific method, such as critical rationalism, scientific knowledge grows by repeatedly testing our best hypotheses. But despite the popularity of hypothesis tests in statistical inference and science in general, their philosophical foundations remain shaky. In particular, the interpretation of non-significant results—those that do not reject the tested hypothesis—poses a major philosophical challenge. To what extent do they corroborate the tested hypothesis, or provide a reason to accept it? Popper sought for measures of corroboration that could (...)
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  • Ramsey eliminability and the testability of scientific theories.Herbert A. Simon & Guy J. Groen - 1973 - British Journal for the Philosophy of Science 24 (4):367-380.
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  • Theory choice in a two-level science.Geoffrey Sampson - 1975 - British Journal for the Philosophy of Science 26 (4):303-318.
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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 methodology of industrial research.George A. Pogany - 1985 - British Journal for the Philosophy of Science 36 (3):309-313.
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  • The status of Popper's theory of scientific method.Robert Nola - 1987 - British Journal for the Philosophy of Science 38 (4):441-480.
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  • Induction before Hume.J. R. Milton - 1987 - British Journal for the Philosophy of Science 38 (1):49-74.
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  • A restoration of Popperian inductive scepticism.David Miller - 1990 - British Journal for the Philosophy of Science 41 (1):137-139.
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  • An Oscillatory Model of the Growth of Scientific Knowledge.F. Michael Akeroyd - 1990 - British Journal for the Philosophy of Science 41 (3):407-414.
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  • Induction and scientific realism: Einstein versus Van Fraassen part one: How to solve the problem of induction.Nicholas Maxwell - 1993 - British Journal for the Philosophy of Science 44 (1):61-79.
    In this three-part paper, my concern is to expound and defend a conception of science, close to Einstein's, which I call aim-oriented empiricism. I argue that aim-oriented empiricsim has the following virtues. (i) It solve the problem of induction; (ii) it provides decisive reasons for rejecting van Fraassen's brilliantly defended but intuitively implausible constructive empiricism; (iii) it solves the problem of verisimilitude, the problem of explicating what it can mean to speak of scientific progress given that science advances from one (...)
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  • Induction and scientific realism: Einstein versus Van Fraassen part three: Einstein, aim-oriented empiricism and the discovery of special and general relativity.Nicholas Maxwell - 1993 - British Journal for the Philosophy of Science 44 (2):275-305.
    In this paper I show that Einstein made essential use of aim-oriented empiricism in scientific practice in developing special and general relativity. I conclude by considering to what extent Einstein came explicitly to advocate aim-oriented empiricism in his later years.
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  • Propensities and Probabilities. [REVIEW]Henry E. Kyberg - 1974 - British Journal for the Philosophy of Science 25 (4):358-375.
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  • Hypothetical and Inductive Heuristics.Scott E. Kleiner - 1990 - Philosophica 45.
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  • Nomic necessity is cross-theoretic.H.-C. Hung - 1981 - British Journal for the Philosophy of Science 32 (3):219-236.
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  • Popper, prior probabilities, and inductive inference.Colin Howson - 1987 - British Journal for the Philosophy of Science 38 (2):207-224.
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  • Must the logical probability of laws be zero?C. Howson - 1973 - British Journal for the Philosophy of Science 24 (2):153-163.
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  • Logic and probability.Colin Howson - 1997 - British Journal for the Philosophy of Science 48 (4):517-531.
    This paper argues that Ramsey's view of the calculus of subjective probabilities as, in effect, logical axioms is the correct view, with powerful heuristic value. This heuristic value is seen particularly in the analysis of the role of conditionalization in the Bayesian theory, where a semantic criterion of synchronic coherence is employed as the test of soundness, which the traditional formulation of conditionalization fails. On the other hand, there is a generally sound rule which supports conditionalization in appropriate contexts, though (...)
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  • Bayesianism and Inference to the Best Explanation.Leah Henderson - 2014 - British Journal for the Philosophy of Science 65 (4):687-715.
    Two of the most influential theories about scientific inference are inference to the best explanation and Bayesianism. How are they related? Bas van Fraassen has claimed that IBE and Bayesianism are incompatible rival theories, as any probabilistic version of IBE would violate Bayesian conditionalization. In response, several authors have defended the view that IBE is compatible with Bayesian updating. They claim that the explanatory considerations in IBE are taken into account by the Bayesian because the Bayesian either does or should (...)
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  • Quantum Theory and the Limits of Objectivity.Richard Healey - 2018 - Foundations of Physics 48 (11):1568-1589.
    Three recent arguments seek to show that the universal applicability of unitary quantum theory is inconsistent with the assumption that a well-conducted measurement always has a definite physical outcome. In this paper I restate and analyze these arguments. The import of the first two is diminished by their dependence on assumptions about the outcomes of counterfactual measurements. But the third argument establishes its intended conclusion. Even if every well-conducted quantum measurement we ever make will have a definite physical outcome, this (...)
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  • Epicyclic popperism.Errol E. Harris - 1972 - British Journal for the Philosophy of Science 23 (1):55-67.
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  • Ad hoc auxiliary hypotheses and falsificationism.Adolf Grünbaum - 1976 - British Journal for the Philosophy of Science 27 (4):329-362.
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  • Can a Theory Answer more Questions than one of its Rivals?Adolf Grünbaum - 1976 - British Journal for the Philosophy of Science 27 (1):1-23.
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  • Critical Rationalism and Educational Discourse G. Zecha (Ed.).Patrick Fitzsimons - 2000 - Educational Philosophy and Theory 32 (2):253-262.
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  • The meaning of mathematical expressions: Does philosophy shed any light on psychology?Paul Ernest - 1990 - British Journal for the Philosophy of Science 41 (4):443-460.
    Mathematicians and physical scientists depend heavily on the formal symbolism of mathematics in order to express and develop their theories. For this and other reasons the last hundred years has seen a growing interest in the nature of formal language and the way it expresses meaning; particularly the objective, shared aspect of meaning as opposed to subjective, personal aspects. This dichotomy suggests the question: do the objective philosophical theories of meaning offer concepts which can be applied in psychological theories of (...)
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  • Solving the problem of induction using a values-based epistemology.Brian Ellis - 1988 - British Journal for the Philosophy of Science 39 (2):141-160.
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  • The logic of experimental tests, particularly of Everettian quantum theory.David Deutsch - 2016 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 55:24-33.
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  • The philosophy of computer science.Raymond Turner - 2013 - Stanford Encyclopedia of Philosophy.
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  • Bayesian Epistemology.William Talbott - 2006 - Stanford Encyclopedia of Philosophy.
    ‘Bayesian epistemology’ became an epistemological movement in the 20th century, though its two main features can be traced back to the eponymous Reverend Thomas Bayes (c. 1701-61). Those two features are: (1) the introduction of a formal apparatus for inductive logic; (2) the introduction of a pragmatic self-defeat test (as illustrated by Dutch Book Arguments) for epistemic rationality as a way of extending the justification of the laws of deductive logic to include a justification for the laws of inductive logic. (...)
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  • Religion and science.Alvin Plantinga - 2008 - Stanford Encyclopedia of Philosophy.
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  • Interpretations of probability.Alan Hájek - 2007 - Stanford Encyclopedia of Philosophy.
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  • Philosophy of economics.Daniel M. Hausman - 2008 - Stanford Encyclopedia of Philosophy.
    This is a comprehensive anthology of works concerning the nature of economics as a science, including classic texts and essays exploring specific branches and schools of economics. Apart from the classics, most of the selections in the third edition are new, as are the introduction and bibliography. No other anthology spans the whole field and offers a comprehensive introduction to questions about economic methodology.
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  • Scientific method.Brian Hepburn & Hanne Andersen - 2015 - Stanford Encyclopedia of Philosophy.
    1. Overview and organizing themes 2. Historical Review: Aristotle to Mill 3. Logic of method and critical responses 3.1 Logical constructionism and Operationalism 3.2. H-D as a logic of confirmation 3.3. Popper and falsificationism 3.4 Meta-methodology and the end of method 4. Statistical methods for hypothesis testing 5. Method in Practice 5.1 Creative and exploratory practices 5.2 Computer methods and the ‘third way’ of doing science 6. Discourse on scientific method 6.1 “The scientific method” in science education and as seen (...)
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  • Hans Reichenbach.Clark Glymour - 2008 - Stanford Encyclopedia of Philosophy.
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  • Carl Hempel.James Fetzer - forthcoming - Stanford Encyclopedia of Philosophy.
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  • Dispositions.Michael Fara - 2008 - Stanford Encyclopedia of Philosophy.
    The glass vase on my desk is fragile. It should be handled with care because it it is likely to shatter or crack if it is knocked, dropped, or otherwise treated roughly. The vase has certain dispositions, for example the disposition to shatter when dropped. But what is this disposition? It seems on the one hand to be a perfectly real property, a genuine respect of similarity common to glass vases, china cups, ancient manuscripts, and anything else fragile. Yet on (...)
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  • Otto Neurath.Jordi Cat - forthcoming - Stanford Encyclopedia of Philosophy.
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  • The Unity of Science.Jordi Cat - 2013 - Stanford Encyclopedia of Philosophy.
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  • Operationalism.Hasok Chang - 2009 - Stanford Encyclopedia of Philosophy.
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  • Dispositions.Sungho Choi - forthcoming - Stanford Encyclopedia of Philosophy.
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  • Evolutionary epistemology.Michael Bradie - 2008 - Stanford Encyclopedia of Philosophy.
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  • Simplicity.Alan Baker - 2008 - Stanford Encyclopedia of Philosophy.
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  • Information.Pieter Adriaans - 2012 - Stanford Encyclopedia of Philosophy.
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  • Wartości w nauce.Ernan Mcmullin - 1999 - Zagadnienia Filozoficzne W Nauce 24.
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