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  1. Philosophical perspectives on ad hoc hypotheses and the Higgs mechanism.Simon Friederich, Robert V. Harlander & Koray Karaca - 2014 - Synthese 191 (16):3897-3917.
    We examine physicists’ charge of ad hocness against the Higgs mechanism in the standard model of elementary particle physics. We argue that even though this charge never rested on a clear-cut and well-entrenched definition of “ad hoc”, it is based on conceptual and methodological assumptions and principles that are well-founded elements of the scientific practice of high-energy particle physics. We further evaluate the implications of the recent discovery of a Higgs-like particle at the CERN’s Large Hadron Collider for the charge (...)
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  • The Principle of Relativity.Albert Einstein - 1920 - [Calcutta]: Dover Publications. Edited by H. Minkowski, Meghnad Saha & Satyendranath Bose.
    This collection of original papers on the special and general theories of relativity constitutes an indispensable part of a library on relativity. Here are the 11 papers that forged the general and special theories of relativity: seven papers by Einstein, plus two papers by Lorentz and one each by Minkowski and Weyl.
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  • Objectivity, value judgment, and theory choice.Thomas S. Kuhn - 1981 - In David Zaret (ed.), Review of Thomas S. Kuhn The Essential Tension: Selected Studies in Scientific Tradition and Change. Duke University Press. pp. 320--39.
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  • The Copernican Revolution: Planetary Astronomy in the Development of Western Thought.Thomas S. Kuhn - 1957 - Harvard University Press.
    The significance of the plurality of the Copernican Revolution is the main thrust of this undergraduate text In this study of the Copernican Revolution, the ...
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  • The methodology of scientific research programmes.Imre Lakatos - 1978 - New York: Cambridge University Press.
    Imre Lakatos' philosophical and scientific papers are published here in two volumes. Volume I brings together his very influential but scattered papers on the philosophy of the physical sciences, and includes one important unpublished essay on the effect of Newton's scientific achievement. Volume II presents his work on the philosophy of mathematics (much of it unpublished), together with some critical essays on contemporary philosophers of science and some famous polemical writings on political and educational issues. Imre Lakatos had an influence (...)
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  • (1 other version)Scientific realism: how science tracks truth.Stathis Psillos - 1999 - New York: Routledge.
    Scientific Realism is the optimistic view that modern science is on the right track: that the world really is the way our best scientific theories describe it to be. In his book, Stathis Psillos gives us a detailed and comprehensive study, which restores the intuitive plausibility of scientific realism. We see that throughout the twentieth century, scientific realism has been challenged by philosophical positions from all angles: from reductive empiricism, to instrumentalism and modern skeptical empiricism. Scientific Realism explains that the (...)
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  • The structure of empirical knowledge.Laurence BonJour - 1985 - Cambridge: Harvard University Press.
    1 Knowledge and Justification This book is an investigation of one central problem which arises in the attempt to give a philosophical account of empirical ...
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  • The assessment of auxiliary hypotheses.Jarrett Leplin - 1982 - British Journal for the Philosophy of Science 33 (3):235-249.
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  • Explanatory unification.Philip Kitcher - 1981 - Philosophy of Science 48 (4):507-531.
    The official model of explanation proposed by the logical empiricists, the covering law model, is subject to familiar objections. The goal of the present paper is to explore an unofficial view of explanation which logical empiricists have sometimes suggested, the view of explanation as unification. I try to show that this view can be developed so as to provide insight into major episodes in the history of science, and that it can overcome some of the most serious difficulties besetting the (...)
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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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  • (1 other version)Précis of Inference to the Best Explanation, 2 nd Edition.Peter Lipton - 2007 - Philosophy and Phenomenological Research 74 (2):421-423.
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  • Einstein Versus Lorentz: Research Programmes and the Logic of Comparative Theory Evaluation.Kenneth F. Schaffner - 1974 - British Journal for the Philosophy of Science 25 (1):45-78.
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  • (4 other versions)The Logic of Scientific Discovery.Karl Popper - 1959 - Studia Logica 9:262-265.
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  • (1 other version)The Philosophy of Karl Popper.P. A. Schilpp - 1974 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 9 (2):413-422.
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  • Inference to the Best Explanation.Jonathan Vogel - 1993 - Philosophical Review 102 (3):419.
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  • Evidence and Evolution: The Logic Behind the Science.Elliott Sober - 2008 - Cambridge University Press.
    How should the concept of evidence be understood? And how does the concept of evidence apply to the controversy about creationism as well as to work in evolutionary biology about natural selection and common ancestry? In this rich and wide-ranging book, Elliott Sober investigates general questions about probability and evidence and shows how the answers he develops to those questions apply to the specifics of evolutionary biology. Drawing on a set of fascinating examples, he analyzes whether claims about intelligent design (...)
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  • (1 other version)The Paradox of Predictivism.Eric Christian Barnes - 2008 - New York: Cambridge University Press.
    An enduring question in the philosophy of science is the question of whether a scientific theory deserves more credit for its successful predictions than it does for accommodating data that was already known when the theory was developed. In The Paradox of Predictivism, Eric Barnes argues that the successful prediction of evidence testifies to the general credibility of the predictor in a way that evidence does not when the evidence is used in the process of endorsing the theory. He illustrates (...)
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  • Novel Predictions and the No Miracle Argument.Mario Alai - 2014 - Erkenntnis 79 (2):297-326.
    Predictivists use the no miracle argument to argue that “novel” predictions are decisive evidence for theories, while mere accommodation of “old” data cannot confirm to a significant degree. But deductivists claim that since confirmation is a logical theory-data relationship, predicted data cannot confirm more than merely deduced data, and cite historical cases in which known data confirmed theories quite strongly. On the other hand, the advantage of prediction over accommodation is needed by scientific realists to resist Laudan’s criticisms of the (...)
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  • Scientific explanation.James Woodward - 1979 - British Journal for the Philosophy of Science 30 (1):41-67.
    Issues concerning scientific explanation have been a focus of philosophical attention from Pre- Socratic times through the modern period. However, recent discussion really begins with the development of the Deductive-Nomological (DN) model. This model has had many advocates (including Popper 1935, 1959, Braithwaite 1953, Gardiner, 1959, Nagel 1961) but unquestionably the most detailed and influential statement is due to Carl Hempel (Hempel 1942, 1965, and Hempel & Oppenheim 1948). These papers and the reaction to them have structured subsequent discussion concerning (...)
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  • (1 other version)Coherentist Theories of Epistemic Justification.Erik J. Olsson - 2012 - The Stanford Encyclopedia of Philosophy.
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  • Popper and his commentators on the discovery of Neptune: A close shave for the law of gravitation?Greg Bamford - 1996 - Studies in History and Philosophy of Science Part A 27 (2):207-232.
    Knowledge of residual perturbations in the orbit of Uranus in the early 1840s did not lead to the refutation of Newton's law of gravitation but instead to the discovery of Neptune in 1846. Karl Popper asserts that this case is atypical of science and that the law of gravitation was at least prima facie falsified by these perturbations. I argue that these assertions are the product of a false, a priori methodological position I call, 'Weak Popperian Falsificationism'. Further, on the (...)
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  • (1 other version)Einstein, Michelson, and the "Crucial" Experiment.Gerald Holton - 1969 - Isis 60 (2):133-197.
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  • Where the Design Argument Goes Wrong: Auxiliary Assumptions and Unification.Maarten Boudry & Bert Leuridan - 2011 - Philosophy of Science 78 (4):558-578.
    Sober has reconstructed the biological design argument in the framework of likelihoodism, purporting to demonstrate that it is defective for intrinsic reasons. We argue that Sober’s restriction on the introduction of auxiliary hypotheses is too restrictive, as it commits him to rejecting types of everyday reasoning that are clearly valid. Our account shows that the design argument fails, not because it is intrinsically untestable but because it clashes with the empirical evidence and fails to satisfy certain theoretical desiderata (in particular, (...)
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  • (1 other version)COI Stories: Explanation and Evidence in the History of Science.Michel Janssen - 2002 - Perspectives on Science 10 (4):457-522.
    This paper takes as its point of departure two striking incongruities between scientiªc practice and trends in modern history and philosophy of science. (1) Many modern historians of science are so preoccupied with local scientiªc practices that they fail to recognize important non-local elements. (2) Many modern philosophers of science make a sharp distinction between explanation and evidence, whereas in scientiªc practice explanatory power is routinely used as evidence for scientiªc claims. I draw attention to one speciªc way in..
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  • Reconsidering a Scientific Revolution: The Case of Einstein 6ersus Lorentz.Michel Janssen - unknown
    The relationship between Albert Einstein’s special theory of relativity and Hendrik A. Lorentz’s ether theory is best understood in terms of competing interpretations of Lorentz invariance. In the 1890s, Lorentz proved and exploited the Lorentz invariance of Maxwell’s equations, the laws governing electromagnetic fields in the ether, with what he called the theorem of corresponding states. To account for the negative results of attempts to detect the earth’s motion through the ether, Lorentz, in effect, had to assume that the laws (...)
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  • (1 other version)The falsifiability of the lorentz-Fitzgerald contraction hypothesis.Adolf Grünbaum - 1959 - British Journal for the Philosophy of Science 10 (37):48-50.
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  • Popper's explications of ad hocness: Circularity, empirical content, and scientific practice.Greg Bamford - 1993 - British Journal for the Philosophy of Science 44 (2):335-355.
    Karl Popper defines an ad hoc hypothesis as one that is introduced to immunize a theory from some (or all) refutation but which cannot be tested independently. He has also attempted to explicate ad hocness in terms of certain other allegedly undesirable properties of hypotheses or of the explanations they would provide, but his account is confused and mistaken. The first such property is circularity, which is undesirable; the second such property is reduction in empirical content, which need not be. (...)
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  • (4 other versions)The Logic of Scientific Discovery.K. Popper - 1959 - British Journal for the Philosophy of Science 10 (37):55-57.
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  • Thematic Origins of Scientific Thought: Kepler to Einstein.Gerald James Holton - 1988 - Harvard University Press.
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  • The Concept of an "Ad Hoc" Hypothesis.Jarrett Leplin - 1975 - Studies in History and Philosophy of Science Part A 5 (4):309.
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  • Prediction and the periodic table.Eric R. Scerri & John Worrall - 2001 - Studies in History and Philosophy of Science Part A 32 (3):407-452.
    The debate about the relative epistemic weights carried in favour of a theory by predictions of new phenomena as opposed to accommodations of already known phenomena has a long history. We readdress the issue through a detailed re-examination of a particular historical case that has often been discussed in connection with it—that of Mendeleev and the prediction by his periodic law of the three ‘new’ elements, gallium, scandium and germanium. We find little support for the standard story that these predictive (...)
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  • Rationality and paradigm change in science.Ernan McMullin - 1993 - In Paul Horwich (ed.), World Changes: Thomas Kuhn and the Nature of Science. MIT Press. pp. 55-78.
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  • (1 other version)On Ad Hoc Hypotheses.J. Christopher Hunt - 2012 - Philosophy of Science 79 (1):1-14.
    In this article I review attempts to define the term “ad hoc hypothesis,” focusing on the efforts of, among others, Karl Popper, Jarrett Leplin, and Gerald Holton. I conclude that the term is unhelpful; what is “ad hoc” seems to be a judgment made by particular scientists not on the basis of any well-established definition but rather on their individual aesthetic senses. Further, a hypothesis considered ad hoc can apparently be retroactively declared non–ad hoc on the basis of subsequent data, (...)
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  • Prediction and the 'periodic law': a rejoinder to Barnes.John Worrall - 2005 - Studies in History and Philosophy of Science Part A 36 (4):817-826.
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  • On the empirical equivalence between special relativity and Lorentz׳s ether theory.Pablo Acuña - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46 (2):283-302.
    In this paper I argue that the case of Einstein׳s special relativity vs. Hendrik Lorentz׳s ether theory can be decided in terms of empirical evidence, in spite of the predictive equivalence between the theories. In the historical and philosophical literature this case has been typically addressed focusing on non-empirical features. I claim that non-empirical features are not enough to provide a fully objective and uniquely determined choice in instances of empirical equivalence. However, I argue that if we consider arguments proposed (...)
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  • Testability and 'ad-hocness' of the contraction hypothesis.K. R. Popper - 1959 - British Journal for the Philosophy of Science 10 (37):50.
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  • Logical Foundations of Probability.Ernest H. Hutten - 1950 - Journal of Symbolic Logic 16 (3):205-207.
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  • (1 other version)Logical Foundations of Probability.Rudolf Carnap - 1950 - Mind 62 (245):86-99.
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  • (1 other version)Coherence Theories of Epistemic Justification.Erik J. Olsson - 2017 - Stanford Encyclopedia of Philosophy.
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  • (1 other version)The Paradox of Predictivism.Eric Christian Barnes - 2008 - New York: Cambridge University Press.
    An enduring question in the philosophy of science is the question of whether a scientific theory deserves more credit for its successful predictions than it does for accommodating data that was already known when the theory was developed. In The Paradox of Predictivism, Eric Barnes argues that the successful prediction of evidence testifies to the general credibility of the predictor in a way that evidence does not when the evidence is used in the process of endorsing the theory. He illustrates (...)
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  • Representing Space in the Scientific Revolution.David Marshall Miller - 2014 - Cambridge University Press.
    The novel understanding of the physical world that characterized the Scientific Revolution depended on a fundamental shift in the way its protagonists understood and described space. At the beginning of the seventeenth century, spatial phenomena were described in relation to a presupposed central point; by its end, space had become a centerless void in which phenomena could only be described by reference to arbitrary orientations. David Marshall Miller examines both the historical and philosophical aspects of this far-reaching development, including the (...)
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  • On Mendeleev’s predictions: comment on Scerri and Worrall.Eric Barnes - 2005 - Studies in History and Philosophy of Science Part A 36 (4):801-812.
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  • Why did Einstein's programme supersede lorentz's? (I).Elie Zahar - 1973 - British Journal for the Philosophy of Science 24 (2):95-123.
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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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  • The Structure of Empirical Knowledge.Terry J. Christlieb - 1987 - Noûs 21 (3):427-429.
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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)Einstein, Michelson, and the "Crucial" Experiment.Gerald Holton - 1969 - Isis 60:132-197.
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