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  1. Idealization, Explanation, and Confirmation.Ronald Laymon - 1980 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1980:336 - 350.
    The use of idealizations and approximations in scientific explanations poses a problem for traditional philosophical theories of confirmation since, strictly speaking, these sorts of statements are false. Furthermore, in several central cases in the history of science, theoretical predictions seen as confirmatory are not, in any usual sense, even approximately true. As a means of eliminating the puzzling nature of these cases, two theses are proposed. First, explanations consist of idealized deductive-nomological sketches plus what are called modal auxiliaries, i.e., arguments (...)
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  • Diagrammatic carriers and the acceptance of Newton’s optical theory.Gábor Áron Zemplén - 2019 - Synthese 196 (9):3577-3593.
    A permissivist framework is developed to include images in the reconstruction of the evidential base and of the theoretical content. The paper uses Newton’s optical theory as a case study to discuss mathematical idealizations and depictions of experiments, together with textual correlates of diagrams. Instead of assuming some specific type of theoretical content, focus is on novel traits that are delineable when studying the carriers of a theory. The framework is developed to trace elliptic and ambiguous message design, and utilizes (...)
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  • Goethe's Critique of Newton: A Reconsideration.Neil M. Ribe - 1984 - Studies in History and Philosophy of Science Part A 16 (4):315.
    The masses may concede that someone has talent where he has displayed a certain industry and fortune has not been unkind to him; but if he tries to enter another field and diversify his abilities, he appears to damage the claim he once had on public opinion, and therefore his efforts in a new realm are seldom accepted with favor and good will.
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  • Underdetermination and provability: a reply to Olaf Müller.Timm Lampert - 2017 - British Journal for the History of Philosophy 25 (2):389-400.
    Newton claims to have proven the heterogeneity of light through his experimentum crucis. However, Olaf Müller has worked out in detail Goethe’s idea that one could likewise prove the heterogeneity of darkness by inverting Newton’s famous experiment. Müller concludes that this invalidates Newton’s claim of proof. Yet this conclusion only holds if the heterogeneity of light and the heterogeneity of darkness is logically incompatible. This paper shows that this is not the case. Instead, in Quine’s terms, we have two logically (...)
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  • Prismatic Equivalence – A New Case of Underdetermination: Goethe vs. Newton on the Prism Experiments.Olaf L. Mueller - 2016 - British Journal for the History of Philosophy 24 (2):323-347.
    Goethe's objections to Newton's theory of light and colours are better than often acknowledged. You can accept the most important elements of these objections without disagreeing with Newton about light and colours. As I will argue, Goethe exposed a crucial weakness of Newton's methodological self-assessment. Newton believed that with the help of his prism experiments, he could prove that sunlight was composed of variously coloured rays of light. Goethe showed that this step from observation to theory is more problematic than (...)
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  • Interpretation and Understanding.Marcelo Dascal - 2006 - Critica 38 (114):93-98.
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  • Once Snell Breaks Down: From Geometrical to Physical Optics in the Seventeenth Century.Fokko Jan Dijksterhuis - 2004 - Annals of Science 61 (2):165-185.
    Snell's law of refraction did not affect the study of optics until twenty‐five years after its publication in 1637 and by then its universality threatened to break down already. Two optical phenomena—colour dispersion and strange refraction—were discovered that did not conform to the sine law. In the early 1670s, Isaac Newton and Christiaan Huygens respectively investigated these phenomena. They tried to describe the irregular behaviour of light rays mathematically and to reconcile it with ordinary refraction. This paper discusses their investigations (...)
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  • Scientific Theory Eliminativism.Peter Vickers - 2014 - Erkenntnis 79 (1):111-126.
    The philosopher of science faces overwhelming disagreement in the literature on the definition, nature, structure, ontology, and content of scientific theories. These disagreements are at least partly responsible for disagreements in many of the debates in the discipline which put weight on the concept scientific theory. I argue that available theories of theories and conceptual analyses of theory are ineffectual options for addressing this difficulty: they do not move debates forward in a significant way. Directing my attention to debates about (...)
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  • State of the field: Transient underdetermination and values in science.Justin Biddle - 2013 - Studies in History and Philosophy of Science Part A 44 (1):124-133.
    This paper examines the state of the field of “science and values”—particularly regarding the implications of the thesis of transient underdetermination for the ideal of value-free science, or what I call the “ideal of epistemic purity.” I do this by discussing some of the main arguments in the literature, both for and against the ideal. I examine a preliminary argument from transient underdetermination against the ideal of epistemic purity, and I discuss two different formulations of an objection to this argument—an (...)
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  • What Scientific Theories Could Not Be.Hans Halvorson - 2012 - Philosophy of Science 79 (2):183-206.
    According to the semantic view of scientific theories, theories are classes of models. I show that this view -- if taken seriously as a formal explication -- leads to absurdities. In particular, this view equates theories that are truly distinct, and it distinguishes theories that are truly equivalent. Furthermore, the semantic view lacks the resources to explicate interesting theoretical relations, such as embeddability of one theory into another. The untenability of the semantic view -- as currently formulated -- threatens to (...)
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  • Theory of science in the light of Goethe's science of nature.Hjalmar Hegge - 1972 - Inquiry: An Interdisciplinary Journal of Philosophy 15 (1-4):363 – 386.
    J. W. Goethe is well known as one of the world's greatest poets. Some are also aware that throughout his long and active life Goethe devoted much of his time to natural science. His theory of colour and studies in the morphology of plants are acknowledged contributions in their fields. What is much less known is that in his scientific work Goethe was attempting to elaborate and justify a new basic methodology for the natural sciences. He opposed and wished to (...)
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  • Color, consciousness, and the isomorphism constraint.Stephen E. Palmer - 1999 - Behavioral and Brain Sciences 22 (6):923-943.
    The relations among consciousness, brain, behavior, and scientific explanation are explored in the domain of color perception. Current scientific knowledge about color similarity, color composition, dimensional structure, unique colors, and color categories is used to assess Locke.
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  • The development of the Neurath principle: unearthing the Romantic link.Gábor Á Zemplén - 2006 - Studies in History and Philosophy of Science Part A 37 (4):585-609.
    Otto Neurath’s thoroughgoing anti-foundationalism is connected to the recognition that protocol sentences are not inviolable, that is they are fallible and their choice cannot be determined: ‘Poincaré, Duhem and others have adequately shown that even if we have agreed on the protocol statements, there is a not limited number of equally applicable, possible systems of hypotheses. We have extended this tenet of the uncertainty of systems of hypotheses to all statements, including protocol statements that are alterable in principle’. Later historiography (...)
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  • A Source Book in Greek Science. [REVIEW]E. N., Morris R. Cohen & I. E. Drabkin - 1949 - Journal of Philosophy 46 (22):715.
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  • Philosophical Papers 1913-1946.O. Neurath - 1984 - Critical Philosophy 1 (1):97.
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  • The Evolving Structure of Newton's Theory of White Light and Color.Alan Shapiro - 1980 - Isis 71 (2):211-235.
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  • Goethe Contra Newton: Polemics and the Project for a New Science of Color.Dennis L. Sepper - 1988 - Cambridge University Press.
    This book explains the background and rationale of the German poet Johann Wolfgang von Goethe's notorious attack on Isaac Newton's classic theory of white light and colors. Though the merits of Goethe's color science, as advanced in his massive Zur Farbenlehre, have often been acknowledged, it has been almost unanimously proclaimed invalid as physics. How could Goethe have been so mistaken? In his book, Dennis Sepper shows that the condemnation of Goethe's attacks on Newton has been based on erroneous assumptions (...)
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  • Empiricism and Sociology.O. Neurath, Marie Neurath & Robert S. Cohen - 1974 - British Journal for the Philosophy of Science 25 (4):343-352.
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  • Colour: some philosophical problems from Wittgenstein.Jonathan Westphal - 1987 - New York, NY, USA: Blackwell.
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  • Nova Experimenta Crystalli Islandici Disdiaclastici.J. A. Lohne - 1977 - Centaurus 21 (2):106-148.
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  • Applicability, Indispensability, and Underdetermination: Puzzling Over Wigner’s ‘Unreasonable Effectiveness of Mathematics’.Axel Gelfert - 2014 - Science & Education 23 (5):997-1009.
    In his influential 1960 paper ‘The Unreasonable Effectiveness of Mathematics in the Natural Sciences’, Eugene P. Wigner raises the question of why something that was developed without concern for empirical facts—mathematics—should turn out to be so powerful in explaining facts about the natural world. Recent philosophy of science has developed ‘Wigner’s puzzle’ in two different directions: First, in relation to the supposed indispensability of mathematical facts to particular scientific explanations and, secondly, in connection with the idea that aesthetic criteria track (...)
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  • (1 other version)Colour: Some Philosophical Problems from Wittgenstein.Jonathan Westphal - 1989 - Mind 98 (389):146-149.
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