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  1. (6 other versions)The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. Research (...)
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  • Structural realism: The best of both worlds?John Worrall - 1989 - Dialectica 43 (1-2):99-124.
    The no-miracles argument for realism and the pessimistic meta-induction for anti-realism pull in opposite directions. Structural Realism---the position that the mathematical structure of mature science reflects reality---relieves this tension.
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  • (1 other version)Substance, body and soul: Aristotelian investigations.E. Hartman - 1977 - Philosophical Books 20 (2):57-61.
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  • (1 other version)Objective knowledge.Karl Raimund Popper - 1972 - Oxford,: Clarendon 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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  • Problems of empiricism.Paul Feyerabend - 1965 - New York: Cambridge University Press.
    Over the past thirty years Paul Feyerabend has developed an extremely distinctive and influentical approach to problems in the philosophy of science. The most important and seminal of his published essays are collected here in two volumes, with new introductions to provide an overview and historical perspective on the discussions of each part. Volume 1 presents papers on the interpretation of scientific theories, together with papers applying the views developed to particular problems in philosophy and physics. The essays in volume (...)
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  • (5 other versions)The origin of species.Charles Darwin - 1859 - New York: Norton. Edited by Philip Appleman.
    In The Origin of Species (1859) Darwin challenged many of the most deeply-held beliefs of the Western world. Arguing for a material, not divine, origin of species, he showed that new species are achieved by "natural selection." The Origin communicates the enthusiasm of original thinking in an open, descriptive style, and Darwin's emphasis on the value of diversity speaks more strongly now than ever. As well as a stimulating introduction and detailed notes, this edition offers a register of the many (...)
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  • Atomic theory and the description of nature.Niels Bohr - 1934 - Woodbridge, Conn.: Ox Bow Press.
    Introductory survey -- Atomic theory and mechanics -- The quantum postulate and the recent development of atomic theory -- The quantum of action and the description of nature -- The atomic theory and the fundamental principles underlying the description of nature.
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  • The description of nature: Niels Bohr and the philosophy of quantum physics.John Honner - 1987 - New York: Oxford University Press. Edited by Niels Bohr.
    Niels Bohr, founding father of modern atomic physics and quantum theory, was as original a philosopher as he was a physicist. This study explores several dimensions of Bohr's vision: the formulation of quantum theory and the problems associated with its interpretation, the notions of complementarity and correspondence, the debates with Einstein about objectivity and realism, and his sense of the infinite harmony of nature. Honner focuses on Bohr's epistemological lesson, the conviction that all our description of nature is dependent on (...)
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  • Epistemology and cognition.Alvin I. Goldman - 1986 - Cambridge: Harvard University Press.
    Against the traditional view, Alvin Goldman argues that logic, probability theory, and linguistic analysis cannot by themselves delineate principles of rationality or justified belief. The mind's operations must be taken into account.
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  • Nature's capacities and their measurement.Nancy Cartwright - 1989 - New York: Oxford University Press.
    Ever since David Hume, empiricists have barred powers and capacities from nature. In this book Cartwright argues that capacities are essential in our scientific world, and, contrary to empiricist orthodoxy, that they can meet sufficiently strict demands for testability. Econometrics is one discipline where probabilities are used to measure causal capacities, and the technology of modern physics provides several examples of testing capacities (such as lasers). Cartwright concludes by applying the lessons of the book about capacities and probabilities to the (...)
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  • (6 other versions)The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • Theory-change as structure-change: Comments on the Sneed formalism.Thomas S. Kuhn - 1976 - Erkenntnis 10 (2):179 - 199.
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  • (1 other version)Constructing general models of theory dynamics.David Pearce & Veikko Rantala - 1983 - Studia Logica 42 (2-3):347 - 362.
    This essay is an attempt to consider dynamic aspects of scientific theorising from a formal perspective. Our emphasis will be on the aims and methods for constructing formal models of theory dynamics which will be conceived from a general or 'theoretical' rather than 'applied' standpoint.
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  • (1 other version)Correspondence as an intertheory relation.David Pearce & Veikko Rantala - 1983 - Studia Logica 42 (2-3):363 - 371.
    In this paper we give the gist of our reconstructed notion of (limiting case) correspondence. Our notion is very general, so that it should be applicable to all the cases in which a correspondence has been said to exist in actual science.
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  • Niels Bohr's Philosophy of Physics.Jeffrey Bub - 1990 - Philosophy of Science 57 (2):344-347.
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  • Niels Bohr's philosophy of physics.Dugald Murdoch - 1987 - New York: Cambridge University Press.
    Murdoch describes the historical background of the physics from which Bohr's ideas grew; he traces the origins of his idea of complementarity and discusses its meaning and significance. Special emphasis is placed on the contrasting views of Einstein, and the great debate between Bohr and Einstein is thoroughly examined. Bohr's philosophy is revealed as being much more subtle, and more interesting than is generally acknowledged.
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  • Knowledge and Evidence.Paul K. Moser - 1989 - New York: Cambridge University Press.
    Paul Moser's book defends what has been an unfashionable view in recent epistemology: the foundationalist account of knowledge and justification. Since the time of Plato philosophers have wondered what exactly knowledge is. This book develops a new account of perceptual knowledge which specifies the exact sense in which knowledge has foundations. The author argues that experiential foundations are indeed essential to perceptual knowledge, and he explains what knowledge requires beyond justified true beliefs. In challenging prominent sceptical claims that we have (...)
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  • Intertheoretic Relations as a Tool for the Rational Reconstruction of Scientific Development.Lorenz Krüger - 1980 - Studies in History and Philosophy of Science Part A 11 (2):89.
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  • Der begriff abgeschlossene theorie in der modernen naturwissenschaft.W. Heisenberg - 1948 - Dialectica 2 (3‐4):331-336.
    ZusammenfassungNach einer historischen Übersicht über die Entwicklung der naturwissenschaftlichen Disziplinen in den vergangenen Jahrhunderten wird auseinandergesetzt, dass wir seit der Quantentheorie einige frühere Theorien, wie etwa die Newton'sche Mechanik, als abge‐schlossene Theorien bezeichnen. Der Sinn dieser Begriffsbildung wird besprochen, ebenso die Bedingungen, unter denen eine Theorie als abgeschlossen bezeichnet werden kann.
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  • On the Stability of the Laboratory Sciences.Ian Hacking - 1988 - Journal of Philosophy 85 (10):507-514.
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  • (2 other versions)Scientific explanation.Richard Bevan Braithwaite - unknown
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  • (1 other version)Atomic physics and human knowledge.Niels Bohr - 1958 - New York,: Wiley.
    These articles and speeches by the Nobel Prize-winning physicist date from 1934 to 1958. Rather than expositions on quantum physics, the papers are philosophical in nature, exploring the relevance of atomic physics to many areas of human endeavor. Includes an essay in which Bohr and Einstein discuss quantum and_wave equation theories. 1961 edition.
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  • On the Possibility of 'Closed Theories'.Gernot Böhme - 1980 - Studies in History and Philosophy of Science Part A 11 (2):163.
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  • Data, Instruments, and Theory: A Dialectical Approach to Understanding Science.Robert John Ackermann - 1985 - Princeton University Press.
    Robert John Ackermann deals decisively with the problem of relativism that has plagued post-empiricist philosophy of science. Recognizing that theory and data are mediated by data domains (bordered data sets produced by scientific instruments), he argues that the use of instruments breaks the dependency of observation on theory and thus creates a reasoned basis for scientific objectivity. Originally published in 1985. The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist (...)
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  • The Physicists' Conception of Progress.Erhard Scheibe - 1988 - Studies in History and Philosophy of Science Part A 19 (2):141.
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  • (2 other versions)Critique of Pure Reason.I. Kant - 1787/1998 - Philosophy 59 (230):555-557.
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  • Commensurability, Comparability, Communicability.Thomas S. Kuhn - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:669 - 688.
    The author's concept of incommensurability is explicated by elaborating the claim that some terms essential to the formulation of older theories defy translation into the language of more recent ones. Defense of this claim rests on the distinction between interpreting a theory in a later language and translating the theory into it. The former is both possible and essential, the latter neither. The interpretation/translation distinction is then applied to Kitcher's critique of incommensurability and Quine's conception of a translation manual, both (...)
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  • The Physical Principles of the Quantum Theory: Transl. Into Engl. By Carl Eckart and Frank C. Hoyt.Werner Heisenberg - 1930 - Chicago: Ill., The University of Chicago Press. Edited by Carl Eckart & Frank Clark Hoyt.
    The contributions of few contemporary scientists have been as far reaching in their effects as those of Nobel Laureate Werner Heisenberg.
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  • (1 other version)Alvin I. Goldman, Epistemology and Cognition[REVIEW]Darryl Bruce - 1989 - Synthese 79 (1):165-169.
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  • Laws of nature: a structural approach.F. Weinert - 1993 - Philosophia Naturalis 30 (2):147-171.
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  • Physik und Philosophie.Werner Heisenberg - 1959 - Frankfurt/M.,: Ullstein Taschenbücher-Verlag.
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  • (1 other version)Conjectures and Refutations.K. Popper - 1963 - Les Etudes Philosophiques 21 (3):431-434.
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  • Une incertaine réalité.Bernard D'espagnat - 1986 - Revue Philosophique de la France Et de l'Etranger 176 (3):395-396.
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  • Links, Loops, and the Global Structure of Science.C. U. Moulines - 1984 - Philosophia Naturalis 21 (2/4):254-265.
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  • The World Within the World.Santosh Aggarwal - 1994
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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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  • Correspondence Principle and Growth of Science.W. Krajewski & Władysław Krajewski - 1977 - Springer.
    This book is devoted to the problems of the growth of science. These prob lems, neglected for a long time by the philosophers of science, have become in the 60's and 70's a subject of vivid discussion. There are philosophers who stress only the dependence of science upon various sociological, psycho logical and other factors and deny any internal laws of the development of knowledge, like approaching the truth. The majority rejects such nihilism and searches for the laws of the (...)
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  • Scientific Change, Continuity, and Problem Solving.David Pearce & Veikko Rantala - 1984 - Philosophia Naturalis 21 (2/4):389-399.
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