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  1. Against method.Paul Feyerabend - 1988 - London: New Left Books.
    Feyerabrend argues that intellectual progress relies on the creativity of the scientist, against the authority of science.
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  • The logic of scientific discovery.Karl Raimund Popper - 1934 - New York: Routledge. Edited by Hutchinson Publishing Group.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside The Open Society and Its Enemies as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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  • Are methodologies theories of scientific rationality?Ronald C. Curtis - 1986 - British Journal for the Philosophy of Science 37 (1):135-161.
    Historians should not use their own up-to-date methodologies to judge the rationality or correctness of the research strategies of scientists in history. For the history of science is, in part, the history of the rational growth of methodology and the historian's own up-to-date methodology is, in part, a product of the scientific revolutions of the past. Historians who use their own methodologies to judge the rationality of past research strategies are being too wise after the event. I show, using the (...)
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  • Analogy and technology in Darwin's vision of nature.John F. Cornell - 1984 - Journal of the History of Biology 17 (3):303-344.
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  • 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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  • Science and Values.Harold I. Brown & Larry Laudan - 1986 - Philosophical Review 95 (3):439.
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  • The Eclipse of Darwinism: Anti-Darwinian Evolution Theories in the Decades around 1900.Peter J. Bowler - 1984 - Journal of the History of Biology 17 (3):433-434.
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  • Evolution: The History of an Idea.Peter J. Bowler - 1985 - Journal of the History of Biology 18 (1):155-157.
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  • Scientific discovery and Maxwell's kinetic theory.Peter Achinstein - 1987 - Philosophy of Science 54 (3):409-434.
    By reference to Maxwell's kinetic theory, one feature of hypothetico-deductivism is defended. A scientist need make no inference to a hypothesis when he first proposes it. He may have no reason at all for thinking it is true. Yet it may be worth considering. In developing his kinetic theory there were central assumptions Maxwell made (for example, that molecules are spherical, that they exert contact forces, and that their motion is linear) that he had no reason to believe true. In (...)
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  • Experience and Prediction: An Analysis of the Foundations and the Structure of Knowledge.Hans Reichenbach - 1938 - Chicago, IL, USA: University of Chicago Press.
    First published in 1949 expressly to introduce logical positivism to English speakers. Reichenbach, with Rudolph Carnap, founded logical positivism, a form of epistemofogy that privileged scientific over metaphysical truths.
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  • Patterns of discovery.Norwood Russell Hanson - 1958 - Cambridge [Eng.]: University Press.
    In this 1958 book, Professor Hanson turns to an equally important but comparatively neglected subject, the philosophical aspects of research and discovery.
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  • The Death of Adam: Evolution and its Impact on Western Thought.John Colton Greene - 1959 - Ames,: Iowa State University Press.
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  • 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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  • Models and Analogies in Science.Mary B. Hesse - 1963 - [Notre Dame, Ind.]: University of Notre Dame Press.
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  • Philosophy of natural science.Carl Gustav Hempel - 1966 - Englewood Cliffs, N.J.,: Prentice-Hall.
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  • Darwin’s Metaphor.Robert M. Young - 1971 - The Monist 55 (3):442-503.
    It is not too great an exaggeration to claim that On the Origin of Species was, along with Das Kapital, one of the two most significant works in the intellectual history of the nineteenth century. As George Henry Lewes wrote in 1868, ‘No work of our time has been so general in its influence’. However, the very generality of the influence of Darwin’s work provides the chief problem for the intellectual historian. Most books and articles on the subject assert the (...)
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  • Darwin's Metaphor Does Nature Select ?Robert M. Young - 1971 - Dept. Of Philosophy, San Jose College.
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  • Darwin’s Metaphor.Robert M. Young - 1971 - The Monist 55 (3):442-503.
    It is not too great an exaggeration to claim that On the Origin of Species was, along with Das Kapital, one of the two most significant works in the intellectual history of the nineteenth century. As George Henry Lewes wrote in 1868, ‘No work of our time has been so general in its influence’. However, the very generality of the influence of Darwin’s work provides the chief problem for the intellectual historian. Most books and articles on the subject assert the (...)
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  • Darwin’s Conversion: The Beagle Voyage and its Aftermath.Frank J. Sulloway - 1982 - Journal of the History of Biology 15 (3):325-396.
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  • Darwin's debt to philosophy: An examination of the influence of the philosophical ideas of John F.W. Herschel and William Whewell on the development of Charles Darwin's theory of evolution.Michael Ruse - 1975 - Studies in History and Philosophy of Science Part A 6 (2):159-181.
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  • Experience and Prediction.William R. Dennes - 1939 - Philosophical Review 48 (5):536-538.
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  • Causal Efficacy: The Structure of Darwin’s Argument Strategy in the Origin of Species.Doren A. Recker - 1987 - Philosophy of Science 54 (2):147-175.
    There are several interpretations of the argument structure of Darwin's Origin of Species, representing Covering-Law, Inference-to-the-Best-Explanation, and (more recently) Semantic models. I argue that while all three types of interpretation enjoy some textual support, none succeeds in capturing the overall strategy of the Origin, consistent with Darwin's claim that it is 'one long argument'. I provide detailed criticisms of all three current models, and then offer an alternative interpretation based on the view that there are three main argument strategies in (...)
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  • Beyond divorce: Current status of the discovery debate.Thomas Nickles - 1985 - Philosophy of Science 52 (2):177-206.
    Does the viability of the discovery program depend on showing either (1) that methods of generating new problem solutions, per se, have special probative weight (the per se thesis); or, (2) that the original conception of an idea is logically continuous with its justification (anti-divorce thesis)? Many writers have identified these as the key issues of the discovery debate. McLaughlin, Pera, and others recently have defended the discovery program by attacking the divorce thesis, while Laudan has attacked the discovery program (...)
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  • Experience and Prediction. An Analysis of the Foundations and the Structure of Knowledge. [REVIEW]E. N. & Hans Reichenbach - 1938 - Journal of Philosophy 35 (10):270.
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  • Science and Values: The Aims of Science and Their Role in Scientific Debate.Larry Laudan - 1984 - University of California Press.
    Laudan constructs a fresh approach to a longtime problem for the philosopher of science: how to explain the simultaneous and widespread presence of both agreement and disagreement in science. Laudan critiques the logical empiricists and the post-positivists as he stresses the need for centrality and values and the interdependence of values, methods, and facts as prerequisites to solving the problems of consensus and dissent in science.
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  • Science and Hypothesis.Thomas Nickles - 1984 - Erkenntnis 21 (3):433-438.
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  • Science and Hypothesis: Historical Essays on Scientific Methodology.Larry Laudan & R. Laudan - 1981 - Springer.
    This book consists of a collection of essays written between 1965 and 1981. Some have been published elsewhere; others appear here for the first time. Although dealing with different figures and different periods, they have a common theme: all are concerned with examining how the method of hy pothesis came to be the ruling orthodoxy in the philosophy of science and the quasi-official methodology of the scientific community. It might have been otherwise. Barely three centuries ago, hypothetico deduction was in (...)
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  • Charles Darwin's biological species concept and theory of geographic speciation: the transmutation notebooks.Malcolm J. Kottler - 1978 - Annals of Science 35 (3):275-297.
    Summary The common view has been that Darwin regarded species as artificial and arbitrary constructions of taxonomists, not as distinct natural units. However, in his transmutation notebooks he clearly subscribed to the reality of species, on the basis of the criterion of non-interbreeding. A consequence of this biological species concept was his identification of the acquisition of reproductive isolation as the mark of the completion of speciation. He developed in the notebooks a theory of geographic speciation on the grounds of (...)
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  • A New Look at Kepler and Abductive Argument.Scott A. Kleiner - 1983 - Studies in History and Philosophy of Science Part A 14 (4):279.
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  • Darwin and His Critics: The Reception of Darwin's Theory of Evolution by the Scientific Community. David Hull.Michael Ruse - 1975 - Philosophy of Science 42 (3):338-339.
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  • Against Method & Farewell to Reason by Paul Feyerabend. [REVIEW]Ian Hacking - 1991 - Journal of Philosophy 88 (4):219-223.
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  • Against method: outline of an anarchistic theory of knowledge.Paul Feyerabend - 1974 - Atlantic Highlands, N.J.: Humanities Press.
    Paul Feyerabend's globally acclaimed work, which sparked and continues to stimulate fierce debate, examines the deficiencies of many widespread ideas about scientific progress and the nature of knowledge. Feyerabend argues that scientific advances can only be understood in a historical context. He looks at the way the philosophy of science has consistently overemphasized practice over method, and considers the possibility that anarchism could replace rationalism in the theory of knowledge. -- Amazon.com.
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  • Darwin's use of the analogy between artificial and natural selection.L. T. Evans - 1984 - Journal of the History of Biology 17 (1):113-140.
    The central role played by Darwin's analogy between selection under domestication and that under nature has been adequately appreciated, but I have indicated how important the domesticated organisms also were to other elements of Darwin's theory of evolution-his recognition of “the constant principle of change,” for instance, of the imperfection of adaptation, and of the extent of variation in nature. The further development of his theory and its presentation to the public likewise hinged on frequent reference to domesticates.We have seen (...)
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  • The Triumph of the Darwinian Method.Michael T. Ghiselin - 1969 - University of California Press.
    A coherent treatment of the flow of ideas throughout Darwin's works, this volume presents a unified theoretical system that explains Darwin's investigations, evaluating the literature from a historical, scientific, and philosophical perspective.
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  • A preliminary discourse on the study of natural philosophy.John F. W. Herschel - 1830 - Chicago: University of Chicago Press.
    Originally published in 1830, this book can be called the first modern work in the philosophy of science, covering an extraordinary range of philosophical, methodological, and scientific subjects. "Herschel's book . . . brilliantly analyzes both the history and nature of science."—Keith Stewart Thomson, American Scientist.
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  • Against Method.P. Feyerabend - 1975 - British Journal for the Philosophy of Science 26 (4):331-342.
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  • Logical Foundations of Probability.Rudolf Carnap - 1950 - Mind 62 (245):86-99.
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  • Principles of Geology.Charles Lyell & G. L. Herrier Davies - 1994 - Annals of Science 51 (1):100.
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  • Models and Analogies in Science.Mary Hesse - 1965 - British Journal for the Philosophy of Science 16 (62):161-163.
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  • Explanation, Reduction and Empiricism.P. K. Feyerabend - 1967 - Critica 1 (2):103-106.
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  • Patterns of Discovery.Norwood R. Hanson, A. D. Ritchie & Henryk Mehlberg - 1960 - British Journal for the Philosophy of Science 10 (40):346-349.
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  • Philosophy of Natural Science.Carl G. Hempel - 1967 - British Journal for the Philosophy of Science 18 (1):70-72.
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  • The Logic of Scientific Discovery.K. Popper - 1959 - British Journal for the Philosophy of Science 10 (37):55-57.
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  • Newton’s Philosophy of Nature.H. S. Thayer - 1953
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  • The Logic of Scientific Discovery.Karl Popper - 1959 - Studia Logica 9:262-265.
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  • Evolution: The History of an Idea.Peter J. Bowler - 1987 - British Journal for the Philosophy of Science 38 (2):261-265.
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  • The Triumph of the Darwinian Method.Michael T. Ghiselin - 1973 - Philosophy of Science 40 (3):466-467.
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  • Artificial Intelligence and Philosophy of Science: Reasoning by Analogy in Theory Construction.Lindley Darden - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:147 - 165.
    This paper examines the hypothesis that analogies may play a role in the generation of new ideas that are built into new explanatory theories. Methods of theory construction by analogy, by failed analogy, and by modular components from several analogies are discussed. Two different analyses of analogy are contrasted: direct mapping (Mary Hesse) and shared abstraction (Michael Genesereth). The structure of Charles Darwin's theory of natural selection shows various analogical relations. Finally, an "abstraction for selection theories" is shown to be (...)
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