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  1. Cellular and theoretical chimeras: Piecing together how cells process energy.Douglas Allchin - 1996 - Studies in History and Philosophy of Science Part A 27 (1):31-41.
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  • (1 other version)Theory testing in experimental biology: the chemiosmotic mechanism of ATP synthesis.Marcel Weber - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (1):29-52.
    Historians of biology have argued that much of the dynamics of experimental disciplines such as genetics or molecular biology can be understood from studying experimental systems and model organisms alone . Such accounts contrast sharply with more traditional philosophies of science which viewed scientific research essentially as a process of inventing and testing theories. I present a case from the history of biochemistry which can be viewed from both the experimental systems perspective and from the methodology of theory testing. I (...)
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  • (4 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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  • Error types.Douglas Allchin - 2001 - Perspectives on Science 9 (1):38-58.
    : Errors in science range along a spectrum from those relatively local to the phenomenon (usually easily remedied in the laboratory) to those more conceptually derived (involving theory or cultural factors, sometimes quite long-term). One may classify error types broadly as material, observational, conceptual or discoursive. This framework bridges philosophical and sociological perspectives, offering a basis for interfield discourse. A repertoire of error types also supports error analytics, a program for deepening reliability through strategies for regulating and probing error.
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  • A Twentieth-Century Phlogiston: Constructing Error and Differentiating Domains.Douglas Allchin - 1997 - Perspectives on Science 5 (1):81-127.
    In the 1950s–60s biochemists searched intensively for a series of high-energy molecules in the cell. Although we now believe that these molecules do not exist, biochemists claimed to have isolated or identified them on at least sixteen occasions. The episode parallels the familiar eighteenth-century case of phlogiston, in illustrating how error is not simply the loss of facts but, instead, must be actively constructed. In addition, the debates surrounding each case demonstrate how revolutionary-scale disagreement is sometimes resolved by differentiating or (...)
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  • Representing and Intervening.Ian Hacking - 1983 - British Journal for the Philosophy of Science 35 (4):381-390.
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  • (1 other version)Paradigms, Populations and Problem-Fields: Approaches to Disagreement.Douglas Allchin - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:53 - 66.
    Kuhn's distinction of within- and between-paradigm thinking can be extended using his notion of a problem-field. Hull's notion of populational variation applies within paradigms; his type specimen approach allows one to analyze disagreement and identify the problem-field. Categories of questions or problem frames can also partition debate, establishing interparadigm variation. A case where multiple simultaneous paradigms compete highlights the role of empirical domains. The Ox-Phos Controversy in bioenergetics (1961-1977) serves as a case study. Conclusions are framed as strategies for scientists.
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  • (1 other version)Theory testing in experimental biology: the chemiosmotic mechanism of ATP synthesis.Marcel Weber - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (1):29-52.
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  • The Super Bowl and the Ox-Phos Controversy: "Winner-Take-All" Competition in Philosophy of Science.Douglas Allchin - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:22 - 33.
    Several diagrams and tables from review articles during the Ox-Phos Controversy serve as an occasion to assess the nature of competition in models of theory choice in science. Many models follow "Super-Bowl" principles of polar, either-or, winner-take-all competition. A significant alternative highlighted by this episode, however, is the differentiation of domains. Incommensurability and the partial divergence of overlapping domains serve both as signals and context for shifting frameworks of competition. Appropriate strategies may thus help researchers diagnose the status of competition (...)
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  • How Do You Falsify a Question?: Crucial Tests versus Crucial Demonstrations.Douglas Allchin - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992:74 - 88.
    I highlight a category of experiment-what I am calling 'demonstrations'-that differs in justificatory mode and argumentative role from the more familiar 'crucial tests'. 'Tests' are constructed such that alternative results are equally and symmetrically informative; they help discriminate between alternative solutions within a problem-field, where questions are shared. 'Demonstrations' are notably asymmetrical (for example, "failures" are often not telling), yet they are effective, if not "crucial," in interparadigm dispute, to legitimate questions themselves. The Ox-Phos Controversy in bioenergetics serves as an (...)
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  • Theory change in science: strategies from Mendelian genetics.Lindley Darden - 1991 - New York: Oxford University Press.
    This innovative book focuses on the development of the gene theory as a case study in scientific creativity.
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  • The Philosophical Origins of Mitchell's Chemiosmotic Concepts: The Personal Factor in Scientific Theory Formulation.John N. Prebble - 2001 - Journal of the History of Biology 34 (3):433 - 460.
    Mitchell's formulation of the chemiosmotic theory of oxidative phosphorylation in 1961 lacked any experimental support for its three central postulates. The path by which Mitchell reached this theory is explored. A major factor was the role of Mitchell's philosophical system conceived in his student days at Cambridge. This system appears to have become a tacit influence on his work in the sense that Polanyi understood all knowledge to be generated by an interaction between tacit and explicit knowing. Early in his (...)
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