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  1. Experiment, difference, and writing: I. Tracing protein synthesis.Hans-Jörg Rheinberger - 1991 - Studies in History and Philosophy of Science Part A 23 (2):305-331.
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  • The self-vindication of the laboratory sciences.Ian Hacking - 1992 - In Andrew Pickering (ed.), Science as practice and culture. Chicago: University of Chicago Press. pp. 29--64.
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  • From science as knowledge to science as practice.Andrew Pickering - 1992 - In Science as practice and culture. Chicago: University of Chicago Press. pp. 4.
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  • Emile Zuckerkandl, Linus Pauling, and the Molecular Evolutionary Clock, 1959–1965.Gregory J. Morgan - 1998 - Journal of the History of Biology 31 (2):155 - 178.
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  • The Experimental Roots of the Neutral Theory of Molecular Evolution.Edna Suárez & Ana Barahona - 1996 - History and Philosophy of the Life Sciences 18 (1):55 - 81.
    The historical reconstruction of the origins of the Neutral Theory of Molecular Evolution (NTME) has been seen purely as an extension of a long-held theoretical debate between the classical and balance schools of Population Genetics. In this perspective, the NTME is but a different interpretation of the then recently published data on high intrapopulation genetic variability. In this paper we try to show that this thesis is deficient and partially incorrect. We show that the sources for the construction and development (...)
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  • Developmental Constraints, Generative Entrenchment, and the Innate-Acquired Distinction.William C. Wimsatt - 1986 - In William Bechtel (ed.), Integrating Scientific Disciplines. University of Chicago Press. pp. 185--208.
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  • Experimenting in the natural sciences.H. Radder - 1995 - In Jed Z. Buchwald (ed.), Scientific practice: theories and stories of doing physics. Chicago: University of Chicago Press.
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  • Saving the phenomena.James Bogen & James Woodward - 1988 - Philosophical Review 97 (3):303-352.
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  • Beyond constraint: The temporality of practice and the historicity of knowledge.Andrew Pickering - 1995 - In Jed Z. Buchwald (ed.), Scientific practice: theories and stories of doing physics. Chicago: University of Chicago Press. pp. 42--55.
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  • The origin of DNA:RNA hybridization.Dario Giacomoni - 1993 - Journal of the History of Biology 26 (1):89-107.
    Besides its use in basic research, the DNA:RNA hybridization technique has helped the development of genetic engineering: it is instrumental in the isolation of specific genes that can be inserted into foreign cells, thus modifying their genetic information. Plants, animals, and microorganisms can now be altered to yield improved crops, pest-resistant plants, and a cheaper source of important proteins or drugs. The social relevance of genetic engineering received official sanction in 1980 when the U.S. Supreme Court ruled that genetically modified (...)
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  • The origins of the neutral theory of molecular evolution.Michael R. Dietrich - 1994 - Journal of the History of Biology 27 (1):21-59.
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  • Experimental Systems: Historiality, Narration, and Deconstruction.Hans-Jörg Reinberger - 1994 - Science in Context 7 (1):65-81.
    The ArgumentIn the first part of this paper, issues concerning an “epistemology of time” are raised. The Derridean theme of the historial movement of a trace is connected to Prigogine's notion of an operator-time. It is suggested that both conceptions can be used to characterize the dynamics of experimental systems in contemporary science. It is argued that such systems have, to speak with Hacking, “a life of their own” and that this is precisely the reason for their inherent unpredictability.In the (...)
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  • Experiment as the motor of scientific progress.Robert Ackermann - 1988 - Social Epistemology 2 (4):327 – 335.
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