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  1. (1 other version)The Discovery of the Leblanc Process.Charles Gillespie - 1957 - Isis 48:152-170.
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  • (1 other version)The Discovery of the Leblanc Process.Charles C. Gillispie - 1957 - Isis 48 (2):152-170.
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  • Swedish Science in the Eighteenth Century.Tore Frängsmyr - 1974 - History of Science 12 (1):29-42.
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  • Science as Labor.Wolfgang Lefèvre - 2005 - Perspectives on Science 13 (2):194-225.
    The article takes the term "technoscience" literally and investigates a conception of science that takes it not only as practice, but as production in the sense of a material labor process. It will explore in particular the material connection between science and ordinary production. It will furthermore examine how the historical development of science as a social enterprise was shaped by its technoscientific character. In this context, in an excursus, the prevailing notion will be questioned that social relations must be (...)
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  • Scientific knowledge: a sociological analysis.Barry Barnes - 1996 - London: Athlone. Edited by David Bloor & John Henry.
    Although science was once seen as the product of individual great men working in isolation, we now realize that, like any other creative activity, science is a highly social enterprise, influenced in subtle as well as obvious ways by the wider culture and values of its time. Scientific Knowledge is the first introduction to social studies of scientific knowledge. The authors, all noted for their contributions to science studies, have organized this book so that each chapter examines a key step (...)
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  • Collected Papers of Charles Sanders Peirce: Pragmatism and pragmaticism and Scientific metaphysics.Charles Sanders Peirce - 1960 - Cambridge: Belknap Press.
    Charles Sanders Peirce has been characterized as the greatest American philosophic genius. He is the creator of pragmatism and one of the founders of modern logic. James, Royce, Schroder, and Dewey have acknowledged their great indebtedness to him. A laboratory scientist, he made notable contributions to geodesy, astronomy, psychology, induction, probability, and scientific method. He introduced into modern philosophy the doctrine of scholastic realism, developed the concepts of chance, continuity, and objective law, and showed the philosophical significance of the theory (...)
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  • (2 other versions)Personal Knowledge: Towards a Post-Critical Philosophy.Michael Polanyi - 1958 - Chicago: University of Chicago Press. Edited by Mary Jo Nye.
    In this work the distinguished physical chemist and philosopher, Michael Polanyi, demonstrates that the scientist's personal participation in his knowledge, in both its discovery and its validation, is an indispensable part of science itself. Even in the exact sciences, "knowing" is an art, of which the skill of the knower, guided by his personal commitment and his passionate sense of increasing contact with reality, is a logically necessary part. In the biological and social sciences this becomes even more evident. The (...)
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  • The quiet revolution: Hermann Kolbe and the science of organic chemistry.Alan J. Rocke & T. H. Levere - 1995 - Annals of Science 52 (4):421-421.
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  • Decentering sociology: Synthetic dyes and social theory.Andrew Pickering - 2005 - Perspectives on Science 13 (3):352-405.
    : This essay addresses the difficulties that sociology as a discipline continues to experience in grasping the relations between technology, science and the social. I argue that these difficulties stem from a resolute centering of sociology on the social, which follows a generically Durkheimian blueprint. I elaborate a response to these difficulties which derives from recent lines of work in science and technology studies, and which entails a decentering of the social relative to the material and the conceptual, in terms (...)
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  • Operational Practice and the Emergence of Modern Chemical Concepts.Robert P. Multhauf - 1996 - Science in Context 9 (3):241-249.
    The ArgumentBoth “early chemistry” and “modern concepts” are imprecise. The earliest references to the materials involved in metallurgy, painting, ceramics, and the like, reveal an awareness that one group of materials were called “salts” because of their similarities. I consider this a chemical “concept.” Seeking another example I claim to have found it in the so-called “mineral acids.” The evidence for the existence of this concept is cumulative during the period just before the emergence of “modern chemistry,” of which it (...)
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  • A Social History of Truth: Civility and Science in Seventeenth-Century England.Steven Shapin - 1994 - University of Chicago Press.
    In A Social History of Truth, Shapin engages these universal questions through an elegant recreation of a crucial period in the history of early modern science: ...
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  • The Formation of the German Chemical Community . Karl Hufbauer.M. C. Usselman - 1985 - Philosophy of Science 52 (1):165-166.
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  • Born's amalgamation process and the international metallurgic gathering at Skleno in 1786.Mikuláš Teich - 1975 - Annals of Science 32 (4):305-340.
    SummaryAmong the several remarkable properties of mercury is that it dissolves many of the metals (but not iron), forming amalgams. It was the recognition of the ready formation of gold and silver amalgams that led to the extraction of precious metals by the amalgamation method. In this article I trace some of the historical aspects associated with the development of the European amalgamation process, first devised by Ignaz von Born in the 1780s. In particular, I describe an international gathering of (...)
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  • Experiments at the intersection of experimental history, technological inquiry, and conceptually driven analysis: A case study from early nineteenth-century France.Ursula Klein - 2005 - Perspectives on Science 13 (1):1-48.
    The paper examines differences of styles of experimentation in the history of science. It presents arguments for a historization of our historial and philosophical notion of "experimentation," which question the common view that "experimental philosophy" was the only style of experimentation in the eighteenth and early nineteenth centuries. It argues, in particular, that "experimental history" and technological inquiry were accepted styles of academic experimentation at the time. These arguments are corroborated by a careful analysis of a case study, which is (...)
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  • Naming and toxicity: A history of strychnine.Jonathan Simon - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (4):505-525.
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  • (1 other version)A Premature Science Advisor: Jacob A. Weber.Robert P. Multhauf - 1972 - Isis 63 (3):356-369.
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  • Origin of the Concept Chemical Compound.Ursula Klein - 1994 - Science in Context 7 (2):163-204.
    The ArgumentMost historians of science share the conviction that the incorporation of the corpuscular theory into seventeenth-century chemistry was the beginning of modern chemistry. My thesis in this paper is that modern chemisty started with the concept of the chemicl compound, which emerged at the end of the seventeenth and the beginning of the eighteenth century, without any signifivant influence of the corpuscular theory. Rather the historical reconstruction of the emergence of this concept shows that it resulted from the reflection (...)
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  • The promotion of mining and the advancement of science: the chemical revolution of mineralogy.Theodore M. Porter - 1981 - Annals of Science 38 (5):543-570.
    This paper explores the origins of the analytical definition of simple substance, a concept whose central importance in the new chemistry of Lavoisier and his colleagues is now widely recognized. I argue that this notion derived from the practical activities of metallurgists and mineral assayers, and that the theoretical elaboration necessary for the analytical concept to be understood as relevant to chemistry was inspired by the efforts of enlightened rulers in Sweden and Germany to turn chemical science to the benefit (...)
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  • (2 other versions)Experimental history and Herman Boerhaave’s chemistry of plants.Ursula Klein - 2003 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 34 (4):533-567.
    In the early eighteenth century, chemistry became the main academic locus where, in Francis Bacon's words, Experimenta lucifera were performed alongside Experimenta fructifera and where natural philosophy was coupled with natural history and 'experimental history' in the Baconian and Boyleian sense of an inventory and exploration of the extant operations of the arts and crafts. The Dutch social and political system and the institutional setting of the university of Leiden endorsed this empiricist, utilitarian orientation toward the sciences, which was forcefully (...)
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  • Leerer Raum in Minervas Haus: experimentelle Naturlehre an der Universität Leiden, 1675-1715.Gerhard Wiesenfeldt - 2002
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  • (1 other version)A Company of Scientists. Botany, Patronage, and Community at the Seventeenth-century Parisian Royal Academy of Sciences.Alice Stroup & David E. Allen - 1994 - History and Philosophy of the Life Sciences 16 (2):355.
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  • Scientific Knowledge. A Sociological Analysis.Barry Barnes, David Bloor & John Henry - 1999 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 30 (1):173-176.
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  • (1 other version)A Company of Scientists: Botany, Patronage, and Community at the Seventeenth-Century Parisian Royal Academy of Sciences.Alice Stroup - 1991 - Journal of the History of Biology 24 (2):342-343.
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  • The Chemical Workshop Tradition and the Experimental Practice: Discontinuities within Continuities.Ursula Klein - 1996 - Science in Context 9 (3):251-287.
    The ArgumentThe overall portrayal of early modern experimentation as a new method of securing assent within a philosophical discourse sketched in many of the recent studies on the historical origin of experimentation is questioned by the analysis of the experimental practice of chemistry at the Paris Academy. Chemical experimentation at the Paris Academy in the late seventeenth and early eighteenth century originated in a different tradition than the philosophical. It continued and developed the material culture of the chemical work shops (...)
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  • Analysis by Fire and Solvent Extractions: The Metamorphosis of a Tradition.Frederic Holmes - 1971 - Isis 62:128-148.
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  • (1 other version)A Premature Science Advisor: Jacob A. Weber.Robert Multhauf - 1972 - Isis 63:356-369.
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