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  1. Picturing Knowledge: Historical and Philosophical Problems Concerning the Use of Art in Science.Brian Scott Baigrie (ed.) - 1996 - University of Toronto Press.
    List of Illustrations Introduction 1 The Didactic and the Elegant: Some Thoughts on Scientific and Technological Illustrations in the Middle Ages and Renaissance 3 2 Temples of the Body and Temples of the Cosmos: Vision and Visualization in the Vesalian and Copernican Revolutions 40 3 Descartes’s Scientific Illustrations and ’la grande mecanique de la nature’ 86 4 Illustrating Chemistry 135 5 Representations of the Natural System in the Nineteenth Century 164 6 Visual Representation in Archaeology: Depicting the Missing-Link in Human (...)
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  • Court and controversy: patenting science in the nineteenth century.Paul Lucier - 1996 - British Journal for the History of Science 29 (2):139-154.
    In the autumn of 1851, on the occasion of the American Institute of New York's annual fair, the Boston chemist and geologist Charles Jackson chose as the subject of his address the ‘Encouragement and Cultivation of the Sciences in the United States’. Playing on popular enthusiasm for science and technology, Jackson rehearsed the wondrous progress of the arts and the role of science in that progress. Science was the ‘Hand-maiden of the Arts’, and most assuredly the ‘maid of honor’, he (...)
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  • “Applied Science”: A Phrase in Search of a Meaning.Robert Bud - 2012 - Isis 103 (3):537-545.
    ABSTRACT The term “applied science,” as it came to be popularly used in the 1870s, was a hybrid of three earlier concepts. The phrase “applied science” itself had been coined by Samuel Taylor Coleridge in 1817, translating the German Kantian term “angewandte Wissenschaft.” It was popularized through the Encyclopaedia Metropolitana, which was structured on principles inherited from Coleridge and edited by men with sympathetic views. Their concept of empirical as opposed to a priori science was hybridized with an earlier English (...)
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  • Museological Science? The Place of the Analytical/Comparative in Nineteenth-century Science, Technology and Medicine.John V. Pickstone - 1994 - History of Science 32 (2):111-138.
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  • Empowerment of People: the Educational Challenge of Science for Specific Social Purposes (Sssp).David Layton - 1986 - Bulletin of Science, Technology and Society 6 (3):210-218.
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  • Industrial recruitment of chemistry students from English universities: a revaluation of its early importance.James Donnelly - 1991 - British Journal for the History of Science 24 (1):3-20.
    In England, institutionalized locations for science in academe and industry sprang up at approximately the same time, that is to say, during the period from the mid-nineteenth century to the First World War. By the latter date science was well established within most academic institutions and, more rudimentarily, in many industrial firms. Standardized forms of practice were to be found in both sectors, and there existed mechanisms for the transfer of personnel, knowledge and finance between the two. Both sites were (...)
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  • Ways of knowing: towards a historical sociology of science, technology and medicine.John V. Pickstone - 1993 - British Journal for the History of Science 26 (4):433-458.
    Among the many groups of scholars whose work now illuminates science, technology and medicine (STM), historians, it seems to me, have a key responsibility not just to elucidate change but to establish and explain variety. One of the big pictures we need is a model of the varieties of STM over time; one which does not presume the timeless existence of disciplines, or the distinctions between science, technology and medicine; a model which is both synchronic and diachronic, and both cognitive (...)
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  • The early history of chemical engineering: a reassessment.Clive Cohen - 1996 - British Journal for the History of Science 29 (2):171-194.
    Very few historians have so far turned their attention to the history of chemical engineering, a discipline which impinges on aspects of industrial life as diverse as the manufacture of consumer goods and the generation of nuclear power. However, a number of practising and retired chemical engineers have produced accounts of the late nineteenth-century beginnings and subsequent development of chemical engineering. Their work has set the scene for more recent papers by two academic historians, Colin Divall and James F. Donnelly. (...)
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  • ‘An Influential Set of Chaps’: The X-Club and Royal Society Politics 1864–85.Ruth Barton - 1990 - British Journal for the History of Science 23 (1):53-81.
    ‘Our’ included not only Hooker and Huxley but their fellow-members of the X-Club. ‘Our time’ had been the 1870s and early 1880s. For a five-year period from November 1873 to November 1878 Hooker had been President of the Society, Huxley one of the Secretaries, and fellow X-Club member, William Spottiswoode, the Treasurer. Hooker was followed in the Presidency by Spottiswoode, and on Spottiswoode's death in 1883 Huxley was elected President. During this period other X-Club members—Edward Frankland, John Tyndall, George Busk, (...)
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  • The Cavendish Society's wonderful repertory of chemistry.W. H. Brock - 1990 - Annals of Science 47 (1):77-80.
    Contemporary correspondence is invoked to provide further information concerning the decision of the Cavendish Society to publish an English translation of Gmelin's Handbuch der Chemie in 1846, and the opposition this provoked.
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  • Empowerment of People: The Educational Challenge of Science for Specific Social Purposes (SSSP).David Layton - 1986 - Bulletin of Science, Technology and Society 6 (2):210-218.
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  • Pus, Sewage, Beer and Milk: Microbiology in Britain, 1870–1940.K. Vernon - 1990 - History of Science 28 (3):289-325.
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  • Utility and Audience in Eighteenth-Century Chemistry: Case Studies of William Cullen and Joseph Priestley.J. V. Golinski - 1988 - British Journal for the History of Science 21 (1):1-31.
    Historians of science are less inclined now than they were a few years ago to regard chemistry as having sprung full-grown from the mind of Antoine-Laurent Lavoisier. Many of the contours of pre-Lavoisierian chemistry have recently been mapped, its Newtonian and Stahlian theoretical traditions have been delineated, and the degree of coherence enforced on the subject by its didactic role has been argued. In addition, the social prominence and cohesion achieved by chemists in various national contexts, such as France, Scotland (...)
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  • Presidential Address: Getting science across.David Knight - 1996 - British Journal for the History of Science 29 (2):129-138.
    ‘Read until you hear the voices’; so the maxim goes for those who would engage with the Victorians. Let us try with Thomas Henry Huxley:A great chapter in the history of the world is written in the chalk. Few passages in the history of man can be supported by such an overwhelming mass of direct and indirect evidence as that which testifies to the truth of the fragment of the history of the globe, which I hope to enable you to (...)
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  • Physical Chemists for Industry: The Making of the Chemist at University College London, 1914?1939.Gerrylynn K. Roberts - 1997 - Centaurus 39 (4):291-310.
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  • “Applied Science”: A Phrase in Search of a Meaning.Robert Bud - 2012 - Isis 103 (3):537-545.
    ABSTRACT The term “applied science,” as it came to be popularly used in the 1870s, was a hybrid of three earlier concepts. The phrase “applied science” itself had been coined by Samuel Taylor Coleridge in 1817, translating the German Kantian term “angewandte Wissenschaft.” It was popularized through the Encyclopaedia Metropolitana, which was structured on principles inherited from Coleridge and edited by men with sympathetic views. Their concept of empirical as opposed to a priori science was hybridized with an earlier English (...)
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