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  1. Introduction (FOCUS: ALCHEMY AND THE HISTORY OF SCIENCE).Bruce T. Moran - 2011 - Isis 102 (2):300-304.
    ABSTRACT Alchemy is part of the cultural experience of early modern Europe and yet has had to overcome problems of demarcation to be considered relevant to the history of science. This essay considers historiographical and methodological issues that have affected the gradual demarginalization of alchemy among attempts to explain, and find things out about, nature. As an area of historical study, alchemy relates to the history of science as part of an ensemble of practices that explored the natural world through (...)
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  • Getting to Know the World Scientifically: An Objective View.Paul Needham - 2020 - Cham, Schweiz: Springer.
    This undergraduate textbook introduces some fundamental issues in philosophy of science for students of philosophy and science students. The book is divided into two parts. Part 1 deals with knowledge and values. Chap. 1 presents the classical conception of knowledge as initiated by the ancient Greeks and elaborated during the development of science, introducing the central concepts of truth, belief and justification. Aspects of the quest for objectivity are taken up in the following two chapters. Moral issues are broached in (...)
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  • Corpuscular alchemy and the tradition of Aristotle's meteorology, with special reference to Daniel sennert.William R. Newman - 2001 - International Studies in the Philosophy of Science 15 (2):145 – 153.
    (2001). Corpuscular alchemy and the tradition of Aristotle's Meteorology, with special reference to Daniel Sennert. International Studies in the Philosophy of Science: Vol. 15, No. 2, pp. 145-153. doi: 10.1080/02698590120059013.
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  • Is water a mixure?: bridging the distinction between physical and chemical properties.Paul Needham - 2008 - Studies in History and Philosophy of Science Part A 39 (1):66-77.
    Two inter-linked theses are defended in this paper. One is the Duhemian theme that a rigid distinction between physical and chemical properties cannot be upheld. Duhem maintained this view not because the latter are reducible to the former, but because if physics is to remain consistent with chemistry it must prove possible to expand it to accommodate new features, and a rigid distinction would be a barrier to this process. The second theme is that naturally occurring isotopic variants of water (...)
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  • Daniel Sennert On Matter and Form: At the Juncture of the Old and the New1.Emily Michael - 1997 - Early Science and Medicine 2 (3):272-299.
    Daniel Sennert , a prominent physician and a prolific and influential writer, was both an atomist and an Aristotelian. He was influenced by a distinctive and now little known Aristotelian approach to matter and form, and this promoted his development over time of a hierarchical account of atoms, with elementary atoms and grades of molecules. The first section provides a study of Sennert's Aristotelian foundation. The final two sections consider, in turn, Sennert's development over time of an atomistic theory, and (...)
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  • Filozofia przyrody w alchemii. Zarys związków.Radosław Kazibut - 2020 - Studia Philosophiae Christianae 56 (4):113-131.
    Celem moich rozważań jest przedstawienie związków pomiędzy dociekaniami filozofów przyrody a rozwojem tradycji alchemicznej. Odwołam się do wybranych koncepcji ukształtowanych w dziejach alchemii. Będę argumentował na rzecz tezy, że dociekania alchemików przybierały postać rozbudowanych systemów tworzących koherentne obrazy świata przyrody, które implikowały określone typy filozofii przyrody. -------------- Zgłoszono: 31/07/2020. Zrecenzowano: 04/09/2020. Zaakceptowano do publikacji: 19/10/2020.
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  • Experiment versus mechanical philosophy in the work of Robert Boyle: a reply to Anstey and Pyle.Alan Chalmers - 2002 - Studies in History and Philosophy of Science Part A 33 (1):187-193.
    We can distinguish ‘mechanical’ in the strict sense of the mechanical philosophers from ‘mechanical’ in the common sense. My claim is that Boyle's experimental science owed nothing to, and offered no support for, the mechanical philosophy in the strict sense. The attempts by my critics to undermine my case involve their interpreting ‘mechanical’ in something like the common sense. I certainly accept that Boyle's experimental science was productively informed by mechanical analogies, where ‘mechanical’ is interpreted in a common sense. But (...)
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  • Boyle and the origins of modern chemistry: Newman tried in the fire.Alan F. Chalmers - 2010 - Studies in History and Philosophy of Science Part A 41 (1):1-10.
    William Newman construes the Scientific Revolution as a change in matter theory, from a hylomorphic, Aristotelian to a corpuscular, mechanical one. He sees Robert Boyle as making a major contribution to that change by way of his corpuscular chemistry. In this article it is argued that it is seriously misleading to identify what was scientific about the Scientific Revolution in terms of a change in theories of the ultimate structure of matter. Boyle showed, especially in his pneumatics, how empirically accessible, (...)
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  • Boyle, Spinoza and Glauber: on the philosophical redintegration of saltpeter—a reply to Antonio Clericuzio.Filip A. A. Buyse - 2019 - Foundations of Chemistry 22 (1):59-76.
    The so-called ‘redintegration experiment’ is traditionally at the center of the comments on the supposed Boyle/Spinoza controversy. A. Clericuzio influentially argued in his publications that, in De nitro, Boyle accounted for the ‘redintegration’ of saltpeter on the grounds of the chemical properties of corpuscles and “did not make any attempt to deduce them from mechanical principles”. By way of contrast, this paper argues that with his De nitro Boyle wanted to illustrate and promote his new corpuscular or mechanical philosophy, and (...)
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  • Boyle, Spinoza and Glauber: on the philosophical redintegration of saltpeter—a reply to Antonio Clericuzio.Filip A. A. Buyse - 2019 - Foundations of Chemistry 22 (1):59-76.
    The so-called ‘redintegration experiment’ is traditionally at the center of the comments on the supposed Boyle/Spinoza controversy. A. Clericuzio influentially argued in his publications that, in De nitro, Boyle accounted for the ‘redintegration’ of saltpeter on the grounds of the chemical properties of corpuscles and “did not make any attempt to deduce them from mechanical principles”. By way of contrast, this paper argues that with his De nitro Boyle wanted to illustrate and promote his new corpuscular or mechanical philosophy, and (...)
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  • The ontological function of first-order and second-order corpuscles in the chemical philosophy of Robert Boyle: the redintegration of potassium nitrate.Marina Paola Banchetti-Robino - 2012 - Foundations of Chemistry 14 (3):221-234.
    Although Boyle has been regarded as a champion of the seventeenth century Cartesian mechanical philosophy, I defend the position that Boyle’s views conciliate between a strictly mechanistic conception of fundamental matter and a non-reductionist conception of chemical qualities. In particular, I argue that this conciliation is evident in Boyle’s ontological distinction between fundamental corpuscles endowed with mechanistic properties and higher-level corpuscular concretions endowed with chemical properties. Some of these points have already been acknowledged by contemporary scholars, and I actively engage (...)
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  • Boyle on seminal principles.Peter R. Anstey - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (4):597-630.
    This paper presents a comprehensive study of Robert Boyle’s writings on seminal principles or seeds. It examines the role of seeds in Boyle’s account of creation, the generation of plants and animals, spontaneous generation, the generation of minerals and disease. By an examination of all of Boyle’s major extant discussions of seeds it is argued that there were discernible changes in Boyle’s views over time. As the years progressed Boyle became more sceptical about the role of seminal principles in the (...)
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  • De Volder’s Cartesian Physics and Experimental Pedagogy.Tammy Nyden - 2014 - In Mihnea Dobre Tammy Nyden (ed.), Cartesian Empiricisms. Springer.
    In 1675, Burchard de Volder (1643–1709) was the first professor to introduce the demonstration of experiment into a university physics course and built the Leiden Physics Theatre to accommodate this new pedagogy. When he requested the funds from the university to build the facility, he claimed that the performance of experiments would demonstrate the “truth and certainty” of the postulates of theoretical physics. Such a claim is interesting given de Volder’s lifelong commitment to Cartesian scientia. This chapter will examine de (...)
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