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  1. Treating plants as laboratories: A chemical natural history of vegetation in 17th‐century E ngland.Dana Jalobeanu & Oana Matei - 2020 - Centaurus 62 (3):542-561.
    This paper investigates the emergence, in the second part of the 17th century, of a new body of experimental knowledge dealing with the chemical transformations of water taking place in plants. We call this body of experimental knowledge a “chemical history of vegetation.” We show that this chemical natural history originated, in terms of recipes and methods of investigation, in the works of Francis Bacon and that it was constructed in accordance with Bacon's precepts for putting together natural and experimental (...)
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  • Alchemical theories of matter.Antonio Clericuzio - 1997 - Studies in History and Philosophy of Science Part A 28 (2):369-375.
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  • Robert Boyle and seventeenth-century chemistry: a second look: Marie Boas: Robert Boyle and seventeenth-century chemistry. Cambridge: Cambridge University Press, 2015, £18.99, US$ 28.99 PB.Antonio Clericuzio - 2015 - Metascience 25 (1):103-110.
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  • From van Helmont to Boyle. A study of the transmission of Helmontian chemical and medical theories in seventeenth-century England.Antonio Clericuzio - 1993 - British Journal for the History of Science 26 (3):303-334.
    Van Helmont's chemistry and medicine played a prominent part in the seventeenth-century opposition to Aristotelian natural philosophy and to Galenic medicine. Helmontian works, which rapidly achieved great notoriety all over Europe, gave rise to the most influential version of the chemical philosophy. Helmontian terms such as Archeus, Gas and Alkahest all became part of the accepted vocabulary of seventeenth-century science and medicine.
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  • A redefinition of Boyle's chemistry and corpuscular philosophy.Antonio Clericuzio - 1990 - Annals of Science 47 (6):561-589.
    Summary Robert Boyle did not subordinate chemistry to mechanical philosophy. He was in fact reluctant to explain chemical phenomena by having recourse to the mechanical properties of particles. For him chemistry provided a primary way of penetrating into nature. In his chemical works he employed corpuscles endowed with chemical properties as his explanans. Boyle's chemistry was corpuscular, rather than mechanical. As Boyle's views of seminal principles show, his corpuscular philosophy cannot be described as a purely mechanical theory of matter. Boyle's (...)
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