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  1. Graphic Understanding: Instruments and Interpretation in Robert Hooke's Micrographia.Michael Aaron Dennis - 1989 - Science in Context 3 (2):309-364.
    The ArugmentThis essay answers a single question: what was Robert Hooke, the Royal Society's curator of experiments, doing in his well-known 1665 work,Micrographia?Hooke was articulating a “universal cure of the mind” capable of bringing about a “reformation in Philosophy,” a change in philosophy's interpretive practices and organization. The work explicated the interpretive and political foundations for a community of optical instrument users coextensive with the struggling Royal Society. Standard observational practices would overcome the problem of using nonstandard instruments, while inherent (...)
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  • Diagrammatic carriers and the acceptance of Newton’s optical theory.Gábor Áron Zemplén - 2019 - Synthese 196 (9):3577-3593.
    A permissivist framework is developed to include images in the reconstruction of the evidential base and of the theoretical content. The paper uses Newton’s optical theory as a case study to discuss mathematical idealizations and depictions of experiments, together with textual correlates of diagrams. Instead of assuming some specific type of theoretical content, focus is on novel traits that are delineable when studying the carriers of a theory. The framework is developed to trace elliptic and ambiguous message design, and utilizes (...)
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  • Das Problem der “entscheidenden Experimente”.Walter Kaiser - 1986 - Berichte Zur Wissenschaftsgeschichte 9 (2):109-125.
    In this historical essay an attempt is made to discuss the problem of decisive experiments both from the point of view of History of Science and of Philosophy of Science. The first part deals with Francis Bacon's idea of instantiae crucis and with the use of the term experimentum crucis mainly in optics. With respect to the experimental confirmation of Maxwell's electrodynamics the Duhem‐Quine Thesis is discussed. Duhem had argued that not a single hypothesis but only a complete theory is (...)
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  • Chymical Wonders of Light: J. Marcus Marci's Seventeenth-century Bohemian Optics.Margaret Garber - 2005 - Early Science and Medicine 10 (4):478-509.
    In 1648, J. Marcus Marci of Prague anticipated two chief features of Isaac Newton's celebrated 1672 theory of light and color, namely that colors are inherent to light and that the role of the prism is to separate the rays of color by means of refraction. Furthermore, Marci argued that colors produced by a first refraction are immutable when subjected to refraction by a second prism. This paper argues that the key to Marci's achievement derived from his chymical view of (...)
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  • Newton and Goethe on colour: Physical and physiological considerations.Michael J. Duck - 1988 - Annals of Science 45 (5):507-519.
    Newton began his optical studies believing in the modification theory, which was still universally accepted at that time, and in the perception of colour as a physiological process—a process in which the eye responds differently to the different velocities of identical globules. His discovery that white light is heterogeneous led him to switch to considering colour in purely physical terms.A century later, Goethe started out by accepting Newton's physical theory. He soon abandoned it, however, finding modification to be more in (...)
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  • A Brief History of Polarity in Physics.Olaf L. Müller - 2020 - In Wilhelm Lindemann & Theo Smeets (eds.), Thinking Jewellery // Two. Stuttgart, Deutschland: pp. 41-71.
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