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  1. The empirical basis of equilibrium: Mach, Vailati, and the lever.Paolo Palmieri - 2008 - Studies in History and Philosophy of Science Part A 39 (1):42-53.
    About a century ago, Ernst Mach argued that Archimedes’s deduction of the principle of the lever is invalid, since its premises contain the conclusion to be demonstrated. Subsequently, many scholars defended Archimedes, mostly on historical grounds, by raising objections to Mach’s reconstruction of Archimedes’s deduction. In the debate, the Italian philosopher and historian of science Giovanni Vailati stood out. Vailati responded to Mach with an analysis of Archimedes’s deduction which was later quoted and praised by Mach himself. In this paper, (...)
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  • Script and Symbolic Writing in Mathematics and Natural Philosophy.Maarten Van Dyck & Albrecht Heeffer - 2014 - Foundations of Science 19 (1):1-10.
    We introduce the question whether there are specific kinds of writing modalities and practices that facilitated the development of modern science and mathematics. We point out the importance and uniqueness of symbolic writing, which allowed early modern thinkers to formulate a new kind of questions about mathematical structure, rather than to merely exploit this structure for solving particular problems. In a very similar vein, the novel focus on abstract structural relations allowed for creative conceptual extensions in natural philosophy during the (...)
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  • On the epistemological foundations of the law of the lever.Maarten Van Dyck - 2009 - Studies in History and Philosophy of Science Part A 40 (3):315-318.
    In this paper I challenge Paolo Palmieri’s reading of the Mach-Vailati debate on Archimedes’s proof of the law of the lever. I argue that the actual import of the debate concerns the possible epistemic (as opposed to merely pragmatic) role of mathematical arguments in empirical physics, and that construed in this light Vailati carries the upper hand. This claim is defended by showing that Archimedes’s proof of the law of the lever is not a way of appealing to a non-empirical (...)
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  • Breaking the circle: the emergence of Archimedean mechanics in the late Renaissance.Paolo Palmieri - 2008 - Archive for History of Exact Sciences 62 (3):301-346.
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  • Mechanical philosophy: science of mechanics.Maarten Van Dyck - 2020 - Encyclopedia of Early Modern Philosophy and the Sciences.
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  • Varieties of wonder: John Wilkins' Mathematical Magic and the perpetuity of invention.Maarten Van Dyck & Koen Vermeir - 2014 - Historia Mathematica 41 (4):463-489.
    Akin to the mathematical recreations, John Wilkins' Mathematicall Magick (1648) elaborates the pleasant, useful and wondrous part of practical mathematics, dealing in particular with its material culture of machines and instruments. We contextualize the Mathematicall Magick by studying its institutional setting and its place within changing conceptions of art, nature, religion and mathematics. We devote special attention to the way Wilkins inscribes mechanical innovations within a discourse of wonder. Instead of treating ‘wonder’ as a monolithic category, we present a typology, (...)
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