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  1. Newton's “law-first” epistemology and “matter-first” metaphysics.Caleb Hazelwood - 2023 - Studies in History and Philosophy of Science Part A 101 (C):40-47.
    Much has been written on Newton’s concept of matter, as well as Newton’s laws. Meanwhile, the metaphysical and epistemological relationships between these two principal features of Newtonian philosophy are relatively unexplored. Among the existing accounts of the relationship between bodies and laws, two are especially compelling: the “law-constitutive” approach from Katherine Brading and the “formal-cause” approach from Zvi Biener and Eric Schliesser. Both accounts argue that Newton’s bodies are (at least partially) metaphysically dependent on the laws. That is, according to (...)
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  • Hume and the Metaphysics of Agency.Joshua M. Wood - 2014 - Journal of the History of Philosophy 52 (1):87-112.
    I examine Hume’s ‘construal of the basic structure of human agency’ and his ‘analysis of human agency’ as they arise in his investigation of causal power. Hume’s construal holds both that volition is separable from action and that the causal mechanism of voluntary action is incomprehensible. Hume’s analysis argues, on the basis of these two claims, that we cannot draw the concept of causal power from human agency. Some commentators suggest that Hume’s construal of human agency is untenable, unduly skeptical, (...)
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  • Mechanical Philosophy: Reductionism and Foundationalism.Tzuchien Tho - 2020 - Encyclopedia of Early Modern Philosophy and the Sciences.
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  • Mechanism: Mathematical Laws.Tzuchien Tho - 2020 - Encyclopedia of Early Modern Philosophy and the Sciences.
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  • How physics flew the philosophers' nest.Katherine Brading - 2021 - Studies in History and Philosophy of Science Part A 88 (C):312-20.
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  • A Study of the De proportione motus by Marcus Marci de Kronland.Knud Erik Sørensen - 1977 - Centaurus 21 (3-4):246-277.
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  • Move Your Body! Margaret Cavendish on Self-Motion.Colin Chamberlain - 2024 - In Sebastian Bender & Dominik Perler (eds.), Powers and Abilities in Early Modern Philosophy. New York, NY: Routledge. pp. 105-125.
    Margaret Cavendish (1623-1673) argues that when someone throws a ball, their hand does not cause the ball to move. Instead, the ball moves itself. In this chapter, I reconstruct Cavendish’s argument that material things—like the ball—are self-moving. Cavendish argues that body-body interaction is unintelligible. We cannot make sense of interaction in terms of the transfer of motion nor the more basic idea that one body acts in another body. Assuming something moves bodies around, Cavendish concludes that bodies move themselves. Still, (...)
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  • Newton’s De gravitatione: a review and reassessment.J. A. Ruffner - 2012 - Archive for History of Exact Sciences 66 (3):241-264.
    The widely accepted supposition that Newton’s De gravitatione was written in 1684/5 just before composing the Principia is examined. The basis for this determination has serious difficulties starting with the failure to examine the numerical estimates for the resistance of aether. The estimated range is not nearly nil as claimed but comparable with air at or near the earth’s surface. Moreover, the evidence provided most likely stems from experiments by Boyle, Hooke, and others in the 1660s and does not use (...)
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  • Two Mathematics, Two Gods: Newton and the Second Law.Stuart Pierson - 1994 - Perspectives on Science 2 (2):231-253.
    This article continues the discussion, begun in an earlier contribution to Perspectives on Science, of recent arguments over the coherence of Newton’s physics. The arguments turn on his use of the term “force” in two apparently different ways in the second law. This ambiguity remains because Newton conceived of mathematics in two entirely different ways—the first as a way of describing how things are in themselves, the second as a method of approximation. These two conceptions were, in turn, reflections of (...)
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  • The vis viva controversy: Do meanings matter?David Papineau - 1977 - Studies in History and Philosophy of Science Part A 8 (2):111-142.
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  • What Is Newton's Law of Inertia About? Philosophical Reasoning and Explanation in Newton's Principia.Bernd Ludwig - 1992 - Science in Context 5 (1):139-163.
    The ArgumentIn this paper it will be shown that Newton'sPrincipiagives an explication of and an argument for the first Law of Motion, that seems to be outside the scope of today's philosophy of science but was familiar to seventeenth-century commentators: The foundation of classical mechanics is possible only by recurrence to results of a successful technical practice. Laws of classical mechanics gain their meaning as well as their claims to validity only when considered as statements about artifacts whose production belongs (...)
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  • Spinoza on the resistance of bodies.Galen Barry - 2021 - Studies in History and Philosophy of Science Part A 86 (C):56-67.
    People attribute resistance to bodies in Spinoza's physics. It's not always clear what they mean when they do this, or whether they are entitled to. This article clarifies what it would mean, and examines the evidence for attributing resistance. The verdict: there's some evidence, but not nearly as much as people think.
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  • The third law in Newton's Waste book (or, the road less taken to the second law).Doreen L. Fraser - 2005 - Studies in History and Philosophy of Science Part A 36 (1):43-60.
    On the basis of evidence drawn from the Waste book, Westfall and Nicholas have argued that Newton arrived at his second law of motion by reflecting on the implications of the first law. I analyze another argument in the Waste book which reveals that Newton also arrived at the second law by another very different route. On this route, it is the consideration of the third law and the principle of conservation of motion—and not the first law—that prompts Newton to (...)
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  • Light, Pressure, and Rectilinear Propagation: Descartes' Celestial Optics and Newton's Hydrostatics.Alan E. Shapiro - 1974 - Studies in History and Philosophy of Science Part A 5 (3):239.
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  • The wedge and the vis viva controversy: how concepts of force influenced the practice of early eighteenth-century mechanics.Jip Besouw - 2017 - Archive for History of Exact Sciences 71 (2):109-156.
    This article discusses the quest for the mechanical advantage of the wedge in the eighteenth century. As a case study, the wedge enlightens our understanding of eighteenth-century mechanics in general and the controversy over “force” or vis viva in particular. In this article, I show that the two different approaches to mechanics, the one that favoured force in terms of velocities and the one that primarily used displacements—known as the ‘Newtonian’ and ‘Leibnizian’ methods, respectively—were not at all on par in (...)
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  • Encyclopedia of the Scientific Revolution: From Copernicus to Newton.Wilbur Applebaum (ed.) - 2008 - Taylor & Francis US.
    First Published in 2008. Routledge is an imprint of Taylor & Francis, an informa company.
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