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On Locke,'the Great Huygenius, and the incomparable Mr. Newton'

In Phillip Bricker & R. I. G. Hughes (eds.), Philosophical Perspectives on Newtonian Science. MIT Press. pp. 17--47 (1990)

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  1. How applied mathematics became pure.Penelope Maddy - 2008 - Review of Symbolic Logic 1 (1):16-41.
    My goal here is to explore the relationship between pure and applied mathematics and then, eventually, to draw a few morals for both. In particular, I hope to show that this relationship has not been static, that the historical rise of pure mathematics has coincided with a gradual shift in our understanding of how mathematics works in application to the world. In some circles today, it is held that historical developments of this sort simply represent changes in fashion, or in (...)
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  • Self‐Differing, Aspects, and Leibniz's Law.Donald L. M. Baxter - 2018 - Noûs 52:900-920.
    I argue that an individual has aspects numerically identical with it and each other that nonetheless qualitatively differ from it and each other. This discernibility of identicals does not violate Leibniz's Law, however, which concerns only individuals and is silent about their aspects. They are not in its domain of quantification. To argue that there are aspects I will appeal to the internal conflicts of conscious beings. I do not mean to imply that aspects are confined to such cases, but (...)
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  • The Newtonian Equivalence Principle: How the Relativity of Acceleration Led Newton to the Equivalence of Inertial and Gravitational Mass.Craig W. Fox - 2016 - Philosophy of Science 83 (5):1027-1038.
    From late 1684 through mid-1685, Isaac Newton turned to developing and refining the conceptual foundations presupposed by his emerging physics. Analysis of his manuscripts from this period reveals that Newton’s understanding of the relativity of acceleration led him to seek a spatiotemporally invariant quantity of matter. He found two such quantities and then designed an experiment to discover their relationship. Interpreting the experiment, however, required distinguishing a new notion of force. Others have recognized the conceptual distinction between inertial and gravitational (...)
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  • Newton's Principia.Chris Smeenk & Eric Schliesser - 2013 - In Jed Z. Buchwald & Robert Fox (eds.), The Oxford handbook of the history of physics. New York, NY: Oxford University Press. pp. 109-165.
    The Oxford Handbook of the History of Physics brings together cutting-edge writing by more than twenty leading authorities on the history of physics from the seventeenth century to the present day. By presenting a wide diversity of studies in a single volume, it provides authoritative introductions to scholarly contributions that have tended to be dispersed in journals and books not easily accessible to the general reader. While the core thread remains the theories and experimental practices of physics, the Handbook contains (...)
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  • Locke's Theory of Demonstration and Demonstrative Morality.Patrick J. Connolly - 2018 - Philosophy and Phenomenological Research 98 (2):435-451.
    Locke famously claimed that morality was capable of demonstration. But he also refused to provide a system of demonstrative morality. This paper addresses the mismatch between Locke’s stated views and his actual philosophical practice. While Locke’s claims about demonstrative morality have received a lot of attention it is rare to see them discussed in the context of his general theory of demonstration and his specific discussions of particular demonstrations. This paper explores Locke’s general remarks about demonstration as well as his (...)
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  • Rationalism in Science.David Stump - 2005 - In Alan Jean Nelson (ed.), A Companion to Rationalism. Oxford: Wiley-Blackwell. pp. 408–424.
    I survey the debate over rationalism and empiricism in science. This chapter contains sections titled: The New Experimental Science as a Challenge to Intuition, Geometry and Intuition, The Mathematical Tradition and Theoretical Science.
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  • On the Existence of Spacetime Structure.Erik Curiel - 2014 - British Journal for the Philosophy of Science:axw014.
    I examine the debate between substantivalists and relationalists about the ontological character of spacetime and conclude it is not well posed. I argue that the hole argument does not bear on the debate, because it provides no clear criterion to distinguish the positions. I propose two such precise criteria and construct separate arguments based on each to yield contrary conclusions, one supportive of something like relationalism and the other of something like substantivalism. The lesson is that one must fix an (...)
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  • Absolute, true and mathematical time in Newton’s Principia.Katherine Brading - unknown
    I discuss the three distinctions “absolute and relative”, “true and apparent”, and “mathematical and common”, for the specific case of time in Newton’s Principia. I argue that all three distinctions are needed for the project of the Principia and can be understood within the context of that project without appeal to Newton’s wider metaphysical and theological commitments. I argue that, within the context of the Principia, the three claims that time is absolute rather than relative, true rather than apparent, and (...)
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  • The Newtonian Revolution as a revolution in scientific reasoning.Pierre J. Boulos - unknown
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