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Force (God) in Descartes' Physics

In John Cottingham (ed.), Descartes. New York: Oxford University Press. pp. 281-310 (1997)

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  1. Is Descartes a Temporal Atomist?Ken Levy - 2005 - British Journal for the History of Philosophy 13 (4):627 – 674.
    I argue that Descartes' Second Causal Proof of God in the Third Meditation evidences, and commits him to, the belief that time is "strongly discontinuous" -- that is, that there is actually a gap between each consecutive moment of time. Much of my article attempts to reconcile this interpretation, the "received view," with Descartes' statements about time, space, and matter in his other writings, including his correspondence with various philosophers.
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  • Part of nature and division in Margaret Cavendish’s materialism.Jonathan L. Shaheen - 2019 - Synthese 196 (9):3551-3575.
    This paper pursues a question about the spatial relations between the three types of matter posited in Margaret Cavendish’s metaphysics. It examines the doctrine of complete blending and a distinctive argument against atomism, looking for grounds on which Cavendish can reject the existence of spatial regions composed of only one or two types of matter. It establishes, through that examination, that Cavendish operates with a causal conception of parts of nature and a dynamic notion of division. While the possibility of (...)
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  • Philosophy and Memory Traces: Descartes to Connectionism.John Sutton - 1998 - New York: Cambridge University Press.
    Philosophy and Memory Traces defends two theories of autobiographical memory. One is a bewildering historical view of memories as dynamic patterns in fleeting animal spirits, nervous fluids which rummaged through the pores of brain and body. The other is new connectionism, in which memories are 'stored' only superpositionally, and reconstructed rather than reproduced. Both models, argues John Sutton, depart from static archival metaphors by employing distributed representation, which brings interference and confusion between memory traces. Both raise urgent issues about control (...)
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  • De Volder’s Cartesian Physics and Experimental Pedagogy.Tammy Nyden - 2014 - In Mihnea Dobre Tammy Nyden (ed.), Cartesian Empiricisms. Springer.
    In 1675, Burchard de Volder (1643–1709) was the first professor to introduce the demonstration of experiment into a university physics course and built the Leiden Physics Theatre to accommodate this new pedagogy. When he requested the funds from the university to build the facility, he claimed that the performance of experiments would demonstrate the “truth and certainty” of the postulates of theoretical physics. Such a claim is interesting given de Volder’s lifelong commitment to Cartesian scientia. This chapter will examine de (...)
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  • Occasionalism and strict mechanism: Malebranche, Berkeley, fontenelle.Lisa Downing - 2005 - In Christia Mercer (ed.), Early Modern Philosophy: Mind, Matter, and Metaphysics. Oxford, UK: Oxford University Press. pp. 206-230.
    The rich connections between metaphysics and natural philosophy in the early modern period have been widely acknowledged and productively mined, thanks in no small part to the work of Margaret Wilson, whose book, Descartes, served as an inspirational example for a generation of scholars. The task of this paper is to investigate one particular such connection, namely, the relation between occasionalist metaphysics and strict mechanism. My focus will be on the work of Nicholas Malebranche, the most influential Cartesian philosopher after (...)
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  • Science, Certainty, and Descartes.Gary Hatfield - 1988 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1988:249 - 262.
    During the 1630s Descartes recognized that he could not expect all legitimate claims in natural science to meet the standard of absolute certainty. The realization resulted from a change in his physics, which itself arose not through methodological reflections, but through developments in his substantive metaphysical doctrines. Descartes discovered the metaphysical foundations of his physics in 1629-30; as a consequence, the style of explanation employed in his physical writings changed. His early methodological conceptions, as preserved in the Rules and sketched (...)
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