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  1. Mechanisms of life in the seventeenth century: Borelli, Perrault, Régis.Dennis Des Chene - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (2):245-260.
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  • Dialogue concerning the Two Chief World Systems.Galileo Galilei & Stillman Drake - 1954 - British Journal for the Philosophy of Science 5 (19):253-256.
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  • Metaphysics and the Origins of Modern Science: Descartes and the Importance of Laws of Nature.John Henry - 2004 - Early Science and Medicine 9 (2):73-114.
    This paper draws attention to the crucial importance of a new kind of precisely defined law of nature in the Scientific Revolution. All explanations in the mechanical philosophy depend upon the interactions of moving material particles; the laws of nature stipulate precisely how these interact; therefore, such explanations rely on the laws of nature. While this is obvious, the radically innovatory nature of these laws is not fully acknowledged in the historical literature. Indeed, a number of scholars have tried to (...)
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  • The constructible and the intelligible in Newton's philosophy of geometry.Mary Domski - 2003 - Philosophy of Science 70 (5):1114-1124.
    In the preface to the Principia (1687) Newton famously states that “geometry is founded on mechanical practice.” Several commentators have taken this and similar remarks as an indication that Newton was firmly situated in the constructivist tradition of geometry that was prevalent in the seventeenth century. By drawing on a selection of Newton's unpublished texts, I hope to show the faults of such an interpretation. In these texts, Newton not only rejects the constructivism that took its birth in Descartes's Géométrie (...)
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  • Unpublished Scientific Papers of Isaac Newton.Isaac Newton, A. Rupert Hall & Marie Boas Hall - 1963 - British Journal for the Philosophy of Science 13 (52):344-345.
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  • Newton as Philosopher.Andrew Janiak - 2008 - New York: Cambridge University Press.
    Newton's philosophical views are unique and uniquely difficult to categorise. In the course of a long career from the early 1670s until his death in 1727, he articulated profound responses to Cartesian natural philosophy and to the prevailing mechanical philosophy of his day. Newton as Philosopher presents Newton as an original and sophisticated contributor to natural philosophy, one who engaged with the principal ideas of his most important predecessor, René Descartes, and of his most influential critic, G. W. Leibniz. Unlike (...)
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  • Boyle's Conception of Nature.J. E. McGuire - 1972 - Journal of the History of Ideas 33 (4):523.
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  • Epicureanism at the origins of modernity.Catherine Wilson - 2008 - New York: Oxford University Press.
    This landmark study examines the role played by the rediscovery of the writings of the ancient atomists, Epicurus and Lucretius, in the articulation of the major philosophical systems of the seventeenth century, and, more broadly, their influence on the evolution of natural science and moral and political philosophy. The target of sustained and trenchant philosophical criticism by Cicero, and of opprobrium by the Christian Fathers of the early Church, for its unflinching commitment to the absence of divine supervision and the (...)
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  • Descartes, mechanics, and the mechanical philosophy.Daniel Garber - 2002 - Midwest Studies in Philosophy 26 (1):185–204.
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  • The Mechanical Hypothesis in Ancient Greek Natural Philosophy.Sylvia Berryman - 2009 - New York: Cambridge University Press.
    It has long been thought that the ancient Greeks did not take mechanics seriously as part of the workings of nature, and that therefore their natural philosophy was both primitive and marginal. In this book Sylvia Berryman challenges that assumption, arguing that the idea that the world works 'like a machine' can be found in ancient Greek thought, predating the early modern philosophy with which it is most closely associated. Her discussion ranges over topics including balancing and equilibrium, lifting water, (...)
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  • Selected Philosophical Papers of Robert Boyle.Robert Boyle (ed.) - 1979 - Manchester University Press.
    "The availability of a paperback version of Boyle's philosophical writings selected by M. A. Stewart will be a real service to teachers, students, and scholars with seventeenth-century interests. The editor has shown excellent judgment in bringing together many of the most important works and printing them, for the most part, in unabridged form. The texts have been edited responsibly with emphasis on readability.... Of special interest in connection with Locke and with the reception of Descarte's Corpuscularianism, to students of the (...)
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  • Mechanisms of life in the seventeenth century: Borelli, Perrault, Régis.Dennis Des Chene - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (2):245-260.
    In Descartes’s reformulation of natural philosophy, two aspects of what came to be known as the mechanical philosophy were intimately joined: mechanism as an ontology of nature, according to which all natural things had only ‘mechanical’ properties; and mechanism as a method of explanation. One could, and many philosophers did, adopt mechanism as a method of explanation without adopting a mechanistic ontology. I examine two successors of Descartes who did just that, and one who did not. Giovanni Alfonso Borelli in (...)
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  • Euler, Vis Viva, And Equilibrium.Brian Hepburn - 2010 - Studies in History and Philosophy of Science Part A 41 (2):120-127.
    Euler’s ‘On the force of percussion and its true measure’, published in 1746, shows that not only had the issue of vis viva not been settled, but that the concepts of inertia and even force were still very much up for grabs. This paper details Euler’s treatment of the vis viva problem. Within those details we find differences between his physics and that of Newton, in particular the rejection of empty space and reduction of all forces to the operation of (...)
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  • The Principia: Mathematical Principles of Natural Philosophy.Isaac Newton - 1999 - University of California Press.
    Presents Newton's unifying idea of gravitation and explains how he converted physics from a science of explanation into a general mathematical system.
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  • Newton and the relation of mathematics to natural philosophy.James W. Garrison - 1987 - Journal of the History of Ideas 48 (4):609-627.
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  • The Cambridge Companion to Galileo (JR Milton).P. Machamer - 2000 - Philosophical Books 41 (1):29-30.
    Not only a hero of the scientific revolution, but after his conflict with the church, a hero of science, Galileo is today rivalled in the popular imagination only by Newton and Einstein. But what did Galileo actually do, and what are the sources of the popular image we have of him? This 1998 collection of specially-commissioned essays is unparalleled in the depth of its coverage of all facets of Galileo's work. A particular feature of the volume is the treatment of (...)
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  • Descartes's Physics and Descartes's Mechanics: Chicken and Egg?Alan Gabbey - 1993 - In Stephen Voss (ed.), Essays on the philosophy and science of René Descartes. New York: Oxford University Press.
    This chapter discusses various bases of mechanical philosophy generally known as virtual work, virtual speeds, and explanations why some machines can lift heavy loads with small force. This chapter further explains the theory of the five simple machines and the general statistical principle or GSP. Finally this chapter explains how physics grew out of the trunk of mechanics. Finally this chapter explains that theoretical mechanics depends on physics as its nomological foundation which in turn depends on metaphysics. The chapter ends (...)
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  • The genesis of the concept of physical law.Edgar Zilsel - 1942 - Philosophical Review 51 (3):245-279.
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  • Newton, active powers, and the mechanical philosophy.Alan Gabbey - 2002 - In I. Bernard Cohen & George E. Smith (eds.), The Cambridge Companion to Newton. Cambridge University Press. pp. 329--357.
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  • A model of intelligibility in science: Using Galileo's balance as a model for understanding the motion of bodies.Peter Machamer & Andrea Woody - 1994 - Science & Education 3 (3):215-244.
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