Results for 'Maupertuis'

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  1. Maupertuis on attraction as an inherent property of matter.Lisa Downing - 2012 - In Janiak Schliesser (ed.), Interpreting Newton.
    Pierre Louis Moreau de Maupertuis’ famous and influential Discours sur les différentes figures des astres, which represented the first public defense of attractionism in the Cartesian stronghold of the Paris Academy, sometimes suggests a metaphysically agnostic defense of gravity as simply a regularity. However, Maupertuis’ considered account in the essay, I argue, is much more subtle. I analyze Maupertuis’ position, showing how it is generated by an extended consideration of the possibility of attraction as an inherent property (...)
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  2. Maupertuis et le mathématisme philosophique.Marco Storni - 2017 - Noctua 4 (1-2):91-123.
    One of the greatest philosophical controversies of the eighteenth century was the competition organized in 1746 by the Berlin Academy of Sciences. Although the specific object of the competition was the theory of monads, this particular question nevertheless referred to a deeper and more radical opposition between the two contending parties, Newtonians and Wolffians. In this contribution, we will first focus on the reasons for Newtonian opposition to Wolff’s philosophy. In this context, particular attention will be paid to the positions (...)
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  3. The tension between the mathematical and metaphysical strands of Maupertuis' Principle of Least Action.Yannick Van den Abbeel - 2017 - Noctua 4 (1-2):56-90.
    Without doubt, the principle of least action is a fundamental principle in classical mechanics. Contemporary physicists, however, consider the PLA as a purely mathematical principle – even an axiom which they cannot completely justify. Such an account stands in sharp contrast with the historical meaning of the PLA. When the principle was introduced in the 1740s, by Pierre-Louis Moreau de Maupertuis, its meaning was much more versatile. For Maupertuis the principle of least action signified that nature is thrifty (...)
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  4. Les preuves de l’existence de Dieu chez Samuel Formey.Marco Storni - 2018 - Noctua 5 (2):161-199.
    The perpetual secretary of the Berlin Academy Johann Heinrich Samuel Formey is best known as a populariser of Christian Wolff’s doctrines. As of Formey’s activity in the Berlin Academy, scholars have mostly emphasized his role in the controversy over monads with Leonhard Euler, while overlooking other interesting contributions Formey presented in the “speculative philosophy” class of the Academy. In this paper, I analyse two articles Formey published in 1747 on the Mémoires de l’Académie de Berlin, namely the Preuves de l’existence (...)
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  5. Kant and the Problem of Form: Theories of Generation, Theories of Mind.Jennifer Mensch - 2014 - Estudos Kantianos 2 (2):241-264.
    This is an article-length summary of the argument in my book, Kant's Organicism: Epigenesis and the Development of Critical Philosophy (University of Chicago Press, 2013; 2015).
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  6. Vital anti-mathematicism and the ontology of the emerging life sciences: from Mandeville to Diderot.Charles T. Wolfe - 2017 - Synthese:1-22.
    Intellectual history still quite commonly distinguishes between the episode we know as the Scientific Revolution, and its successor era, the Enlightenment, in terms of the calculatory and quantifying zeal of the former—the age of mechanics—and the rather scientifically lackadaisical mood of the latter, more concerned with freedom, public space and aesthetics. It is possible to challenge this distinction in a variety of ways, but the approach I examine here, in which the focus on an emerging scientific field or cluster of (...)
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  7. “In Nature as in Geometry”: Du Châtelet and the Post-Newtonian Debate on the Physical Significance of Mathematical Objects.Aaron Wells - 2023 - In Wolfgang Lefèvre (ed.), Between Leibniz, Newton, and Kant: Philosophy and Science in the Eighteenth Century. Springer Verlag. pp. 69-98.
    Du Châtelet holds that mathematical representations play an explanatory role in natural science. Moreover, she writes that things proceed in nature as they do in geometry. How should we square these assertions with Du Châtelet’s idealism about mathematical objects, on which they are ‘fictions’ dependent on acts of abstraction? The question is especially pressing because some of her important interlocutors (Wolff, Maupertuis, and Voltaire) denied that mathematics informs us about the properties of material things. After situating Du Châtelet in (...)
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  8. L'etica moderna. Dalla Riforma a Nietzsche.Sergio Cremaschi - 2007 - Roma RM, Italia: Carocci.
    This book tells the story of modern ethics, namely the story of a discourse that, after the Renaissance, went through a methodological revolution giving birth to Grotius’s and Pufendorf’s new science of natural law, leaving room for two centuries of explorations of the possible developments and implications of this new paradigm, up to the crisis of the Eighties of the eighteenth century, a crisis that carried a kind of mitosis, the act of birth of both basic paradigms of the two (...)
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  9. Kant's Organicism: Epigenesis and the Development of Critical Philosophy.Jennifer Mensch - 2013 - Chicago: University of Chicago Press.
    Kant’s Organicism: Epigenesis and the Development of Critical Philosophy, traces the decisive role played by eighteenth century embryological research for Immanuel Kant’s theories of mind and cognition. I begin this book by following the course of life science debates regarding organic generation in England and France between 1650 and 1750 before turning to a description of their influence in Germany in the second half of the eighteenth century. Once this background has been established, the remainder of Kant’s Organicism moves to (...)
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  10. Language as the Key to the Epistemological Labyrinth: Turgot’s Changing View of Human Perception.Avi S. Lifschitz - 2004 - Historiographia Linguistica 31 (2/3):345-365.
    A belief in a firm correspondence between objects, ideas, and their representation in language pervaded the works of Anne Robert Jacques Turgot

    (1727–1781) in 1750. This conviction is particularly manifest in Turgot’s sharp critique of Berkeley’s philosophical system and his remarks on Maupertuis’s reconstruction of the origin of language. During the 1750s Turgot’s epistemological views underwent a change, apparent in two of his contributions to the Encyclopédie: the entries Existence and Étymologie (1756). These articles included a reassessment of Berkeleyan immaterialism, (...)
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  11. Locke’s Newtonianism and Lockean Newtonianism.Lisa J. Downing - 1997 - Perspectives on Science 5 (3):285-310.
    I explore Locke’s complex attitude toward the natural philosophy of his day by focusing on Locke’s own treatment of Newton’s theory of gravity and the presence of Lockean themes in defenses of Newtonian attraction/gravity by Maupertuis and other early Newtonians. In doing so, I highlight the inadequacy of an unqualified labeling of Locke as “mechanist” or “Newtonian.”.
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  12. Proofs of God in Early Modern Europe.Lloyd Strickland - 2018 - Waco, TX, USA: Baylor University Press. Edited by Lloyd Strickland.
    Proofs of God in Early Modern Europe offers a fascinating window into early modern efforts to prove God’s existence. Assembled here are twenty-two key texts, many translated into English for the first time, which illustrate the variety of arguments that philosophers of the seventeenth and eighteenth centuries offered for God. These selections feature traditional proofs—such as various ontological, cosmological, and design arguments—but also introduce more exotic proofs, such as the argument from eternal truths, the argument from universal aseity, and the (...)
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  13. Philosophy and Mathematics at the Turn of the 18th Century: New Perspectives – Philosophie et mathématiques au tournant du XVIIIe siècle: perspectives nouvelles.Andrea Strazzoni & Marco Storni (eds.) - 2017 - Parma: E-theca OnLineOpenAccess Edizioni.
    The essays gathered in this issue of the journal Noctua focus on the various relationships that were established between philosophy and mathematics from Galileo and Descartes to Kant, passing by Newton.
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