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  1. Concepts of power: natural philosophy and the uses of machines in mid-eighteenth-century London.Alan Q. Morton - 1995 - British Journal for the History of Science 28 (1):63-78.
    How may scientific research contribute effectively to industrial development? This question has been debated for many years. However, a recent development in this discussion has come from a number of eminent scientists and others who have become concerned with what has become known as the public understanding of science. According to them, a greater understanding of science by members of the public would result in a higher value being placed on scientific research, which, eventually, would result in both increased social (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • The Laws of Motion from Newton to Kant.Eric Watkins - 1997 - Perspectives on Science 5 (3):311-348.
    It is often claimed (most recently by Michael Friedman) that Kant intended to justify Newton’s most fundamental claims expressed in the Principia, such as his laws of motion and the law of universal gravitation. In this article, I argue that the differences between Newton’s laws of motion and Kant’s laws of mechanics are not superficial or merely apparent. Rather, they reflect fundamental differences in their respective projects. This point can be seen especially clearly by considering the nature of the various (...)
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  • Descartes' physiology and its relation to his psychology.Gary Hatfield - 1992 - In John Cottingham (ed.), The Cambridge companion to Descartes. New York: Cambridge University Press. pp. 335--370.
    Descartes understood the subject matter of physics (or natural philosophy) to encompass the whole of nature, including living things. It therefore comprised not only nonvital phenomena, including those we would now denominate as physical, chemical, minerological, magnetic, and atmospheric; it also extended to the world of plants and animals, including the human animal (with the exception of those aspects of the human mind that Descartes assigned to solely to thinking substance: pure intellect and will). Descartes wrote extensively on physiology and (...)
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  • Madame Du Ch'telet's Metaphysics and Mechanics.Carolyn Iltis - 1977 - Studies in History and Philosophy of Science Part A 8 (1):29.
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  • (1 other version)Derivation of Classical Mechanics in an Energetic Framework via Conservation and Relativity.Philip Goyal - 2020 - Foundations of Physics 50 (11):1426-1479.
    The notions of conservation and relativity lie at the heart of classical mechanics, and were critical to its early development. However, in Newton’s theory of mechanics, these symmetry principles were eclipsed by domain-specific laws. In view of the importance of symmetry principles in elucidating the structure of physical theories, it is natural to ask to what extent conservation and relativity determine the structure of mechanics. In this paper, we address this question by deriving classical mechanics—both nonrelativistic and relativistic—using relativity and (...)
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  • (1 other version)Derivation of Classical Mechanics in an Energetic Framework via Conservation and Relativity.Philip Goyal - 2020 - Foundations of Physics 1 (11):1426-1479.
    The notions of conservation and relativity lie at the heart of classical mechanics, and were critical to its early development. However, in Newton’s theory of mechanics, these symmetry principles were eclipsed by domain-specific laws. In view of the importance of symmetry principles in elucidating the structure of physical theories, it is natural to ask to what extent conservation and relativity determine the structure of mechanics. In this paper, we address this question by deriving classical mechanics—both nonrelativistic and relativistic—using relativity and (...)
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  • Between Du Châtelet’s Leibniz Exegesis and Kant’s Early Philosophy: A Study of Their Responses to the vis viva Controversy.Huaping Lu-Adler - 2018 - History of Philosophy & Logical Analysis 21 (1):177-94.
    This paper examines Du Châtelet’s and Kant’s responses to the famous vis viva controversy – Du Châtelet in her Institutions Physiques (1742) and Kant in his debut, the Thoughts on the True Estimation of Living Forces (1746–49). The Institutions was not only a highly influential contribution to the vis viva controversy, but also a pioneering attempt to integrate Leibnizian metaphysics and Newtonian physics. The young Kant’s evident knowledge of this work has led some to speculate about his indebtedness to her (...)
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  • Fictions at work: The real qualities of fictional quantities.Tzuchien Tho - manuscript
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  • Potentia, actio, vis: the Quantity mv2 and its Causal Role.Tzuchien Tho - 2018 - Archiv für Geschichte der Philosophie 100 (4):411-443.
    This article aims to interpret Leibniz’s dynamics project through a theory of the causation of corporeal motion. It presents an interpretation of the dynamics that characterizes physical causation as the structural organization of phenomena. The measure of living force by mv2 must then be understood as an organizational property of motion conceptually distinct from the geometrical or otherwise quantitative magnitudes exchanged in mechanical phenomena. To defend this view, we examine one of the most important theoretical discrepancies of Leibniz’s dynamics with (...)
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  • (1 other version)The Immanent Contingency of Physical Laws in Leibniz’s Dynamics.Tzuchien Tho - 2019 - In Rodolfo Garau & Pietro Omodeo (eds.), Contingency and Natural Order in Early Modern Science. Springer Verlag. pp. 289-316.
    This paper focuses on Leibniz’s conception of modality and its application to the issue of natural laws. The core of Leibniz’s investigation of the modality of natural laws lays in the distinction between necessary, geometrical laws on the one hand, and contingent, physical laws of nature on the other. For Leibniz, the contingency of physical laws entailed the assumption of the existence of an additional form of causality beyond mechanical or efficient ones. While geometrical truths, being necessary, do not require (...)
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  • Continuity of change in Kant’s dynamics.Michael Bennett McNulty - 2019 - Synthese 196 (4):1595-1622.
    Since his Metaphysische Anfangsgründe der Naturwissenschaft was first published in 1786, controversy has surrounded Immanuel Kant’s conception of matter. In particular, the justification for both his dynamical theory of matter and the related dismissal of mechanical philosophy are obscure. In this paper, I address these longstanding issues and establish that Kant’s dynamism rests upon Leibnizian, metaphysical commitments held by Kant from his early pre-Critical texts on natural philosophy to his major critical works. I demonstrate that, throughout his corpus and inspired (...)
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  • The Leibnizian-Newtonian Debates: Natural Philosophy and Social Psychology.Carolyn Iltis - 1973 - British Journal for the History of Science 6 (4):343-377.
    By the time of the Leibniz-Clarke correspondence of 1716 the Newtonian and Leibnizian systems of natural philosophy had reached maturity. Each system consisted of different physical as well as metaphysical principles which, taken together, formed a world view. At the time of their famous debates, Leibniz at 70 and Newton at 74, the founders of two highly developed scientific philosophies, were struggling to establish and defend the ontological and mechanical bases of differing bodies of organized knowledge.
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  • (1 other version)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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  • Leibniz's Optics and Contingency in Nature.Jeffrey K. McDonough - 2010 - Perspectives on Science 18 (4):432-455.
    Leibniz’s mature philosophical understanding of the laws of nature emerges rather suddenly in the late 1670’s to early 1680’s and is signaled by his embrace of three central theses.1 The first, what I’ll call the thesis of Contingency, suggests that the laws of nature are not only contingent, but, in some sense, paradigmatically contingent; they are supposed to provide insight into the very nature of contingency as Leibniz comes to understand it. The second, what I’ll call the thesis of Providence, (...)
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  • The Case for the Green Kant: A Defense and Application of a Kantian Approach to Environmental Ethics.Zachary T. Vereb - 2019 - Dissertation, University of South Florida
    Environmental philosophers have argued that Kant’s philosophy offers little for environmental issues. Furthermore, Kant scholars typically focus on humanity, ignoring the question of duties to the environment. In my dissertation, I turn to a number of underexploited texts in Kant’s work to show how both sides are misguided in neglecting the ecological potential of Kant, making the case for the green Kant at the intersection of Kant scholarship and environmental ethics. I build upon previous literature to argue that the green (...)
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  • Leibniz’s Theoretical Shift in the Phoranomus and Dynamica de Potentia.François Duchesneau - 1998 - Perspectives on Science 6 (1):77-109.
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  • To Be or Not To Be: A Multidimensional Spirituality in the Workplace.Uday Shinde, H. James Nelson & Jay Shinde - 2018 - Journal of Human Values 24 (3):185-207.
    The present study focuses on furthering the theoretical foundations of the field of spirituality and religiosity in the workplace (SRW) by providing a parsimonious definition, and multi-dimensional model for the construct of spirituality grounded in a pluralistic and historically authentic framework using the Sophia Perennis or Perennial Philosophy (Lings, 2005, A return to the spirit.... Fons Vitae, Louisville). In this process, the study addresses the dilemma of religiosity versus spirituality faced by researchers in this area (Benefiel, Fry, & Geigle, 2014, (...)
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  • On the Concept of Energy: Eclecticism and Rationality.Ricardo Lopes Coelho - 2014 - Science & Education 23 (6):1361-1380.
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  • Taking Newton on tour: the scientific travels of Martin Folkes, 1733–1735.Anna Marie Roos - 2017 - British Journal for the History of Science 50 (4):569-601.
    Martin Folkes (1690–1754) was Newton's protégé, an English antiquary, mathematician, numismatist and astronomer who would in the latter part of his career become simultaneously president of the Royal Society and of the Society of Antiquaries. Folkes took a Grand Tour from March 1733 to September 1735, recording the Italian leg of his journey from Padua to Rome in his journal. This paper examines Folkes's travel diary to analyse his Freemasonry, his intellectual development as a Newtonian and his scientific peregrination. It (...)
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  • Ruggiero Boscovich and “the Forces Existing in Nature”.Luca Guzzardi - 2017 - Science in Context 30 (4):385-422.
    ArgumentAccording to a long-standing interpretation which traces back to Max Jammer'sConcepts of Force(1957), Ruggiero G. Boscovich would have developed a concept of force in the tradition of Leibniz's dynamics. In his variation on the theme, basic properties of matter such as solidity or impenetrability would be derived from an interplay of some “active” force of attraction and repulsion that any primary element of nature (“point of matter” in Boscovich's theory) would possess. In the present paper I discuss many flaws of (...)
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  • Leibniz on force, cause and subject of motion: From de corporum concursu (1678) to the brevis demonstratio.Rodolfo Fazio - 2021 - Manuscrito 44 (1):98-130.
    In the present paper we study the relationship between the notions of force, cause and subject of motion in Leibniz’s early dynamics. First, we specify the role that the problem of the subject and cause of motion played in the development of his dynamics. Second, we analyze the distinction between force and quantity of motion and the validity and limits of his proof. Third, we study and evaluate the limits of the arguments for establishing that forces are inherent to bodies. (...)
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  • Conservation of Energy: Missing Features in Its Nature and Justification and Why They Matter.J. Brian Pitts - 2021 - Foundations of Science 26 (3):559-584.
    Misconceptions about energy conservation abound due to the gap between physics and secondary school chemistry. This paper surveys this difference and its relevance to the 1690s–2010s Leibnizian argument that mind-body interaction is impossible due to conservation laws. Justifications for energy conservation are partly empirical, such as Joule’s paddle wheel experiment, and partly theoretical, such as Lagrange’s statement in 1811 that energy is conserved if the potential energy does not depend on time. In 1918 Noether generalized results like Lagrange’s and proved (...)
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  • ‘s Gravesande's Appropriation of Newton's Natural Philosophy, Part II: Methodological Issues.Steffen Ducheyne - 2014 - Centaurus 56 (2):97-120.
    It has been suggested in the literature that, although Willem Jacob ‘s Gravesande occasionally treated Newton's doctrines in a selective manner, he was nevertheless an unremitting follower of Newton's methodology. As part of a reassessment of ‘s Gravesande's Newtonianism, I argue that, although ‘s Gravesande took over key terms of Newton's methodological canon, his methodological ideas are upon close scrutiny quite different from and occasionally even incongruent with Newton's views on the matter.
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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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  • Kant’s Critique of Leibniz’s Rejection of Real Opposition.Henry Michael Southgate - 2013 - Hopos: The Journal of the International Society for the History of Philosophy of Science 3 (1):91-134.
    I explain Kant’s critique of Leibniz’s rejection of real opposition in the Amphiboly in the context of Kant’s pre-Critical writings on vis viva and negative magnitudes and his Metaphysical Foundations of Natural Science. Properly contextualized in terms of the vis viva controversy, I argue, Kant’s arguments against Leibniz succeed, even though they are laden with theoretical inconsistencies and operate under false physical premises.
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