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  1. Natural Kinds as Scientific Models.Luiz Henrique Dutra - 2011 - Boston Studies in the Philosophy of Science 290:141-150.
    The concept of natural kind is center stage in the debates about scientific realism. Champions of scientific realism such as Richard Boyd hold that our most developed scientific theories allow us to “cut the world at its joints” (Boyd, 1981, 1984, 1991). In the long run we can disclose natural kinds as nature made them, though as science progresses improvements in theory allow us to revise the extension of natural kind terms.
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  • Newton's First Solution to the Problem of Kepler Motion.J. W. Herivel - 1965 - British Journal for the History of Science 2 (4):350-354.
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  • Brazilian Studies in Philosophy and History of Science: An Account of Recent Works.Décio Krause & Antonio Videira (eds.) - 2010 - Dordrecht, Netherland: Springer.
    This volume, The Brazilian Studies in the Philosophy and History of Science, is the first attempt to present to a general audience, works from Brazil on this subject. The included papers are original, covering a remarkable number of relevant topics of philosophy of science, logic and on the history of science. The Brazilian community has increased in the last years in quantity and in quality of the works, most of them being published in respectable international journals on the subject. The (...)
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  • The deflecting force of the earth's rotation from Galileo to Newton.Harold L. Burstyn - 1965 - Annals of Science 21 (1):47-80.
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  • Kepler's Laws of Planetary Motion, Before and After Newton's "Principia": an Essay on the Transformation of Scientific Problems.Brian S. Baigrie - 1987 - Studies in History and Philosophy of Science Part A 18 (2):177.
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  • Essay Review: Newtonian Dynamics: The Background to Newton's Principia.Derek Thomas Whiteside - 1966 - History of Science 5 (1):104-117.
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  • An Approach to the History of Early Astronomy.Robert Palter - 1970 - Studies in History and Philosophy of Science Part A 1 (2):93.
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  • Atoms and the ‘analogy of nature’: Newton's third rule of philosophizing.J. E. McGuire - 1970 - Studies in History and Philosophy of Science Part A 1 (1):3-58.
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  • The Increasing Corruption of Newton's Diagrams.Johannes A. Lohne - 1967 - History of Science 6 (1):69-89.
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  • The reception of Newton's gravitational theory by huygens, varignon, and maupertuis: How normal science may be revolutionary.Koffi Maglo - 2003 - Perspectives on Science 11 (2):135-169.
    : This paper first discusses the current historical and philosophical framework forged during the last century to account for both the history and the epistemic status of Newton's theory of general gravitation. It then examines the conflict surrounding this theory at the close of the seventeenth century and the first steps towards the revolutionary shift in rational mechanics in the eighteenth century. From a historical point of view, it shows the crucial contribution of the Cartesian mechanistic philosophy and Leibnizian analytic (...)
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  • The Justification of Kepler's Ellipse.Brian S. Baigrie - 1990 - Studies in History and Philosophy of Science Part A 21 (4):633.
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  • Newton's early computational method for dynamics.Michael Nauenberg - 1994 - Archive for History of Exact Sciences 46 (3):221-252.
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  • The snare of simplicity: the Newton–Flamsteed correspondence revisited.J. A. Ruffner - 2013 - Archive for History of Exact Sciences 67 (4):415-455.
    The correspondence in 1680 and 1681 between John Flamsteed and Isaac Newton on Flamsteed’s theory of the comet of 1680 tells half the story. Related manuscripts reveal Newton was pursuing his own comprehensive line of inquiry based on principles that were the antithesis of Flamsteed’s procedures. Following generally accepted views in England, Newton’s work was marked by critical evaluation of data but marred by uncritical use of simple calculating techniques based on what might be termed Platonic archetypes of straightness. Flamsteed’s (...)
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  • Understanding (in) Newton’s Argument for Universal Gravitation.Steffen Ducheyne - 2009 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 40 (2):227-258.
    In this essay, I attempt to assess Henk de Regt and Dennis Dieks recent pragmatic and contextual account of scientific understanding on the basis of an important historical case-study: understanding in Newton’s theory of universal gravitation and Huygens’ reception of universal gravitation. It will be shown that de Regt and Dieks’ Criterion for the Intelligibility of a Theory (CIT), which stipulates that the appropriate combination of scientists’ skills and intelligibility-enhancing theoretical virtues is a condition for scientific understanding, is too strong. (...)
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  • The deflecting force of the earth's rotation from Galileo to Newton.Harold L. Burstyn M. S. PhD - 1965 - Annals of Science 21 (1):47-80.
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  • Public claims, private worries: Newton's principia and Leibniz's theory of planetary motion.D. Bertoloni Meli - 1991 - Studies in History and Philosophy of Science Part A 22 (3):415-449.
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  • Newton’s De gravitatione: a review and reassessment.J. A. Ruffner - 2012 - Archive for History of Exact Sciences 66 (3):241-264.
    The widely accepted supposition that Newton’s De gravitatione was written in 1684/5 just before composing the Principia is examined. The basis for this determination has serious difficulties starting with the failure to examine the numerical estimates for the resistance of aether. The estimated range is not nearly nil as claimed but comparable with air at or near the earth’s surface. Moreover, the evidence provided most likely stems from experiments by Boyle, Hooke, and others in the 1660s and does not use (...)
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  • Saving Newton's Text: Documents, Readers, and the Ways of the World.Robert Palter - 1986 - Studies in History and Philosophy of Science Part A 18 (4):385.
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  • Hooke and Wren and the System of the World: Some Points Towards An Historical Account.J. A. Bennett - 1975 - British Journal for the History of Science 8 (1):32-61.
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