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  1. The Aristotelian Heritage in Early Naval Architecture. From the Venice Arsenal to the French Navy, 1500-1700.Larrie David Ferreiro - 2010 - Theoria 25 (2):227-241.
    This paper examines the Aristotelian roots of the mechanics of naval architecture, beginning with Mechanical Problems, through its various interpretations by Renaissance mathematicians including Vettor Fausto and Galileo at the Venice Arsenal, and culminating in the first synthetic works of naval architecture by the French navy professor Paul Hoste at the end of the seventeenth century.
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  • Impetus Mechanics as a Physical Argument for Copernicanism Copernicus, Benedetti, Galileo.Michael Wolff - 1987 - Science in Context 1 (2):215-256.
    The ArgumentOne of the earliest arguments for Copernicanism was a widely accepted fact: that on a horizontal plane a body subject to no external resistance can be set in motion by the smallest of all possible forces. This fact was contrary to Aristotelian physics; but it was a physical argument (by abduction) for the possibility of the Copernican world system. For it would be explained if that system was true or at least possible.Galileo argued: only nonviolent motions can be caused (...)
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  • Gravitating towards stability: Guidobaldo's Aristotelian-Archimedean synthesis.Maarten Van Dyck - 2006 - History of Science 44 (4):373-407.
  • El encuentro entre René Descartes e Isaac Beeckman : El tratado hidrostático : The Hydrostatic Treatise).Jorge Moreno - 2014 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 29 (1):149.
    El tratado hidrostático fue uno de los primeros textos de Descartes, fruto de su decisivo encuentro con Isaac Beeckman. En este artículo, analizaremos cómo fue concebido y los motivos que llevaron a Descartes a cuestionar alguno de los aspectos fundamentales de la física matemática de Beeckman. Este episodio está íntimamente relacionado con la independencia de las disciplinas matemáticas y su aplicación a cuestiones propias de la filosofía natural.Descartes’ hydrostatic treatise was one of his first text, fruit of his crucial meeting (...)
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  • Natural Philosophy and Mathematics in Sixteenth-Century Bologna.David A. Lines - 2006 - Science & Education 15 (2-4):131-150.
  • De-idealizing Disagreement, Rethinking Relativism.Katherina Kinzel & Martin Kusch - 2018 - Humana Mente 26 (1):40-71.
    Relativism is often motivated in terms of certain types of disagreement. In this paper, we survey the philosophical debates over two such types: faultless disagreement in the case of gustatory conflict, and fundamental disagreement in the case of epistemic conflict. Each of the two discussions makes use of a implicit conception of judgement: brute judgement in the case of faultless disagreement, and rule-governed judgement in the case of fundamental disagreement. We show that the prevalent accounts work with unreasonably high levels (...)
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  • Transposing the Merton Thesis: Apostolic Spirituality and the Establishment of the Jesuit Scientific Tradition.Steven J. Harris - 1989 - Science in Context 3 (1):29-65.
    The ArgumentDespite more than fifty years of debate on the Merton thesis, there have been few attempts to substantiate Merton's argument through empirically based comparative studies. This study of the Jesuit scientific tradition is intended to serve as a test of some of Merton's central claims.Jesuit science is remarkable for its scope and longevity, and is distinguished by its markedly empirical and utilitarian orientation. In this paper I examine the ideological structure of the Society of Jesus and find at its (...)
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  • Recherches galiléennes.Egidio Festa, Denis Savoie & Marta Spranzi - 1995 - Revue de Synthèse 116 (1):133-150.
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  • The Discourse of Pious Science.Rivka Feldhay & Michael Heyd - 1989 - Science in Context 3 (1):109-142.
    The ArgumentThis paper, an attempt at an institutional history of ideas, compares patterns of reproduction of scientific knowledge in Catholic and Protestant educational institutions. Franciscus Eschinardus'Cursus Physico-Mathematicusand Jean-Robert Chouet'sSyntagma Physicumare examined for the strategies which allow for accommodation of new contents and new practices within traditional institutional frameworks. The texts manifest two different styles of inquiry about nature, each adapted to the peculiar constraints implied by its environment. The interpretative drive of Eschinardus and a whole group of “modern astronomers” is (...)
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  • EINSTEIN’S 1905 ‘REVOLUTIONARY’ PAPER ON QUANTA AS A MANIFEST AND DETAILED EXAMPLE OF A ‘PRINCIPLE THEORY’.Drago Antonino - 2014 - Advances in Historical Studies (No.3).
    In the last times some scholars tried to characterize Einstein’s distinction between ‘constructive’ – i.e. deductive - theories and ‘principle’ theories, the latter ones being preferred by Einstein. Here this distinction is qualified by an accurate inspection on past physical theories. Some previous theories are surely non-deductive theories. By a mutual comparison of them a set of features - mainly the arguing according to non-classical logic - are extracted. They manifest a new ideal model of organising a theory. Einstein’s paper (...)
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