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Rethinking the Scientific Revolution

Cambridge University Press (2000)

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  1. Modelos interpretativos del corpus newtoniano: Tradiciones historiográficas del siglo XX.Sergio H. Orozco-Echeverri - 2007 - Estudios de Filosofía (Universidad de Antioquia) 35:227-256.
    Este artículo pretende establecer los límites y alcances de las principales interpretaciones de Newton en el siglo XX, resaltando, de un lado, la evidencia textual de la que disponían los intérpretes y, de otro, las corrientes filosóficas y epistemológicas que definen los rasgos principales de sus interpretaciones. Se verá que el rechazo al positivismo no es condición suficiente para establecer una interpretación adecuada y que, de la mano del fortalecimiento de la investigación a partir de los manuscritos de Newton, se (...)
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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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  • El dominio cartesiano de la naturaleza: Descartes y el desencantamiento del mundo.Sergio García Rodríguez - 2022 - Pensamiento 78 (298 S. Esp):801-819.
    Este artículo analiza las estrategias utilizadas por Descartes para «desencantar el mundo», a fin de suprimir los elementos herméticos de las explicaciones científicas cartesianas y someter todos los fenómenos naturales a nuestro control. Para ello, apelo a la distinción entre elementos causales —cualidades ocultas— y sus efectos —efectos admirables— como las dos dimensiones que deben ser incorporadas bajo las explicaciones científicas para garantizar el cálculo de los fenómenos y su dominio.
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  • Inventing scientific method: The privilege system as a model for scientific knowledge-production.Marius Buning - 2014 - Intellectual History Review 24 (1):59-70.
    This paper argues that the development of early-modern science was strongly influenced by prevailing legal practices.1 This argument goes back to the work of Barbara Shapiro, who explored in a numb...
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  • Naturalizing Badiou: mathematical ontology and structural realism.Fabio Gironi - 2014 - New York: Palgrave-Macmillan.
    This thesis offers a naturalist revision of Alain Badiou’s philosophy. This goal is pursued through an encounter of Badiou’s mathematical ontology and theory of truth with contemporary trends in philosophy of mathematics and philosophy of science. I take issue with Badiou’s inability to elucidate the link between the empirical and the ontological, and his residual reliance on a Heideggerian project of fundamental ontology, which undermines his own immanentist principles. I will argue for both a bottom-up naturalisation of Badiou’s philosophical approach (...)
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  • Why was there no controversy over Life in the Scientific Revolution?Charles T. Wolfe - 2010 - In Victor Boantza Marcelo Dascal (ed.), Controversies in the Scientific Revolution. John Benjamins.
    Well prior to the invention of the term ‘biology’ in the early 1800s by Lamarck and Treviranus, and also prior to the appearance of terms such as ‘organism’ under the pen of Leibniz in the early 1700s, the question of ‘Life’, that is, the status of living organisms within the broader physico-mechanical universe, agitated different corners of the European intellectual scene. From modern Epicureanism to medical Newtonianism, from Stahlian animism to the discourse on the ‘animal economy’ in vitalist medicine, models (...)
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