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  1. The Physical Astronomy of Levi ben Gerson.Bernard R. Goldstein - 1997 - Perspectives on Science 5 (1):1-30.
    Levi ben Gerson (1288–1344) was a medieval astronomer who responded in an unusual way to the Ptolemaic tradition. He significantly modified Ptolemy’s lunar and planetary theories, in part by appealing to physical reasoning. Moreover, he depended on his own observations, with instruments he invented, rather than on observations he found in literary sources. As a result of his close attention to the variation in apparent planetary sizes, a subject entirely absent from the Almagest, he discovered a new phenomenon of Mars (...)
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  • The Copernican Question Revisited: A Reply to Noel Swerdlow and John Heilbron.Robert S. Westman - 2013 - Perspectives on Science 21 (1):100-136.
    In separate reviews of The Copernican Question published in the Summer 2012 issue of this journal, Noel Swerdlow and John Heilbron find little that meets their approval while failing to provide readers with a full and accurate summary of the book’s major claims and arguments.* The reviewers engage in an exercise in deconstructive surgery, essentially breaking down and reconstituting the work into separate studies. Swerdlow, who devotes most of his twenty-five page treatment to chapter 3 (with brief side-glances at the (...)
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  • (1 other version)Kepler's move from.Bernard R. Goldstein & Giora Hon - 2005 - Perspectives on Science 13 (1):74-111.
    : This study of the concept of orbit is intended to throw light on the nature of revolutionary concepts in science. We observe that Kepler transformed theoretical astronomy that was understood in terms of orbs [Latin: orbes] (spherical shells to which the planets were attached) and models (called hypotheses at the time), by introducing a single term, orbit [Latin: orbita], that is, the path of a planet in space resulting from the action of physical causes expressed in laws of nature. (...)
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  • Kuhn, incommensurability, and cognitive science.Peter Barker - 2001 - Perspectives on Science 9 (4):433-462.
    : This paper continues my application of theories of concepts developed in cognitive psychology to clarify issues in Kuhn's mature account of scientific change. I argue that incommensurability is typically neither global nor total, and that the corresponding form of scientific change occurs incrementally. Incommensurability can now be seen as a local phenomenon restricted to particular points in a conceptual framework represented by a set of nodes. The unaffected parts in the framework constitute the basis for continued communication between the (...)
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  • Constructing copernicus.Peter Barker - 2002 - Perspectives on Science 10 (2):208-227.
    : This paper offers my current view of a joint research project, with Bernard R. Goldstein, that examines Kepler's unification of physics and astronomy. As an organizing theme, I describe the extent to which the work of Kepler led to the appearance of the form of Copernicanism that we accept today. In the half century before Kepler's career began, the understanding of Copernicus and his work was significantly different from the modern one. In successive sections I consider the modern conception (...)
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  • Commentary 01 on Goldstein 1980.Bernard R. Goldstein - 2008 - Centaurus 50 (1-2):184-188.
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  • (1 other version)Kepler's Move from Orbs to Orbits: Documenting a Revolutionary Scientific Concept.Bernard R. Goldstein & Giora Hon - 2005 - Perspectives on Science 13 (1):74-111.
    This study of the concept of orbit is intended to throw light on the nature of revolutionary concepts in science. We observe that Kepler transformed theoretical astronomy that was understood in terms of orbs [Latin: orbes] and models , by introducing a single term, orbit [Latin: orbita], that is, the path of a planet in space resulting from the action of physical causes expressed in laws of nature. To demonstrate the claim that orbit is a revolutionary concept we pursue three (...)
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  • Realism and instrumentalism in sixteenth century astronomy: A reappraisal.Peter Barker & Bernard R. Goldstein - 1998 - Perspectives on Science 6 (3):232-258.
    : We question the claim, common since Duhem, that sixteenth century astronomy, and especially the Wittenberg interpretation of Copernicus, was instrumentalistic rather than realistic. We identify a previously unrecognized Wittenberg astronomer, Edo Hildericus (Hilderich von Varel), who presents a detailed exposition of Copernicus's cosmology that is incompatible with instrumentalism. Quotations from other sixteenth century astronomers show that knowledge of the real configuration of the heavens was unattainable practically, rather than in principle. Astronomy was limited to quia demonstrations, although demonstration propter (...)
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  • The place of Edward Gresham's Astrostereon(1603) in the discussion on cosmology and the Bible in the early modern period.Barbara Bienias - 2020 - British Journal for the History of Science 53 (4):417-442.
    This article situates Edward Gresham'sAstrostereon, or A Discourse of the Falling of the Planet(1603), a little-known English astronomical treatise, in the context of the cosmo-theological debate on the reconciliation of heliocentrism with the Bible, triggered by the publication of Nicholas Copernicus'sDe revolutionibus orbium coelestiumin 1543. Covering the period from the appearance of the ‘First Account’ of Copernican views presented in Georg Joachim Rheticus'sNarratio Prima(1540) to the composition ofAstrostereonin 1603, this paper places Edward Gresham's commentary and exegesis against the background of (...)
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  • Encyclopedia of the Scientific Revolution: From Copernicus to Newton.Wilbur Applebaum (ed.) - 2008 - Taylor & Francis US.
    First Published in 2008. Routledge is an imprint of Taylor & Francis, an informa company.
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  • Jesuit Science After Galileo: The Cosmology of Gabriele Beati.Kerry V. Magruder - 2009 - Centaurus 51 (3):189-212.
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