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  1. Calibrating the theory of model mediated measurement: metrological extension, dimensional analysis, and high pressure physics.Mahmoud Jalloh - 2024 - European Journal for Philosophy of Science 14 (40):1-32.
    I argue that dimensional analysis provides an answer to a skeptical challenge to the theory of model mediated measurement. The problem arises when considering the task of calibrating a novel measurement procedure, with greater range, to the results of a prior measurement procedure. The skeptical worry is that the agreement of the novel and prior measurement procedures in their shared range may only be apparent due to the emergence of systematic error in the exclusive range of the novel measurement procedure. (...)
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  • On consensus and stability in science.Brian S. Baigrie & J. N. Hattiangadi - 1992 - British Journal for the Philosophy of Science 43 (4):435-458.
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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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  • Approximation versus Idealization: The Kepler-Newton-Case.Hans Rott - unknown
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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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  • (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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