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  1. The Transmission of Science.R. G. A. Dolby - 1977 - History of Science 15 (1):1-43.
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  • Planck's principle and jeans's conversion.Geoffrey Gorham - 1991 - Studies in History and Philosophy of Science Part A 22 (3):471-497.
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  • James Jeans and radiation theory.Rob Hudson - 1989 - Studies in History and Philosophy of Science Part A 20 (1):57-76.
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  • What Have the Historians of Quantum Physics Ever Done for Us?Massimiliano Badino - 2016 - Centaurus 58 (4):327-346.
    Once one of the main protagonists of history of science, the historiography on quantum theory has recently gone through a process of reconfiguration of methods, research questions and epistemological framework. In this paper, I review the recent developments and propose some reflections on its future evolution.
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  • Quantum Historiographv and the Archive for History of Quantum Physics.John L. Heilbron - 1968 - History of Science 7 (1):90-111.
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  • (1 other version)The determination of theory by evidence: The case for quantum discontinuity, 1900–1915.John D. Norton - 1993 - Synthese 97 (1):1 - 31.
    The thesis that observation necessarily fails to determine theory is false in the sense that observation can provide overwhelming evidence for a particular theory or even a hypothesis within the theory. The saga of quantum discontinuity illustrates the power of evidence to determine theory and shows how that power can be underestimated by inadequate caricatures of the evidential case. That quantum discontinuity can save the phenomena of black body radiation is the widely known result, but it leaves open the possibilities (...)
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  • Classical physics and early quantum theory: A legitimate case of theoretical underdetermination.Robert G. Hudson - 1997 - Synthese 110 (2):217-256.
    In 1912, Henri Poincaré published an argument which apparently shows that the hypothesis of quanta is both necessary and sufficient for the truth of Planck''s experimentally corroborated law describing the spectral distribution of radiant energy in a black body. In a recent paper, John Norton has reaffirmed the authority of Poincarés argument, setting it up as a paradigm case in which empirical data can be used to definitively rule out theoretical competitors to a given theoretical hypothesis. My goal is to (...)
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  • Henri Poincaré's philosophy of science.David Stump - 1989 - Studies in History and Philosophy of Science Part A 20 (3):335-363.
    Poincare’s arguments for his thesis of the conventionality of metric depend on a relationalist program for dynamics, not on any general philosophical interpretation of science. I will sketch Poincare’s development of the relationalist program and show that his arguments for the conventionality of metric do not depend on any global strategies such as a general empiricism or Duhemian underdetermination arguments. Poincare’s theory of space, while empirically false, is more philosophically sophisticated than his critics have claimed.
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  • Poincare's Silence and Einstein's Relativity: The Role of Theory and Experiment in Poincaré's Physics.Stanley Goldberg - 1970 - British Journal for the History of Science 5 (1):73-84.
    It is a matter of record that Henri Poincaré never responded publicly to Einstein's Special Theory of Relativity (RT). Since almost no private papers of Poincaré are available, his attitude toward Einstein's work and his silence on that score become somewhat of a mystery. It is almost certain that Poincaré knew of Einstein's work in RT. First, he was fluent in German, having learned it as a young man when the Germans occupied his home town of Nancy in 1870. Second, (...)
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  • The Witches' Sabbath: The First International Solvay Congress in Physics.Diana Kormos Barkan - 1993 - Science in Context 6 (1):59-82.
    The ArgumentThis paper is about the context of Albert Einstein's concerns at the time of a most intense intellectual effort — his own and that of a small group of scientists concerned with classical quantum theory. I describe contemporaneous interactions and differing views about the prospects for and the significance of the First Solvay Congress of 1911 as voiced by major participants. There are two axes around which the paper evolves: the Einstein-Nernst-Lorentz dialogue and the public institutional creation of the (...)
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  • Some reactions to Planck's law, 1900–1914.Elizabeth Garber - 1976 - Studies in History and Philosophy of Science Part A 7 (2):89-126.
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