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  1. Thermodynamic deduction versus quantum revolution: The failure of Richardson's theory of the photoelectric effect.Shaul Katzir - 2006 - Annals of Science 63 (4):447-469.
    Summary Between 1911 and 1914, Owen Richardson formulated a theory of photoelectricity based on thermodynamics and statistical reasoning. Although this theory succeeded in accounting for most of the relevant phenomena and despite the lack of competing causal or descriptive accounts of the phenomena, it failed to attract other physicists. This paper seeks the reasons for the neglect of this theory in contemporary cultures of photoelectric research. Four main causes of neglect are identified: the relatively high number and the nature of (...)
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  • The Construction and Analysis of a Science Story: A Proposed Methodology.Stephen Klassen - 2009 - Science & Education 18 (3-4):401-423.
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  • The Message of the Quantum.Anton Zeilinger - 2005 - Nature 438 (743).
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  • Quantum theory at the crossroads: reconsidering the 1927 Solvay conference.Guido Bacciagaluppi - 2007 - New York: Cambridge University Press. Edited by Antony Valentini.
    The 1927 Solvay conference was perhaps the most important meeting in the history of quantum theory. Contrary to popular belief, the interpretation of quantum theory was not settled at this conference, and no consensus was reached. Instead, a range of sharply conflicting views were presented and extensively discussed, including de Broglie's pilot-wave theory, Born and Heisenberg's quantum mechanics, and Schrödinger's wave mechanics. Today, there is no longer an established or dominant interpretation of quantum theory, so it is important to re-evaluate (...)
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  • The nature of light and twentieth century experimental physics.Sue Sulcs - 2003 - Foundations of Science 8 (4):365-391.
    In the popular literature of physics the electromagnetic field isoften treated as though it has an intrinsic particle nature. When thetheory is examined carefully, quantum theory only makes the weakerrequirement that the emission and absorption of light are restricted todiscrete amounts of energy. There are very few realizable experiments inoptics for which the classical Maxwell theory and the quantum theorymake a different prediction. I discuss some of these experiments with anemphasis on the distinction between what the experiments tell us aboutthe (...)
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