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  1. Deciphering the physical meaning of Gibbs’s maximum work equation.Robert T. Hanlon - 2024 - Foundations of Chemistry 26 (1):179-189.
    J. Willard Gibbs derived the following equation to quantify the maximum work possible for a chemical reaction$${\text{Maximum work }} = \, - \Delta {\text{G}}_{{{\text{rxn}}}} = \, - \left( {\Delta {\text{H}}_{{{\text{rxn}}}} {-}{\text{ T}}\Delta {\text{S}}_{{{\text{rxn}}}} } \right) {\text{ constant T}},{\text{P}}$$ Maximum work = - Δ G rxn = - Δ H rxn - T Δ S rxn constant T, P ∆Hrxn is the enthalpy change of reaction as measured in a reaction calorimeter and ∆Grxn the change in Gibbs energy as measured, if (...)
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  • “Astonishing Successes” and “Bitter Disappointment”: The Specific Heat of Hydrogen in Quantum Theory.Clayton A. Gearhart - 2010 - Archive for History of Exact Sciences 64 (2):113-202.
    The specific heat of hydrogen gas at low temperatures was first measured in 1912 by Arnold Eucken in Walther Nernst’s laboratory in Berlin, and provided one of the earliest experimental supports for the new quantum theory. Even earlier, Nernst had developed a quantum theory of rotating diatomic gas molecules that figured in the discussions at the first Solvay conference in late 1911. Between 1913 and 1925, Albert Einstein, Paul Ehrenfest, Max Planck, Fritz Reiche, and Erwin Schrödinger, among many others, attempted (...)
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  • Simply a matter of chemistry? The Nobel Prize for 1920.Diana Kormos Barkan - 1994 - Perspectives on Science 2 (4):357-395.
    When, how, and by whom scientific knowledge is recognized with highest honors is illustrated by this avowedly atypical episode involving the Nobel Prize awarded to Walther Nernst for 1920. Mine is not a postmortem “wie es eigentlich gewesen” evaluation of the cognitive legitimation of his 1905 third law of thermodynamics, of whether the debates surrounding his work were justified, or whether the prize was merited. Rather, it is an admittedly close reading of many new and some old sources, an intrusive (...)
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  • A simplified genesis of quantum mechanics.Olivier Darrigol - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (2):151-166.
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  • A simplified genesis of quantum mechanics.Olivier Darrigol - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (2):151-166.
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  • Unification and the Quantum Hypothesis in 1900–1913.Molly Kao - 2015 - Philosophy of Science 82 (5):1200-1210.
    In this article, I consider some of the first appearances of a hypothesis of quantized energy between the years 1900 and 1913 and provide an analysis of the nature of the unificatory power of this hypothesis in a Bayesian framework. I argue that the best way to understand the unification here is in terms of informational relevance: on the assumption of the quantum hypothesis, phenomena that were previously thought to be unrelated turned out to yield information about one another on (...)
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  • Old Evidence in the Development of Quantum Theory.Molly Kao - 2018 - Philosophy of Science 85 (1):126-143.
    In this article, I evaluate Hartmann and Fitelson’s solution to the Bayesian problem of old evidence by applying it to an early stage in the development of quantum theory. I argue that this case study suggests that whether old evidence is anomalous affects its support for a hypothesis. I introduce and defend two formal assumptions to accommodate this idea. This analysis not only explicates an important historical example, but it also shows that the given solution captures the intuitive importance of (...)
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  • Evaluating the Quantum Postulate in the Context of Pursuit.Molly M. Kao - unknown
    The purpose of this dissertation is to contribute to our understanding of scientific theory pursuit by providing a detailed case study on the development of early quantum theory, from roughly 1900 to 1916. I first elaborate on why this case should be considered an instance of piecemeal pursuit by presenting the historical quantum conjectures that were being used in different contexts. These conjectures gave varied interpretations of quantization. By comparing these conjectures, I identify a general quantum postulate that captures the (...)
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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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  • 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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  • Eine Fehlinterpretation mit Folgen: Albert Einstein und der Welle-Teilchen Dualismus.Alexander Bach - 1989 - Archive for History of Exact Sciences 40 (2):173-206.
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