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  1. Compendium of the foundations of classical statistical physics.Jos Uffink - 2006 - In J. Butterfield & J. Earman (eds.), Handbook of the philosophy of physics. Kluwer Academic Publishers.
    Roughly speaking, classical statistical physics is the branch of theoretical physics that aims to account for the thermal behaviour of macroscopic bodies in terms of a classical mechanical model of their microscopic constituents, with the help of probabilistic assumptions. In the last century and a half, a fair number of approaches have been developed to meet this aim. This study of their foundations assesses their coherence and analyzes the motivations for their basic assumptions, and the interpretations of their central concepts. (...)
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  • Von L. Boltzmann bis J. J. Thomson: die Versuche einer mechanischen Grundlegung der Thermodynamik (1866?1890).Günter Bierhalter - 1992 - Archive for History of Exact Sciences 44 (1):25-75.
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  • Bluff Your Way in the Second Law of Thermodynamics.Jos Uffink - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (3):305-394.
    The aim of this article is to analyse the relation between the second law of thermodynamics and the so-called arrow of time. For this purpose, a number of different aspects in this arrow of time are distinguished, in particular those of time-reversal (non-)invariance and of (ir)reversibility. Next I review versions of the second law in the work of Carnot, Clausius, Kelvin, Planck, Gibbs, Caratheodory and Lieb and Yngvason, and investigate their connection with these aspects of the arrow of time. It (...)
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  • Wilhelm Ostwald’s energetics 2: energetic theory and applications, part I. [REVIEW]R. J. Deltete - 2007 - Foundations of Chemistry 9 (3):265-316.
    This is the second of a series of essays on the development and reception of Wilhelm Ostwald’s energetics. The first essay described the chemical origins of Ostwald’s interest in the energy concept and his motivations for seeking a comprehensive science of energy. The present essay and the next discuss his various attempts, beginning in 1891 and extending over almost 3 years, to develop a consistent and coherent energetic theory. A final essay will consider reactions to this work and Ostwald’s replies, (...)
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  • Die Ueberwindung des wissenschaftlichen Materialismus. [REVIEW]Wilhelm Ostwald - 1895 - Ancient Philosophy (Misc) 6:610.
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  • (1 other version)Boltzmann's H-theorem, its discontents, and the birth of statistical mechanics.Harvey R. Brown, Wayne Myrvold & Jos Uffink - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (2):174-191.
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  • Wilhelm Ostwald’s Energetics 1: Origins and Motivations. [REVIEW]R. J. Deltete - 2006 - Foundations of Chemistry 9 (1):3-56.
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  • The Origins of Time-Asymmetry in Thermodynamics: The Minus First Law.Harvey R. Brown & Jos Uffink - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (4):525-538.
    This paper investigates what the source of time-asymmetry is in thermodynamics, and comments on the question whether a time-symmetric formulation of the Second Law is possible.
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  • Helm and Boltzmann: Energetics at the lübeck naturforscherversammlung.Robert Deltete - 1999 - Synthese 119 (1-2):45-68.
    The energetics controversy is understood variously as energy vs. atoms, thermodynamics vs. statistical mechanics, phenomenalism vs. realism, equations vs. pictures, and especially Ostwald vs. Boltzmann. It is generally thought that at Lübeck in 1895 Boltzmann and Planck demolished energetics, but while its momentum was slowed, energetics in one or more of the above senses still retained supporters as late as the great physics conference at the St. Louis World’s Fair in 1904. Indeed, after Ostwald himself abandoned it in 1908, Ernst (...)
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  • Philosophical objections to the kinetic theory.John Nyhof - 1988 - British Journal for the Philosophy of Science 39 (1):81-109.
    Towards the end of the 19th century there were those who wished to see the kinetic theory abandoned. This paper attempts to show that this reaction was primarily due to philosophical objections rather than the result of scientific difficulties encountered by the kinetic theory. First the relevant philosophical background is examined as well as the relation between the kinetic theory and thermodynamics. Next the scientific difficulty known as the specific heats ratio anomaly is discussed and finally Boltzmann's philosophy of science (...)
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  • (1 other version)Philosophy and the kinetic theory of gases.Henk W. de Regt - 1996 - British Journal for the Philosophy of Science 47 (1):31-62.
    This article examines the role of philosophy in the development of the kinetic theory of gases. Two opposing accounts of this role, by Peter Clark and John Nyhof, are discussed and criticized. Contrary to both accounts, it is argued that philosophical views of scientists can fundamentally influence the results of their scientific work. This claim is supported by a detailed analysis of the philosophical views of Maxwell and Boltzmann, and of their work on the kinetic theory, especially concerning the so-called (...)
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  • The British Journal for the Philosophy of Science | Vol 73, No 3.Ernan McMullin - 1996
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  • (1 other version)Le mécanisme et l'expérience.A. M. Léchalas & H. Poincaré - 1894 - Revue de Métaphysique et de Morale 2 (2):197 - 198.
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  • Mechanical Explanation at the End of the Nineteenth Century.Martin J. Klein - 1973 - Centaurus 17 (1):58-82.
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  • The problem of time's arrow historico-critically reexamined.Roberto Torretti - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (4):732-756.
    Responding to Hasok Chang’s vision of the history and philosophy of science as the continuation of science by other means, I illustrate the methods of HPS and their utility through a historico-critical examination of the problem of “time’s arrow‘, that is to say, the problem posed by the claim by Boltzmann and others that the temporal asymmetry of many physical processes and indeed the very possibility of identifying each of the two directions we distinguish in time must have a ground (...)
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  • Boltzmann's work in statistical physics.Jos Uffink - 2008 - Stanford Encyclopedia of Philosophy.
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