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  1. Les Atomes: a landmark book in chemistry. [REVIEW]Gary D. Patterson - 2010 - Foundations of Chemistry 12 (3):223-233.
    There have been occasions when the publication of a particular book has had a singular impact on the conceptual world of the chemist. Sometimes the publication occurs near the beginning of a major change in discourse, and sometimes more near the end. Jean Perrin published Les Atomes in 1913 as the culmination of a century-long controversy over the size and physical reality of atoms and molecules. After its publication almost all chemists and physicists agreed that atoms and molecules of the (...)
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  • The impossible process: Thermodynamic reversibility.John D. Norton - 2016 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 55:43-61.
    Standard descriptions of thermodynamically reversible processes attribute contradictory properties to them: they are in equilibrium yet still change their state. Or they are comprised of non-equilibrium states that are so close to equilibrium that the difference does not matter. One cannot have states that both change and no not change at the same time. In place of this internally contradictory characterization, the term “thermodynamically reversible process” is here construed as a label for a set of real processes of change involving (...)
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  • How analogy helped create the new science of thermodynamics.John D. Norton - 2022 - Synthese 200 (4):1-42.
    Sadi Carnot’s 1824 Reflections on the Motive Power of Fire created the new science of thermodynamics. It succeeded in its audacious goal of finding a very general theory of the efficiency of heat engines, by introducing and exploiting the strange and unexpected notion of a thermodynamically reversible process. The notion is internally contradictory. It requires the states of these processes to be both in unchanging equilibrium, with a perfect balance of driving forces, while also changing. The work of Sadi’s father, (...)
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  • The thermodynamic and phylogenetic foundations of human wickedness.P. R. Masani - 1985 - Zygon 20 (3):283-320.
  • On the Concept of Energy: How Understanding its History can Improve Physics Teaching.Ricardo Lopes Coelho - 2009 - Science & Education 18 (8):961-983.
  • On the Energy Concept Problem: Experiments and Interpretations.R. Lopes Coelho - 2020 - Foundations of Science 26 (3):607-624.
    The principle of conservation of energy tells us that ‘energy can neither be created nor destroyed but only transformed’. The validity of the principle is without question. The problem is the concept. Contemporary physicists have asserted that we do not know what energy is. We find, however, 19th century physicists, contemporary physicists and historians of science who converge on the point: Mayer and Joule discovered energy. Therefore, we do not know what energy is, but we know these authors discovered it. (...)
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  • Thermodynamics and Mechanical Equivalent of Heat.Nahum Kipnis - 2014 - Science & Education 23 (10):2007-2044.
    This paper is the first part of a three-part project ‘How the principle of energy conservation evolved between 1842 and 1870: the view of a participant’. This paper aims at showing how the new ideas of Mayer and Joule were received, what constituted the new theory in the period under study, and how it was supported experimentally. A connection was found between the new theory and thermodynamics which benefited both of them. Some considerations are offered about the desirability of taking (...)
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  • Work for the workers: Advances in engineering mechanics and instruction in France, 1800–1830.I. Grattan-Guinness - 1984 - Annals of Science 41 (1):1-33.
    An account is given of the emergence of the concept of work as a basic component of mechanics. It was largely an achievement of engineer savants in France during the Bourbon Restoration , with Navier, Coriolis and Poncelet playing the major roles. Some aspects of the eighteenth-century prehistory are described, and also concurrent developments in French engineering. The principal problem areas were friction, hydraulics, machine performance and ergonomics, and especially in the last context the developments became involved with social and (...)
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  • Energy and entropy as real morphisms for addition and order.J. J. Duistermaat - 1968 - Synthese 18 (4):327 - 393.
  • Vasiliev's paraconsistent logic interpreted by means of the dual role played by the double negation law.Antonino Drago - 2001 - Journal of Applied Non-Classical Logics 11 (3):281-294.
    I prove that the three basic propositions of Vasiliev's paraconsistent logic have a semantic interpretation by means of the intuitionist logic. The interpèretation is confirmed by amens of the da Costa's model of Vasiliev's paraconsistent logic.
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  • Il ruolo del sistema periodico degli elementi nel caratterizzare la chimica classica come teoria scientifica.Antonio Drago - 2014 - Epistemologia 37 (1):37-57.
  • Joule’s Experiment as an Event Triggering a Formalization of a Baconian Science Till Up to an Alternative Theory to Newton’s One.Antonino Drago - 2020 - Foundations of Science 26 (3):585-605.
    A re-visitation of Joule’s experiment motivates a critical analysis of thermodynamic notions: heat, total energy, first principle, organization of a scientific theory, its relationships with logic and mathematics. A rational re-construction of thermodynamics is suggested according to the model of a problem-based organization, that Sadi Carnot applied to his formulation. The new formulation accomplishes the long time theoretical process started by Joule’s experiment within physicists community's collective mind, i.e. the process of exiting out Baconian science for suggesting a first theory (...)
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  • On the Concept of Energy: Eclecticism and Rationality.Ricardo Lopes Coelho - 2014 - Science & Education 23 (6):1361-1380.
  • A controversy about chance and the origins of life: thermodynamicist Ilya Prigogine replies to molecular biologist Jacques Monod.Emanuel Bertrand - 2023 - History and Philosophy of the Life Sciences 45 (2):1-23.
    The ancient, interlinked questions about the role of chance in the living world and the origins of life, gained new relevance with the development of molecular biology in the twentieth century. In 1970, French molecular biologist Jacques Monod, joint winner of the 1965 Nobel Prize in Physiology or Medicine, devoted a popular book on modern biology and its philosophical implications to these questions, which was quickly translated into English as _Chance and Necessity_. Nine years later, Belgian thermodynamicist Ilya Prigogine, 1977 (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • Pluralism in Logic: The Square of Opposition, Leibniz'Principle of Sufficient Reason and Markov's Principle.Antonino Drago - 2012 - In J.-Y. Beziau & Dale Jacquette (eds.), Around and Beyond the Square of Opposition. Birkhäuser. pp. 175--189.
  • Historical and Conceptual Foundations of Information Physics.Anta Javier - 2021 - Dissertation, Universitat de Barcelona
    The main objective of this dissertation is to philosophically assess how the use of informational concepts in the field of classical thermostatistical physics has historically evolved from the late 1940s to the present day. I will first analyze in depth the main notions that form the conceptual basis on which 'informational physics' historically unfolded, encompassing (i) different entropy, probability and information notions, (ii) their multiple interpretative variations, and (iii) the formal, numerical and semantic-interpretative relationships among them. In the following, I (...)
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  • Compendium of the foundations of classical statistical physics.Jos Uffink - 2005 - In Jeremy Butterfield & John Earman (eds.), Handbook of the Philosophy of Physics. Elsevier.
    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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