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  1. 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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  • 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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  • The Motives Behind Cantor’s Set Theory: Physical, biological and philosophical questions.José Ferreirós - 2004 - Science in Context 17 (1/2):1–35.
    The celebrated “creation” of transfinite set theory by Georg Cantor has been studied in detail by historians of mathematics. However, it has generally been overlooked that his research program cannot be adequately explained as an outgrowth of the mainstream mathematics of his day. We review the main extra-mathematical motivations behind Cantor's very novel research, giving particular attention to a key contribution, the Grundlagen (Foundations of a general theory of sets) of 1883, where those motives are articulated in some detail. Evidence (...)
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  • Helmholtz and energy conservation reconsidered: Kenneth L. Caneva: Helmholtz and the conservation of energy: contexts of creation and reception. Cambridge: The MIT Press, 2021, xix+734pp, $125 HB.Helge Kragh - 2022 - Metascience 31 (1):21-24.
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  • On the Concept of Energy: How Understanding its History can Improve Physics Teaching.Ricardo Lopes Coelho - 2009 - Science & Education 18 (8):961-983.
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  • Mechanical materialism and modern physics.Boris M. Hessen - 2021 - Science in Context 34 (1):155-186.
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  • 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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  • Philosophy and the Sciences After Kant.Michela Massimi - 2009 - Royal Institute of Philosophy Supplement 65:275-311.
    On 11thOctober 2007, at the first international conference on Integrated History and Philosophy of Science (&HPS1) hosted by the Center for Philosophy of Science in Pittsburgh, Ernan McMullin (University of Notre Dame) portrayed a rather gloomy scenario concerning the current relationship between history and philosophy of science (HPS), on the one hand, and mainstream philosophy, on the other hand, as testified by a significant drop in the presence of HPS papers at various meetings of the American Philosophical Association (APA).
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  • (1 other version)Rezensionen. [REVIEW]Hans-Henning Walter, Ingrid Kästner, Dieter Hoffmann, Klaus Bergdolt, Susanne Hahn, Hedwig Herold-Schmidt, Thomas Junker, Martin Guntau, Sybille Gerstengarbe, Annette Vogt, Rainer Schimming, Klaus Hentschel, Andreas Kleinert, Günther Oestmann & Renate Tobies - 1999 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 7 (1):176-192.
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  • Hidden Entities and Experimental Practice: Renewing the Dialogue Between History and Philosophy of Science.Theodore Arabatzis - 2011 - Boston Studies in the Philosophy of Science 263:125-139.
    In this chapter I investigate the prospects of integrated history and philosophy of science, by examining how philosophical issues raised by “hidden entities”, entities that are not accessible to unmediated observation, can enrich the historical investigation of their careers. Conversely, I suggest that the history of those entities has important lessons to teach to the philosophy of science. Hidden entities have played a crucial role in the development of the natural sciences. Despite their centrality to past scientific practice, however, several (...)
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  • Romanticism, Natural Philosophy, and the Sciences: A Review and Bibliographic Essay.Trevor H. Levere - 1996 - Perspectives on Science 4 (4):463-488.
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  • Energy, Metaphysics, and Space: Ernst Mach’s Interpretation of Energy Conservation as the Principle of Causality.Luca Guzzardi - 2014 - Science & Education 23 (6):1269-1291.
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  • Energy: Learning from the Past.Fabio Bevilacqua - 2014 - Science & Education 23 (6):1231-1243.
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  • On the Concept of Energy: Eclecticism and Rationality.Ricardo Lopes Coelho - 2014 - Science & Education 23 (6):1361-1380.
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  • Physics and Naturphilosophie: A Reconnaissance.Kenneth L. Caneva - 1997 - History of Science 35 (1):35-106.
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  • (1 other version)RezensionenReviews.Renate Tobies, Günther Oestmann, Andreas Kleinert, Klaus Hentschel, Rainer Schimming, Annette Vogt, Sybille Gerstengarbe, Martin Guntau, Thomas Junker, Hedwig Herold-Schmidt, Susanne Hahn, Klaus Bergdolt, Dieter Hoffmann, Ingrid Kästner & Hans-Henning Walter - 1999 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 7 (1):176-192.
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