13 found
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  1.  35
    Teaching Energy Informed by the History and Epistemology of the Concept with Implications for Teacher Education.Manuel Bächtold & Muriel Guedj - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 211-243.
    In this article, we put forward a new strategy for teaching the concept of energy. In the first section, we discuss how the concept is currently treated in educational programmes at primary and secondary level (taking the case of France), the learning difficulties that arise as well as the main teaching strategies presented in science education literature. In the second section, we argue that due to the complexity of the concept of energy, rethinking how it is taught should involve teacher (...)
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  2.  97
    Five Formulations of the Quantum Measurement Problem in the Frame of the Standard Interpretation.Manuel Bächtold - 2008 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 39 (1):17-33.
    The aim of this paper is to give a systematic account of the so-called “measurement problem” in the frame of the standard interpretation of quantum mechanics. It is argued that there is not one but five distinct formulations of this problem. Each of them depends on what is assumed to be a “satisfactory” description of the measurement process in the frame of the standard interpretation. Moreover, the paper points out that each of these formulations refers not to a unique problem, (...)
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  3. Interpreting Quantum Mechanics according to a Pragmatist Approach.Manuel Bächtold - 2008 - Foundations of Physics 38 (9):843-868.
    The aim of this paper is to show that quantum mechanics can be interpreted according to a pragmatist approach. The latter consists, first, in giving a pragmatic definition to each term used in microphysics, second, in making explicit the functions any theory must fulfil so as to ensure the success of the research activity in microphysics, and third, in showing that quantum mechanics is the only theory which fulfils exactly these functions.
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  4.  22
    Saving Mach’s View on Atoms.Manuel Bächtold - 2010 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 41 (1):1-19.
    According to a common belief concerning the Mach-Boltzmann debate on atoms, the new experiments performed in microphysics at the turn of the 19th and 20th centuries confirmed Boltzmann’s atomic hypothesis and disproved Mach’s anti-atomic view. This paper intends to show that this belief is partially unjustified. Mach’s view on atoms consists in fact of different kinds of arguments. While the new experiments in microphysics refute indeed his scientific arguments against the atomic hypothesis, his epistemological arguments are unaffected. In this regard, (...)
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  5.  61
    Are all measurement outcomes “classical”?Manuel Bächtold - 2008 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (3):620-633.
  6.  15
    Are all measurement outcomes “classical”?Manuel Bächtold - 2008 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (3):620-633.
  7. Saving Mach’s View on Atoms.Manuel Bächtold - 2010 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 41 (1):1 - 19.
    According to a common belief concerning the Mach-Boltzmann debate on atoms, the new experiments performed in microphysics at the turn of the 19th and 20th centuries confirmed Boltzmann's atomic hypothesis and disproved Mach's anti-atomic view. This paper intends to show that this belief is partially unjustified. Mach's view on atoms consists in fact of different kinds of arguments. While the new experiments in microphysics refute indeed his scientific arguments against the atomic hypothesis, his epistemological arguments are unaffected. In this regard, (...)
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  8.  72
    L'espace dans ses dimensions transcendantale et pragmatiste.Manuel Bächtold - 2011 - Kant Studien 102 (2):145-167.
    This article examines the Kantian thesis of the a priori nature of our knowledge of space. Because it makes the representation of objects possible as external to us and all others, and consequently, as distinct and individualized, space (whatever its structure may be) claims the status as necessary condition and as apriori possibility of all knowledge. However, in the light of various physical, psychological and philosophical considerations, it seems that the particular structure allocated by Kant to space (i.e. uniqueness, infinity, (...)
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  9.  5
    Géométrie et espace chez Poincaré : aux sources du conventionnalisme.Manuel Bächtold - 2014 - L’Enseignement Philosophique 64 (1):10-23.
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  10. Bohr (1885-1962): Bohr, Whitehead, and the Interpretation of Quantum Mechanics.Manuel Bächtold - 2008 - In Weber (ed.), Handbook of Whiteheadian Process Thought. pp. 353--361.
     
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  11.  14
    How to Assess and Categorize Teachers’ Views of Science? Two Methodological Issues.Manuel Bächtold, David Cross & Valérie Munier - unknown
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  12.  14
    Introducing Joule’s Paddle Wheel Experiment in the Teaching of Energy: Why and How?Manuel Bächtold - 2020 - Foundations of Science 26 (3):791-805.
    History of science provides access to a reservoir of meaningful experiments that can be studied and reproduced in classrooms. This is the case of Joule’s paddle-wheel experiment which displays the potentiality to help students improve their understanding of the concept of energy. This experiment has been mentioned in many physics textbooks during the twentieth century. Recently, it has received renewed attention by several researchers in science education. However, the accounts of Joule’s experiment proposed by these researchers are at variance with (...)
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  13.  16
    A Theater-Based Device for Training Teachers on the Nature of Science.Énery Melo & Manuel Bächtold - 2018 - Science & Education 27 (9-10):963-986.
    This article presents and discusses an innovative pedagogical device designed for training pre-service teachers on the nature of science. We endorse an approach according to which aspects of the nature of science should be explicitly discussed in order to be understood by learners. We identified quantum physics, and more precisely the principles of uncertainty and complementarity, as a rich topic suitable for such a discussion. Our training device consists in preparing and staging a new type of theater, the “scientific experimental (...)
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