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Reflections of a physicist

New York: Arno Press (1950)

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  1. 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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  • Visualization as a Tool for Understanding.Henk W. de Regt - 2014 - Perspectives on Science 22 (3):377-396.
    The act of understanding is at the heart of all scientific activity; without it any ostensibly scientific activity is as sterile as that of a high school student substituting numbers into a formula. Ordinary language often uses visual metaphors in connection with understanding. When we finally understand what someone is trying to point out to us, we exclaim: “I see!” When someone really understands a subject matter, we say that she has “insight”. There appears to be a link between visualization (...)
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  • Science and pseudo-science: The case of creationism.R. G. A. Dolby - 1987 - Zygon 22 (2):195-212.
    The paper reviews criteria which have been used to distinguish science from nonscience and from pseudo–science, and it examines the extent to which they can usefully be applied to “creation science.” These criteria do not force a clear decision, especially as creation science resembles important eighteenth–century forms of orthodox science. Nevertheless, the proponents of creation science may be accused of pious fraud in failing to concede in their political battles that their “science” is tentative and tendentious and will continue to (...)
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  • The flow of time.P. J. Zwart - 1972 - Synthese 24 (1-2):133 - 158.
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  • P. W. Bridgman, in revolt against formalism.Jeremy Bernstein - 1949 - Synthese 8 (1):331 - 341.
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  • (1 other version)Candor and Integrity in Science.Gerald Holton - 2005 - Synthese 145 (2):277-294.
    In the pursuit of researches and in the reporting of their results, the individual scientist as well as the community of fellow professionals rely implicitly on the researcher embracing the habit of truthfulness, a main pillar of the ethos of science. Failure to adhere to the twin imperatives of candor and integrity will be adjudged intolerable and, by virtue of science’s self-policing mechanisms, rendered the exception to the rule. Yet both as philosophical concepts and in practice, candor and integrity are (...)
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  • Teaching the Philosophical and Worldview Components of Science.Michael R. Matthews - 2009 - Science & Education 18 (6-7):697-728.
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  • Putting Measurement First: Understanding ‘Grit’ in Educational Policy and Practice.Daniel Peterson - 2015 - Journal of Philosophy of Education 49 (4):571-589.
    Non-cognitive dispositions have recently become psychological constructs of interest in the education, economics, philosophy, sociology, and psychology literature. In this article, I draw the distinction between property-first and measurement-first approaches to understanding the meaning of a particular non-cognitive disposition theoretical term, ‘grit’, as well as the relationship between this term and its corresponding measurement procedure. I argue that, depending on which approach one takes, one is confronted with different norms for judging the success of any disposition-measurement procedure pair, meaning that (...)
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  • The Nobel Prize in the Physics Class: Science, History, and Glamour.Haim Eshach - 2009 - Science & Education 18 (10):1377-1393.
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  • Józefa Życińskiego koncepcja racjonalizmu umiarkowanego: epistemologiczna i doxalogiczna funkcja podmiotowego commitment.Zbigniew Liana - 2020 - Philosophical Problems in Science 68:117-184.
    One of the main problems of modern rationalistic theories of science is the non-eliminability of the subjective factor in the development of science. Temperate rationalism of Newton-Smith was an attempt to solve this problem. J. Życiński developed his own version of temperate rationalism in which the subjective factor played much more substantial role. In the article I am presenting his specific idea of the personal _commitment_ as a necessary condition for rationalism and science. In the first section I proceed to (...)
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  • Set theory and physics.K. Svozil - 1995 - Foundations of Physics 25 (11):1541-1560.
    Inasmuch as physical theories are formalizable, set theory provides a framework for theoretical physics. Four speculations about the relevance of set theoretical modeling for physics are presented: the role of transcendental set theory (i) in chaos theory, (ii) for paradoxical decompositions of solid three-dimensional objects, (iii) in the theory of effective computability (Church-Turing thesis) related to the possible “solution of supertasks,” and (iv) for weak solutions. Several approaches to set theory and their advantages and disadvatages for physical applications are discussed: (...)
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  • (1 other version)Belief in Naturalism: an Epistemologist’s Philosophy of Mind.Susan Haack - 2010 - Logos and Episteme 1 (1):67-83.
    My title, “Belief in Naturalism,” signals, not that I adopt naturalism as an article of faith, but that my purpose in this paper is to shed some light on what belief is, on why the concept of belief is needed in epistemology, and how all this relates to debates about epistemological naturalism. After clarifying the many varieties of naturalism, philosophical and other (section 1), and then the various forms of epistemological naturalism specifically (section 2), I offer a theory of belief (...)
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  • Science, Worldviews and Education.Michael R. Matthews - 2014 - In International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1585-1635.
    Science has always engaged with the worldviews of societies and cultures. The theme is of particular importance at the present time as many national and provincial education authorities are requiring that students learn about the nature of science (NOS) as well as learning science content knowledge and process skills. NOS topics are being written into national and provincial curricula. Such NOS matters give rise to at least the following questions about science, science teaching and worldviews: -/- What is a worldview? (...)
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  • On the neglect of the philosophy of chemistry.J. van Brakel - 1999 - Foundations of Chemistry 1 (2):111-174.
    In this paper I present a historiography of the recent emergence of philosophy of chemistry. Special attention is given to the interest in this domain in Eastern Europe before the collapse of the USSR. It is shown that the initial neglect of the philosophy of chemistry is due to the unanimous view in philosophy and philosophy of science that only physics is a proper science (to put in Kant's words). More recently, due to the common though incorrect assumption that chemistry (...)
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  • The Reformation of Science.Rustum Roy - 1981 - Bulletin of Science, Technology and Society 1 (1-2):3-9.
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  • Understandings of the nature of science and decision making on science and technology based issues.Randy L. Bell & Norman G. Lederman - 2003 - Science Education 87 (3):352-377.
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