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The scientific background to modern philosophy: selected readings

Indianapolis: Hackett Publishing Company (2022)

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  1. Force and Objectivity: On Impact, Form, and Receptivity to Nature in Science and Art.Eli Lichtenstein - 2019 - Dissertation, University of Michigan
    I argue that scientific and poetic modes of objectivity are perspectival duals: 'views' from and onto basic natural forces, respectively. I ground this analysis in a general account of objectivity, not in terms of either 'universal' or 'inter-subjective' validity, but as receptivity to basic features of reality. Contra traditionalists, bare truth, factual knowledge, and universally valid representation are not inherently valuable. But modern critics who focus primarily on the self-expressive aspect of science are also wrong to claim that our knowledge (...)
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  • Around the World in 76 Chapters: A Guided Tour of Research in History, Philosophy and Science Teaching.Zuraya Monroy-Nasr - 2015 - Science & Education 24 (7-8):1009-1022.
    Michael R. Matthews International Handbook of Research in History, Philosophy and Science Teaching. Springer, Dordrecht. ISBN: 978-94-007-7653-1, 2532 pp, $999.00.
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  • Teaching the Philosophical and Worldview Components of Science.Michael R. Matthews - 2009 - Science & Education 18 (6-7):697-728.
  • Science, Worldviews and Education: An Introduction.Michael R. Matthews - 2009 - Science & Education 18 (6-7):641-666.
  • Scheffler Revisited on the Role of History and Philosophy of Science in Science Teacher Education.R. Michael Matthews - 1997 - Studies in Philosophy and Education 16 (1/2):159-173.
    Twenty-five years ago Israel Scheffler argued for the inclusion of philosophy of science in the preparation of science teachers. It was part of his wider argument for the inclusion of courses in the philosophy of the discipline in programmes that are preparing people to teach that discipline. For the most part Scheffler's suggestion, at least as far as science education is concerned, went unheeded. Pleasingly, in recent times there has been some rapprochement between these fields. This paper will restate parts (...)
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  • Reflections on 25 Years of Journal Editorship.Michael R. Matthews - 2015 - Science & Education 24 (5-6):749-805.
    These reflections range over some distinctive features of the journal Science & Education, they acknowledge in a limited way the many individuals who over the past 25 years have contributed to the success and reputation of the journal, they chart the beginnings of the journal, and they dwell on a few central concerns—clear writing and the contribution of HPS to teacher education. The reflections also revisit the much-debated and written-upon philosophical and pedagogical arguments occasioned by the rise and possible demise (...)
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  • History, philosophy, and science teaching: The present rapprochement.Michael R. Matthews - 1992 - Science & Education 1 (1):11-47.
  • Alan F. Chalmers: The Scientist’s Atom and the Philosopher’s Stone: How Science Succeeded and Philosophy Failed to Gain Knowledge of Atoms.Michael R. Matthews - 2011 - Science & Education 20 (2):173-190.
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  • Model-based and manipulative abduction in science.Lorenzo Magnani - 2004 - Foundations of Science 9 (3):219-247.
    What I call theoretical abduction (sentential and model-based)certainly illustrates much of what is important in abductive reasoning, especially the objective of selecting and creating a set of hypotheses that are able to dispense good (preferred) explanations of data, but fails to account for many cases of explanation occurring in science or in everyday reasoning when the exploitation of the environment is crucial. The concept of manipulative abduction is devoted to capture the role of action in many interesting situations: action provides (...)
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  • An Abductive Theory of Scientific Reasoning.Lorenzo Magnani - 2005 - Semiotica 2005 (153 - 1/4):261-286.
    More than a hundred years ago, the American philosopher C. S. Peirce suggested the idea of pragmatism as a logical criterion to analyze what words and concepts express through their practical meaning. Many words have been spent on creative processes and reasoning, especially in the case of scientific practices. In fact, philosophers have usually offered a number of ways of construing hypotheses generation, but all aim at demonstrating that the activity of generating hypotheses is paradoxical, illusory or obscure, and thus (...)
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  • Teaching the Conceptual History of Physics to Physics Teachers.Peter Garik, Luciana Garbayo, Yann Benétreau-Dupin, Charles Winrich, Andrew Duffy, Nicholas Gross & Manher Jariwala - 2015 - Science & Education 24 (4):387-408.
    For nearly a decade we have taught the history and philosophy of science as part of courses aimed at the professional development of physics teachers. The focus of the history of science instruction is on the stages in the development of the concepts and theories of physics. For this instruction, we designed activities to help the teachers organize their understanding of this historical development. The activities include scientific modeling using archaic theories. We conducted surveys to gauge the impact on the (...)
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  • Die Natur der Farben.Fabian Dorsch - 2009 - De Gruyter.
    Farben sind für uns sowohl objektive, als auch phänomenale Eigenschaften. In seinem Buch argumentiert Fabian Dorsch, daß keine ontologische Theorie der Farben diesen beiden Seiten unseres Farbbegriffes gerecht werden k ann. Statt dessen sollten wir akzeptieren, daß letzterer sich auf zwei verschiedene Arten von Eigenschaften bezieht: die repräsentierten Reflektanzeigenschaften von Gegenständen und die qualitativen Eigenschaften unserer Farbwahrnehmungen, die als sinnliche Gegebenheitsweisen ersterer fungieren. Die Natur der Farben gibt einen detaillierten Überblick über die zeitgenössischen philosophischen und naturwissenschaftlichen Theorien der Farben und (...)
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  • Descartes and the tree of knowledge.Roger Ariew - 1992 - Synthese 92 (1):101 - 116.
    Descartes' image of the tree of knowledge from the preface to the French edition of the Principles of Philosophy is usually taken to represent Descartes' break with the past and with the fragmentation of knowledge of the schools. But if Descartes' tree of knowledge is analyzed in its proper context, another interpretation emerges. A series of contrasts with other classifications of knowledge from the seventeenth and eighteenth centuries raises some puzzles: claims of originality and radical break from the past do (...)
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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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  • 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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  • Philosophy of Education and Science Education: A Vital but Underdeveloped Relationship.Roland M. Schulz - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1259-1316.
    This chapter examines the relationship between the two fields of science education and philosophy of education to inquire how philosophy could better contribute to improving science curriculum, teaching, and learning, especially science teacher education. An inspection of respective research journals exhibits an almost complete neglect of each field for the other (barring exceptions).While it can be admitted that philosophy has been an area of limited and scattered interest for science education researchers for some time, the subfield of philosophy of education (...)
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