Results for 'Physical sciences History'

982 found
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  1.  5
    History of the physical sciences.Ernest E. Snyder - 1969 - Columbus, Ohio,: C. E. Merrill.
  2.  21
    Physical Sciences and History of Physics. R. S. Cohen, M. W. Wartofsky.Edward MacKinnon - 1986 - Isis 77 (1):110-111.
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  3.  13
    Politics and Modernity: History of the Human Sciences Special Issue.Irving History of the Human Sciences, Robin Velody & Williams - 1993 - SAGE Publications.
    Politics and Modernity provides a critical review of the key interface of contemporary political theory and social theory about the questions of modernity and postmodernity. Review essays offer a broad-ranging assessment of the issues at stake in current debates. Among the works reviewed are those of William Connolly, Anthony Giddens, J[um]urgen Habermas, Alasdair MacIntyre, Richard Rorty, Charles Taylor and Roy Bhaskar. As well as reviewing the contemporary literature, the contributors assess the historical roots of current problems in the works of (...)
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  4.  11
    Physical Sciences and History of Physics by R. S. Cohen; M. W. Wartofsky. [REVIEW]Edward Mackinnon - 1986 - Isis 77:110-111.
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  5.  7
    Conservation in Physics Teaching, History of Science and in Child Development.Cristina Speltini & María Celia Dibar Ure - 2002 - Science & Education 11 (5):475-486.
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  6. Between Physics and History. A Place of Geology in the Classification of Sciences.Joanna Gegotek - 2009 - Filozofia Nauki 17 (2):21.
  7.  23
    What is Pythagorean in the Pseudo-Pythagorean Literature?Leonid ZhmudCorresponding authorRussian Acadamy of the SciencesInstitute for the History of Science & Technologyst Petersburgrussian Federationemailother Articles by This Author:De Gruyter Onlinegoogle Scholar - forthcoming - Philologus: Zeitschrift für Antike Literatur Und Ihre Rezeption.
    Philologus, founded in 1846, is one of the oldest and most respected periodicals in the field of Classics. It publishes articles on Greek and Latin literature, historiography, philosophy, history of religion, linguistics, reception, and the history of scholarship. The journal aims to contribute to our understanding of Greco-Roman culture and its lasting influence on European civilization. The journal Philologus, conceived as a forum for discussion among different methodological approaches to the study of ancient texts and their reception, publishes (...)
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  8.  5
    Physical Science, its Structure and Development: From Geometric Astronomy to the Mechanical Theory of Heat.Edwin C. Kemble - 1966 - MIT Press.
    This introduction to physical science combines a rigorous discussion of scientific principles with sufficient historical background and philosophic interpretation to add a new dimension of interest to the accounts given in more conventional textbooks. It brings out the twofold character of physical science as an expanding body of verifiable knowledge and as an organized human activity whose goals and values are major factors in the revolutionary changes sweeping over the world today.Professor Kemble insists that to understand science one (...)
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  9. Philosophy, engineering, biology, and history: A vindication of Turing's views about the distinction between the cognitive and physical sciences.Justin Leiber - 2002 - Journal of Experimental and Theoretical Artificial Intelligence 14 (1):29-37.
    Alan Turing draws a firm line between the mental and the physical, between the cognitive and physical sciences. For Turing, following a tradition that went back to D=Arcy Thompson, if not Geoffroy and Lucretius, throws talk of function, intentionality, and final causes from biology as a physical science. He likens Amother nature@ to the earnest A. I. scientist, who may send to school disparate versions of the Achild machine,@ eventually hoping for a test-passer but knowing that (...)
     
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  10.  3
    Science and society: the history of modern physical science in the twentieth century.Peter Galison, Michael Gordin & David Kaiser (eds.) - 2001 - New York: Routledge.
    v. 1 Making special relativity -- v. 2. Making general relativity -- v. 3. Physical science and the language of war -- v. 4. Quantum histories.
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  11.  77
    How the Mind-World Problem Shaped the History of Science: A Historiographical Analysis of Edwin Arthur Burtt's The Metaphysical Foundations of Modern Physical Science Part I.Konstantinos Chatzigeorgiou - 2020 - Studies in History and Philosophy of Science Part A 83:121-132.
    This manuscript, divided into two parts, provides a contextual and historiographical analysis of Edwin Arthur Burtt's classic The Metaphysical Foundations of Modern Physical Science. My discussion corroborates the sparse technical literature on Burtt (Moriarty, 1994; Villemaire, 2002), positioning his work in the aftermath of American idealism and the rise of realist, pragmatist and naturalist alternatives. However, I depart from the existing interpretations both in content and focus. Disagreeing with Moriarty, I maintain that Burtt's Metaphysical Foundations is not an idealist (...)
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  12.  7
    Physics: an illustrated history of the foundations of science.Tom Jackson - 2013 - New York: Shelter Harbor Press.
    Presents a history of physics from the dawn of science to the present through coverage of one hundred scientific breakthroughs in the discipline, including force and inertia, hidden heat, the Doppler effect, cloud chambers, and string theory.
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  13. Proceedings of the International Colloquium in the Philosophy of Science, London, 1965.Imre Lakatos, British Society for the Philosophy of Science, London School of Economics and Political Science & International Union of the History and Philosophy of Science - 1967
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  14.  12
    Against a negative image of science: history of science and the teaching of physics and chemistry.J. Solbes & M. Traver - 2003 - Science & Education 12 (7):703-717.
  15.  20
    The Physical Sciences in the First Half of the Nineteenth Century: Problems and Sources.L. Pearce Williams - 1962 - History of Science 1 (1):1.
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  16.  20
    The Physical Sciences and the Romantic Movement.David M. Knight - 1970 - History of Science 9 (1):54-75.
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  17.  16
    How the Mind-World Problem Shaped the History of Science: A Historiographical Analysis of Edwin Arthur Burtt's The Metaphysical Foundations of Modern Physical Science Part II.Konstantinos Chatzigeorgiou - 2020 - Studies in History and Philosophy of Science Part A 83:133-143.
    This manuscript, divided into two parts, provides a contextual and historiographical analysis of Edwin Arthur Burtt's classic The Metaphysical Foundations of Modern Physical Science. My discussion corroborates the sparse technical literature on Burtt (Moriarty, 1994; Villemaire, 2002), positioning his work in the aftermath of American idealism and the rise of realist, pragmatist and naturalist alternatives. However, I depart from the existing interpretations both in content and focus. Disagreeing with Moriarty, I maintain that Burtt's Metaphysical Foundations is not an idealist (...)
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  18.  91
    The metaphysical foundations of modern physical science.Edwin Arthur Burtt - 1925 - Garden City, N.Y.,: Doubleday. Edited by Burtt, Edwin & A..
    CHAPTER I INTRODUCTION (A) Historical Problem Suggested by the Nature of Modern Thought How curious, after all, is the way in which we moderns think about ...
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  19.  7
    Progress in Philosophy and in the Physical Sciences.Christopher Norris - 2017-04-27 - In Russell Blackford & Damien Broderick (eds.), Philosophy's Future. Wiley. pp. 173–189.
    This chapter raises various questions with regard to philosophy's relationship to the physical sciences and the issue whether we can mount an argument for the occurrence or possibility of progress in philosophy comparable to those raised in the scientific context. It examines cases made pro and contra the progressivist view with reference to recent debates in epistemology and philosophy of science, concluding with a qualified endorsement of the argument by analogy. This places the onus of proof very squarely (...)
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  20.  29
    Physical Sciences and Causality.Elizabeth G. Salmon - 1936 - Proceedings of the American Catholic Philosophical Association 12:117-123.
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  21.  5
    Physical Sciences and Causality.Elizabeth G. Salmon - 1936 - Proceedings of the American Catholic Philosophical Association 12:117-123.
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  22.  15
    Physical Sciences Early Solar Physics. By A. J. Meadows. Oxford: Pergamon Press. 1970. Pp. viii + 312. £1.75.Eric G. Forbes - 1971 - British Journal for the History of Science 5 (3):302-302.
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  23. Interventionist Causation in Physical Science.Karen R. Zwier - 2014 - Dissertation, University of Pittsburgh
    The current consensus view of causation in physics, as commonly held by scientists and philosophers, has several serious problems. It fails to provide an epistemology for the causal knowledge that it claims physics to possess; it is inapplicable in a prominent area of physics (classical thermodynamics); and it is difficult to reconcile with our everyday use of causal concepts and claims. In this dissertation, I use historical examples and philosophical arguments to show that the interventionist account of causation constitutes a (...)
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  24.  20
    History of Science in an Elegiac Mode: E. A. Burtt's Metaphysical Foundations of Modern Physical Science Revisited.Lorraine Daston - 1991 - Isis 82 (3):522-531.
  25.  32
    Using representations of space to study early modern physical science: An example of philosophy in the service of history.David Marshall Miller - manuscript
    Most historians of science eagerly acknowledge that the early modern period witnessed a shift from a prevailing Aristotelian, spherical, centered conception of space to a prevailing Cartesian, rectilinear, oriented spatial framework. Indeed, this shift underlay many of the important advances for which the period is celebrated. However, historians have failed to engage the general conceptual shift, focusing instead on the particular explanatory developments that resulted. This historical lacuna can be attributed to a historiographical problem: the lack of an adequate unit (...)
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  26. Logic, Methodology, and Philosophy of Science Proceedings.Ernest Nagel & International Union of the History and Philosophy of Science - 1962 - Stanford University Press.
  27.  59
    Logical Empiricism and the Physical Sciences: From Philosophy of Nature to Philosophy of Physics.Sebastian Lutz & Adam Tamas Tuboly (eds.) - 2021 - New York: Routledge.
    This volume has two primary aims: to trace the traditions and changes in methods, concepts, and ideas that brought forth the logical empiricists’ philosophy of physics and to present and analyze the logical empiricists’ various and occasionally contrary ideas about the physical sciences and their philosophical relevance. These original chapters discuss these developments in their original contexts and social and institutional environments, thus showing the various fruitful conceptions and philosophies behind the history of 20th-century philosophy of science. (...)
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  28.  9
    Jan von Plato, Saved from the Cellar. Gerhard Gentzen's Shorthand Notes on Logic and the Foundations of Mathematics: Springer International Publishing, 2017. Sources and Studies in the History of Mathematics and Physical Sciences, x + 315 pp., ISBN 978-3-319-42119-3 , EUR 109.99, GBP 82.00, ISBN 978-3-319-42120-9 , EUR 91,62.Adrian Rezuş - 2019 - Studia Logica 107 (3):583-589.
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  29.  6
    Science and the Human Imagination: Aspects of the History and Logic of Physical Science.Mary B. Hesse - 1955 - Scm.
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  30. Québec Studies in the Philosophy of Science. Part I: Logic, Mathematics, Physics and History of Science. Essays in Honor of Hugues Leblanc.Mathieu Marion & Robert S. Cohen - 1998 - Studia Logica 61 (3):441-446.
     
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  31. Proceedings of a Colloquium on Modal and Many-Valued Logics Helsinki, 23-26 August, 1962.G. H. von Wright & Finland) International Union of the History and Philosophy of Science - 1963 - Suomalaisen Kirjallisuuden Kirjapaino.
  32.  11
    Science and the Human Imagination. Aspects of the History and Logic of Physical Science.Jonathan Bennett - 1960 - Journal of Symbolic Logic 25 (1):74-75.
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  33.  10
    Archaeology at the interface: studies in archaeology's relationships with history, geography, biology, and physical science.John L. Bintliff & Chris F. Gaffney (eds.) - 1986 - Oxford, England: B.A.R..
  34.  7
    The principle of relativity with applications to physical science.Alfred North Whitehead - 1922 - Cambridge [Eng.]: The University press.
    Alfred North Whitehead (1861-1947) was a prominent English mathematician and philosopher who co-authored the highly influential Principia Mathematica with Bertrand Russell. Originally published in 1922, this book forms the follow-up volume to "The Principles of Natural Knowledge" (1919) and "The Concept of Nature" (1920). In it, Whitehead puts forward an alternative theory of relativity, one which goes against the heterogeneity of Einstein's later theories in deducing that 'our experience requires and exhibits a basis in uniformity'. The text is divided into (...)
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  35. Studying marginalised physical sciences.Sean F. Johnston - 2007 - ‘Writing the History’ of the Physical Sciences After 1945: State of the Art, Questions, and Perspectives, Strasbourg, 8-9 June 2007.
    The second half of the twentieth century offers distinct perspectives for the historian of science. The role of the State, the expansion of certain industries and the cultural engagement with science were all transformed. The foregrounding of certain strands of physical science in the public and administrative consciousness – nuclear physics and planetary science, for example – had a complement: the ‘backgrounding’ or institutional neglect of a number of other fields. My work in the history of the (...) sciences has focused on this little-noticed intellectual terrain, and could be categorised into several types of case study that share distinct research questions, conceptual understandings and historiographical ramifications. -/- My focus is physical sciences that have been identified as peripheral, if categorised at all, by a previous generation of historians of physics. By this I do not mean peripheral in the geographic sense, but marginal, interstitial or boundary-crossing in the context of occupations, disciplines and professions. The types of case study investigated include (i) scientific instruments; (ii) emergent professions or would-be professions; and, (iii) subject areas falling between academic science, industrial application and State interests. (shrink)
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  36.  11
    Mathematics and physics in classical Islam: comparative perspectives in the history and the philosophy of science.Giovanna Lelli (ed.) - 2022 - Boston: Brill.
    This book highlights the emergence of a new mathematical rationality and the beginning of the mathematisation of physics in Classical Islam. Exchanges between mathematics, physics, linguistics, arts and music were a factor of creativity and progress in the mathematical, the physical and the social sciences. Goods and ideas travelled on a world-scale, mainly through the trade routes connecting East and Southern Asia with the Near East, allowing the transmission of Greek-Arabic medicine to Yuan Muslim China. The development of (...)
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  37.  17
    Physical Sciences Lord Rayleigh—the Man and his Work. By Robert Bruce Lindsay. Oxford: Pergamon Press. 1970. Pp. viii + 251. £1.50. [REVIEW]A. J. Meadows - 1971 - British Journal for the History of Science 5 (3):300-301.
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  38.  61
    Speculation in physics: The history and practice of naturphilosophie.Barry Gower - 1972 - Studies in History and Philosophy of Science Part A 3 (4):301-356.
  39. Scientific Change Uncorrected Proof Copy.A. C. Crombie & International Union of the History and Philosophy of Science - 1963 - Heineman.
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  40.  22
    The halt and the blind: Philosophy and history of science: "Method and appraisal in the physical sciences". [REVIEW]Thomas S. Kuhn - 1980 - British Journal for the Philosophy of Science 31 (2):181-192.
  41.  15
    A course in physics and history: matching an unlikely pair.Harold Issadore Sharlin & Robert A. Leacock - 1977 - Annals of Science 34 (1):57-62.
    A course, ‘Physics, history and society’, has been taught primarily to college freshmen since 1972. Disciplinary lines are sharply drawn, thereby teaching the subject in the same fashion as research is done. The course is about the way physics and history became disciplines and how they have developed, as well as about the rhetoric of physics/history. The main topics are the physicist's/historian's personality as it is related to his work. The history of physics is used to (...)
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  42.  49
    Mathematical understanding and the physical sciences.Harry Collins - 2007 - Studies in History and Philosophy of Science Part A 38 (4):667-685.
    The author claims to have developed interactional expertise in gravitational wave physics without engaging with the mathematical or quantitative aspects of the subject. Is this possible? In other words, is it possible to understand the physical world at a high enough level to argue and make judgments about it without the corresponding mathematics? This question is empirically approached in three ways: anecdotes about non-mathematical physicists are presented; the author undertakes a reflective reading of a passage of physics, first without (...)
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  43.  16
    Procedures and Metaphysics: A Study in the Philosophy of Mathematical-Physical Science in the Sixteenth and Seventeenth Centuries.Edward William Strong - 1936 - Richwood Pub. Co..
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  44.  34
    Physical Science and Ethics. By Andrew G. van Meisen. Trans. H. J. Koren. [REVIEW]Lee C. Rice - 1969 - Modern Schoolman 46 (4):383-384.
  45. Method and Appraisal in the Physical Sciences: The Critical Background to Modern Science, 1800–1905.Colin Howson (ed.) - 1976 - New York: Cambridge University Press.
    First published in 1976, this is a volume of studies on the problems of theory-appraisal in the physical sciences - how and why important theories are developed, changed and are replaced, and by what criteria we judge one theory an advance on another. The volume is introduced by a classic paper of Imre Lakatos's, which sets out a theory for tackling these problems - the methodology of scientific research programmes. Five contributors then test this theory against particular and (...)
     
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  46.  99
    Physical Science and Human Values. [REVIEW]Brian Coffey - 1949 - Modern Schoolman 26 (3):263-265.
  47.  15
    The Nature of Physical Science and the Objectives of the Scientist.John J. Fitzgerald - 1952 - Philosophy 27 (101):125 - 137.
    The history of Western Thought since the seventeenth Century leaves little doubt as to the practical validity of the method of natural investigation discovered by Galileo, interpreted by Descartes, and variously generalized by Newton and Einstein. The repercussions of its success on every level of human activity, religious, political, commercial, and educational have awakened the most diverse ánd even contradictory speculations as to the nature of this science and the objectives of the scientist. Often enough one gets the impression (...)
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  48.  46
    Method and appraisal in the physical sciences: the critical background to modern science, 1800-1905.Colin Howson (ed.) - 1976 - New York: Cambridge University Press.
    Lakatos, I. History of science and its rational reconstructions.--Clark, P. Atomism vs. thermodynamics.--Worrall, J. Thomas Young and the "rufutation" of Newtonian optics.--Musgrave, A. Why did oxygen supplant phlogiston?--Zahar, E. Why did Einstein's programme supersede Lorentz's?--Frické, M. The rejection of Avogadro's hypotheses.--Feyerabend, P. On the critique of scientific reason.
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  49. Videnskabens Og Teknologiens Historie Og Filosofi Et Katalog Over Aktiviteter I Danmark.Else Lehmann, Helge Kragh, Kurt Møler Pedersen & International Union of the History and Philosophy of Science - 1991 - Den Danske Nationalkomité for den Internationale Union for Videnskabernes Historie Og Filosofi.
  50.  37
    Physics Teachers’ Challenges in Using History and Philosophy of Science in Teaching.Dietmar Höttecke & Andreas Henke - 2015 - Science & Education 24 (4):349-385.
    The inclusion of the history and philosophy of science in science teaching is widely accepted, but the actual state of implementation in schools is still poor. This article investigates possible reasons for this discrepancy. The demands science teachers associate with HPS-based teaching play an important role, since these determine teachers’ decisions towards implementing its practices and ideas. We therefore investigate the perceptions of 8 HPS-experienced German middle school physics teachers within and beyond an HPS implementation project. Within focused interviews (...)
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