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  1. On Mathematical Concepts of the Material World.S. Jaśkowski - 1966 - Journal of Symbolic Logic 31 (1):105-106.
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  • On the electrodynamics of moving bodies.Albert Einstein - 1920 - In The Principle of Relativity. [Calcutta]: Dover Publications. pp. 35-65.
    It is known that Maxwell’s electrodynamics—as usually understood at the present time—when applied to moving bodies, leads to asymmetries which do not appear to be inherent in the phenomena. Take, for example, the reciprocal electrodynamic action of a magnet and a conductor. The observable phenomenon here depends only on the relative motion of the conductor and the magnet, whereas the customary view draws a sharp distinction between the two cases in which either the one or the other of these bodies (...)
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  • The Contributions of Hermann von Helmholtz to Electrodynamics.A. Woodruff - 1968 - Isis 59:300-311.
  • The Contributions of Hermann von Helmholtz to Electrodynamics.A. E. Woodruff - 1968 - Isis 59 (3):300-311.
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  • Action at a Distance in Nineteenth Century Electrodynamics.A. Woodruff - 1962 - Isis 53:439-459.
  • Action at a Distance in Nineteenth Century Electrodynamics.A. E. Woodruff - 1962 - Isis 53 (4):439-459.
  • Scientific Explanation and the Causal Structure of the World.Wesley C. Salmon - 1984 - Princeton University Press.
    The philosophical theory of scientific explanation proposed here involves a radically new treatment of causality that accords with the pervasively statistical character of contemporary science. Wesley C. Salmon describes three fundamental conceptions of scientific explanation--the epistemic, modal, and ontic. He argues that the prevailing view is untenable and that the modal conception is scientifically out-dated. Significantly revising aspects of his earlier work, he defends a causal/mechanical theory that is a version of the ontic conception. Professor Salmon's theory furnishes a robust (...)
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  • Scientific Explanation and the Causal Structure of the World. Wesley Salmon.James H. Fetzer - 1987 - Philosophy of Science 54 (4):597-610.
    If the decades of the forties through the sixties were dominated by discussion of Hempel's “covering law“ explication of explanation, that of the seventies was preoccupied with Salmon's “statistical relevance” conception, which emerged as the principal alternative to Hempel's enormously influential account. Readers of Wesley C. Salmon's Scientific Explanation and the Causal Structure of the World, therefore, ought to find it refreshing to discover that its author has not remained content with a facile defense of his previous investigations; on the (...)
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  • The Structure of Science.Ernest Nagel - 1961 - Les Etudes Philosophiques 17 (2):275-275.
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  • The Physical Content of Minkowski Geometry.Brent Mundy - 1986 - British Journal for the Philosophy of Science 37 (1):25-54.
    The standard coordinate-based formulation of the space-time theory of special relativity (Minkowski geometry) is philosophically unsatisfactory for various reasons. We here present an explicit axiomatic formulation of that theory in terms of primitives with a definitive physical interpretation, prove its equivalence to the standard coordinate formulation, and draw various philosophical conclusions concerning the physical content and assumptions of the space-time theory. The prevalent causal interpretation of physical Minkowski geometry deriving from Reichenbach is criticised on the basis of the present formulation.
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  • Action at a Distance in Classical Physics.Mary B. Hesse - 1955 - Isis 46 (4):337-353.
  • Is there backward causation in classical electrodynamics?Adolf Grünbaum & Allen I. Janis - 1977 - Journal of Philosophy 74 (8):475-482.
  • Foundations of Space-Time Theories.Michael Friedman - 1987 - Noûs 21 (4):595-601.
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  • Science without Numbers.Michael D. Resnik - 1983 - Noûs 17 (3):514-519.
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  • Science Without Numbers: A Defence of Nominalism.Hartry H. Field - 1980 - Princeton, NJ, USA: Princeton University Press.
    Science Without Numbers caused a stir in 1980, with its bold nominalist approach to the philosophy of mathematics and science. It has been unavailable for twenty years and is now reissued in a revised edition with a substantial new preface presenting the author's current views and responses to the issues raised in subsequent debate.
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  • Foundations of Space-Time Theories.Micheal Friedman - 1983 - Princeton University Press.
  • The Physics of Time Asymmetry.Paul Davies - 1974 - University of California Press.
    The physics of time asymmetry has never been a single well-defined subject, but more a collection of consistency problems which arise in almost all branches ...
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  • Inward bound: of matter and forces in the physical world.Abraham Pais - 1986 - New York: Oxford University Press.
    Abraham Pais's Subtle Is the Lord was a publishing phenomenon: a mathematically sophisticated exposition of the science and the life of Albert Einstein that reached a huge audience and won an American Book Award. Reviewers hailed the book as "a monument to sound scholarship and graceful style", "an extraordinary biography of an extraordinary man", and "a fine book". In this groundbreaking new volume, Pais undertakes a history of the physics of matter and of physical forces since the discovery of x-rays. (...)
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  • Space-time as a physical quantity.Paul Teller - 1987 - In P. Achinstein & R. Kagon (eds.), Kelvin's Baltimore Lectures and Modern Theoretical Physics. MIT Press. pp. 425--448.
     
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  • Can We Dispense with Space-Time?Hartry Field - 1984 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1984:33-90.
    This paper is concerned with the debate between substantival and relational theories of space-time, and discusses two difficulties that beset the relationalist: a difficulty posed by field theories, and another difficulty called the problem of quantities. A main purpose of the paper is to argue that possibility can not always be used as a surrogate of ontology, and that in particular that there is no hope of using possibility to solve the problem of quantities.
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  • On the conservation of force; a physical memoir.H. Von Helmholtz - 1971 - In Russell Kahl (ed.), Selected Writings of Hermann von Helmholtz. Wesleyan University Press. pp. 3--55.
     
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  • On the notion of field in Newton, Maxwell, and beyond.Howard Stein - 1970 - In Roger H. Stuewer (ed.), Historical and Philosophical Perspectives of Science. Gordon & Breach. pp. 5--264.
     
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