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  1. Metaphysical Foundations of Neoclassical Mechanics.Marius Stan - 2017 - In Michela Massimi & Angela Breitenbach (eds.), Kant and the Laws of Nature. New York: Cambridge University Press. pp. 214-234.
    I examine here if Kant’s metaphysics of matter can support any late-modern versions of classical mechanics. I argue that in principle it can, by two different routes. I assess the interpretive costs of each approach, and recommend the most promising strategy: a mass-point approach.
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  • Perception, illusion, and hallucination.Kazem Sadegh-Zadeh - 1982 - Theoretical Medicine and Bioethics 3 (2):159-191.
    Patrick Suppes'' set-theoretical approach to the analysis of theories, and Joseph D. Sneed''s metatheory are briefly outlined. The notions of observation, illusion and hallucination are reconstructed according to these approaches. It is argued that the terms perception and truth are theoretical with respect to observation but nontheoretical with respect to illusion and hallucination. Hallucination is construed as a special kind of illusion.
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  • Perception, illusion, and hallucination.Kazem Sadegh-Zadeh - 1982 - Metamedicine 3 (2):159-191.
    Patrick Suppes' set-theoretical approach to the analysis of theories, and Joseph D. Sneed's metatheory are briefly outlined. The notions of observation, illusion and hallucination are reconstructed according to these approaches. It is argued that the terms ‘perception’ and ‘truth’ are theoretical with respect to observation but nontheoretical with respect to illusion and hallucination. Hallucination is construed as a special kind of illusion.
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  • Numerical constructs as theorems of empirical theories.Adam Nowaczyk - 1976 - Studia Logica 35 (1):55 - 70.
  • Reflections on the revolution at Stanford.F. A. Muller - 2011 - Synthese 183 (1):87-114.
    We inquire into the question whether the Aristotelean or classical \emph{ideal} of science has been realised by the Model Revolution, initiated at Stanford University during the 1950ies and spread all around the world of philosophy of science --- \emph{salute} P.\ Suppes. The guiding principle of the Model Revolution is: \emph{a scientific theory is a set of structures in the domain of discourse of axiomatic set-theory}, characterised by a set-theoretical predicate. We expound some critical reflections on the Model Revolution; the conclusions (...)
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  • Dimensionally invariant numerical laws correspond to meaningful qualitative relations.R. Duncan Luce - 1978 - Philosophy of Science 45 (1):1-16.
    In formal theories of measurement meaningfulness is usually formulated in terms of numerical statements that are invariant under admissible transformations of the numerical representation. This is equivalent to qualitative relations that are invariant under automorphisms of the measurement structure. This concept of meaningfulness, appropriately generalized, is studied in spaces constructed from a number of conjoint and extensive structures some of which are suitably interrelated by distribution laws. Such spaces model the dimensional structures of classical physics. It is shown that this (...)
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  • Structuralisme et empirisme: l'approche ensembliste des théories physiques.Jean Leroux - 1986 - Dialogue 25 (1):143-.
    La parution de la monographic de Sneed,The Logical Structure of Mathematical Physics a suscité un renouveau d'intérêt en philosophie contemporaine des sciences. Cet ouvrage arrivait à un moment où l'épistémologie des sciences, telle que développée dans les milieux germaniques et anglo-saxons, accusait de graves insuffisances dans la reconstruction rationnelle du développement historique des théories physiques. Mis sur la défensive par les thèses et arguments historiques de Kuhn et de Feyerabend, ces milieux « orthodoxes » devaient reconnaitre l'état embryonnaire de ce (...)
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  • Invarianzgesetze und Zeitmetrik.Andreas Kamlah - 1973 - Zeitschrift Für Allgemeine Wissenschaftstheorie 4 (2):224-260.
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  • Invarianzgesetze und zeitmetrik.Andreas Kamlah - 1973 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 4 (2):224-260.
    Modern Philosophy of Science has not yet recognized the significance of physical invariance principles for science and daily life. In this paper we investigate as a simple example, how time independence or time translational invariance of natural laws determines the time scale. We start with informal definitions of the invariance of concepts and laws. We then ask if time independence is an essential feature of natural laws or if time dependent laws are plausible without loss of predictive relevance. In section (...)
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