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  1. The consistency of consistent histories: A reply to d'Espagnat. [REVIEW]Robert B. Griffiths - 1993 - Foundations of Physics 23 (12):1601-1610.
    This article is a response to various assertions made by B. d'Espagnat about the consistent history approach to quantum mechanics. It is argued that the consistent history interpretation allows for counterfactual definitions, does not imply that the future influences the past, is “realistic” according to d'Espagnat's own definition of that term, and provides a consistent substitute for classical logic in the quantum domain.
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  • Relevance, relatedness and restricted set theory.Barry Smith - 1991 - In Georg Schurz & Georg Jakob Wilhelm Dorn (eds.), Advances in Scientific Philosophy. Amsterdam: Rodopi. pp. 45-56.
    Relevance logic has become ontologically fertile. No longer is the idea of relevance restricted in its application to purely logical relations among propositions, for as Dunn has shown in his (1987), it is possible to extend the idea in such a way that we can distinguish also between relevant and irrelevant predications, as for example between “Reagan is tall” and “Reagan is such that Socrates is wise”. Dunn shows that we can exploit certain special properties of identity within the context (...)
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  • A unified theory of truth and reference.Barry Smith & Berit Brogaard - 2000 - Logique Et Analyse 43 (169-170):49–93.
    The truthmaker theory rests on the thesis that the link between a true judgment and that in the world to which it corresponds is not a one-to-one but rather a one-to-many relation. An analogous thesis in relation to the link between a singular term and that in the world to which it refers is already widely accepted. This is the thesis to the effect that singular reference is marked by vagueness of a sort that is best understood in supervaluationist terms. (...)
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  • A Taxonomy of Granular Partitions.Thomas E. Bittner & Barry Smith - 2001 - In Daniel Montello (ed.), Spatial Information Theory. Foundations of Geographic Information Science. Berlin: Springer. pp. 28-43.
    In this paper we propose a formal theory of partitions (ways of dividing up or sorting or mapping reality) and we show how the theory can be applied in the geospatial domain. We characterize partitions at two levels: as systems of cells (theory A), and in terms of their projective relation to reality (theory B). We lay down conditions of well-formedness for partitions and we define what it means for partitions to project truly onto reality. We continue by classifying well-formed (...)
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  • Quantum Mechanics in the Light of Quantum Cosmology.Murray Gell-Mann & James Hartle - 1990 - In W. Zurek (ed.), Complexity, Entropy, and the Physics of Information. Addison-Wesley.