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  1. Vaghezza: confini, cumuli e paradossi.Sebastiano Moruzzi - 2012 - Roma: Laterza.
  • Necessity, apriority, and logical structure.Leora Weitzman - 1997 - Erkenntnis 46 (1):33-47.
    Logical structure may explain the necessity and a priori knowability of such truths as that if A is red then A is either red or green. But this explanation cannot be extended to sentences that, while necessary and knowable a priori, do not wear the appropriate logical structure on their sleeves – sentences like ''''if A is a point and A is red, then A is not green,'''' or ''''if A is a sphere, then A is not a cube.'''' The (...)
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  • Vagueness, inexactness, and imprecision.R. G. Swinburne - 1969 - British Journal for the Philosophy of Science 19 (4):281-299.
    THERE IS OFTEN UNCERTAINTY ABOUT WHETHER SOME PREDICATE APPLIES TO SOME PHYSICAL OBJECT OR STATE. THIS UNCERTAINTY MAY HAVE ANY OF THREE SOURCES - VAGUENESS OF A TERM, INEXACTNESS OF A CONCEPT, OR PRACTICAL DIFFICULTY IN DETERMINING ITS APPLICABILITY. VARIOUS WAYS IN WHICH CONCEPTUAL INEXACTNESS OR PRACTICAL DIFFICULTY MAY PRODUCE UNCERTAINTY ARE DISTINGUISHED. NEITHER TERMINOLOGICAL VAGUENESS, NOR PRACTICAL DIFFICULTY IN DETERMINING THE APPLICABILITY OF A CONCEPT ARE NECESSARY FEATURES OF EVERY LANGUAGE IN EVERY PHYSICAL WORLD, BUT CONCEPTUAL INEXACTNESS IS A (...)
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  • Definitions of species in biology.Michael Ruse - 1969 - British Journal for the Philosophy of Science 20 (2):97-119.
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  • The Virtues of Vagueness in the Languages of Science.Alexander Rosenberg - 1975 - Dialogue 14 (2):281-305.
    Philosophers have traditionally decried vagueness as an unmitigated evil, and natural scientists have consistently agreed with them. Nevertheless, as I hope to show, the vagueness of scientific terms has some important advantages for the theories in which these terms figure. In so arguing I do not mean to put the best face on some unpleasant facts or to make a virtue out of a necessity. I shall begin, however, by arguing that on some contemporary accounts of scientific language the vagueness (...)
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  • The Nature of Educational Theory.J. D. Marshall - 1975 - Educational Philosophy and Theory 7 (1):15-26.
  • The Boundaries of Belief: territories of encounter between indigenous peoples and Western philosophies.James D. Marshall - 2000 - Educational Philosophy and Theory 32 (1):15-24.
    (2000). The Boundaries of Belief: territories of encounter between indigenous peoples and Western philosophies. Educational Philosophy and Theory: Vol. 32, No. 1, pp. 15-24.
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  • Technology, education and indigenous peoples: The case of maori.James D. Marshall - 2000 - Educational Philosophy and Theory 32 (1):119–131.
    (2000). The Boundaries of Belief: territories of encounter between indigenous peoples and Western philosophies. Educational Philosophy and Theory: Vol. 32, No. 1, pp. 15-24.
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  • A critique of anxious identity.James D. Marshall - 2006 - Educational Philosophy and Theory 38 (5):693–705.
  • A reinterpretation of Harre's copernican revolution.Edward Mackinnon - 1975 - Philosophy of Science 42 (1):67-79.
    Rom Harré's proposed Copernican Revolution in the philosophy of science is a very ambitious undertaking. It challenges established views, proposes a radically new model for scientific explanation, and forces a rethinking of the foundations of the field. In his treatment of the natural sciences, Harré rejects all deductivist accounts of scientific explanation basically on the grounds that such accounts seriously distort the methods of explanation actually operative in science. In the social sciences Harré, in collaboration with Secord, rejects mechanistic, positivistic, (...)
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  • The Strong Completeness of a System for Kleene's Three‐Valued Logic.John T. Kearns - 1979 - Mathematical Logic Quarterly 25 (3-6):61-68.
  • Free will and speed of computation.I. J. Good - 1971 - British Journal for the Philosophy of Science 22 (1):48-50.
  • Consolations for the irrationalist?Jerzy Giedymin - 1971 - British Journal for the Philosophy of Science 22 (1):39-48.
  • The Notion of Logical Consequence in the Logic of Inexact Predicates.John P. Cleave - 1974 - Mathematical Logic Quarterly 20 (19‐22):307-324.
  • Quasi-Boolean Algebras, Empirical Continuity and Three-Valued Logic J. P. Cleave in Bristol.J. P. Cleave - 1976 - Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 22 (1):481-500.
  • Triadic Logic.Robert Lane - 2001 - The Commens Encyclopedia: The Digital Encyclopedia of Peirce Studies.
    Peirce was the first logician to define three-valued logical connectives. In 1909, he defined four one-place three-valued connectives and six two-place three-valued connectives, all of which were rediscovered by later logicians. Peirce’s motivation was to accommodate within formal logic a specific, narrow range of propositions he took to be neither true nor false, viz. propositions that predicate of a breach in mathematical or temporal continuity one of the properties that is a boundary-property relative to that breach.
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  • Mathematics and fiction II: Analogy.Robert Thomas - 2002 - Logique Et Analyse 45:185-228.
    The object of this paper is to study the analogy, drawn both positively and negatively, between mathematics and fiction. The analogy is more subtle and interesting than fictionalism, which was discussed in part I. Because analogy is not common coin among philosophers, this particular analogy has been discussed or mentioned for the most part just in terms of specific similarities that writers have noticed and thought worth mentioning without much attention's being paid to the larger picture. I intend with this (...)
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