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  1. Kotarbiński: Logic, Semantics and Ontology.Jan Wolenski - 1990 - Dordrecht and Boston: Kluwer Academic Publishers.
    Tadeusz Kotarbinski is one of towering figures in contemporary Polish philosophy. He was a great thinker, a great teacher, a great organizer of philosophical and scientific life, and, last but not least, a great moral authority. He died at the age of 96 on October 3, 1981. Kotarbinski was active in almost all branches of philosophy. He made many significant contributions to logic, semantics, ontology, epistemology, history of philosophy, and ethics. He created a new field, namely praxiology. Thus, using an (...)
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  • Nominalistic systems.Rolf A. Eberle - 1970 - Dordrecht,: Reidel.
    1. 1. PROGRAM It will be our aim to reconstruct, with precision, certain views which have been traditionally associated with nominalism and to investigate problems arising from these views in the construction of interpreted formal systems. Several such systems are developed in accordance with the demand that the sentences of a system which is acceptable to a nominalist must not imply the existence of any entities other than individuals. Emphasis will be placed on the constructionist method of philosophical analysis. To (...)
  • Logiques et sémantiques non classiques.Alain Voizard - 1997 - Dialogue 36 (1):3-.
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  • Existence and Predication from Aristotle to Frege.Risto Vilkko & Jaakko Hintikka - 2007 - Philosophy and Phenomenological Research 73 (2):359-377.
    One of the characteristic features of contemporary logic is that it incorporates the Frege‐Russell thesis according to which verbs for being are multiply ambiguous. This thesis was not accepted before the nineteenth century. In Aristotle existence could not serve alone as a predicate term. However, it could be a part of the force of the predicate term, depending on the context. For Kant existence could not even be a part of the force of the predicate term. Hence, after Kant, existence (...)
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  • Logic, Ontological Neutrality, and the Law of Non-Contradiction.Achille C. Varzi - 2014 - In Elena Ficara (ed.), Contradictions. Logic, History, Actuality. De Gruyter. pp. 53–80.
    Abstract. As a general theory of reasoning—and as a general theory of what holds true under every possible circumstance—logic is supposed to be ontologically neutral. It ought to have nothing to do with questions concerning what there is, or whether there is anything at all. It is for this reason that traditional Aristotelian logic, with its tacit existential presuppositions, was eventually deemed inadequate as a canon of pure logic. And it is for this reason that modern quantification theory, too, with (...)
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  • The Completeness of Free Logic.B. C. van Fraassen - 1966 - Mathematical Logic Quarterly 12 (1):219-234.
  • Re-reconciling the Epistemic and Ontic Views of Explanation.Benjamin Sheredos - 2016 - Erkenntnis 81 (5):919-949.
    Recent attempts to reconcile the ontic and epistemic approaches to explanation propose that our best explanations simply fulfill epistemic and ontic norms simultaneously. I aim to upset this armistice. Epistemic norms of attaining general and systematic explanations are, I argue, autonomous of ontic norms: they cannot be fulfilled simultaneously or in simple conjunction with ontic norms, and plausibly have priority over them. One result is that central arguments put forth by ontic theorists against epistemic theorists are revealed as not only (...)
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  • Subject and predicate.J. L. Shaw - 1976 - Journal of Indian Philosophy 4 (1-2):155-179.
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  • Neutral Free Logic: Motivation, Proof Theory and Models.Edi Pavlović & Norbert Gratzl - 2023 - Journal of Philosophical Logic 52 (2):519-554.
    Free logics are a family of first-order logics which came about as a result of examining the existence assumptions of classical logic (Hintikka _The Journal of Philosophy_, _56_, 125–137 1959 ; Lambert _Notre Dame Journal of Formal Logic_, _8_, 133–144 1967, 1997, 2001 ). What those assumptions are varies, but the central ones are that (i) the domain of interpretation is not empty, (ii) every name denotes exactly one object in the domain and (iii) the quantifiers have existential import. Free (...)
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  • A More Unified Approach to Free Logics.Edi Pavlović & Norbert Gratzl - 2020 - Journal of Philosophical Logic 50 (1):117-148.
    Free logics is a family of first-order logics which came about as a result of examining the existence assumptions of classical logic. What those assumptions are varies, but the central ones are that the domain of interpretation is not empty, every name denotes exactly one object in the domain and the quantifiers have existential import. Free logics usually reject the claim that names need to denote in, and of the systems considered in this paper, the positive free logic concedes that (...)
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  • Truth-Value Semantics and Functional Extensions for Classical Logic of Partial Terms Based on Equality.F. Parlamento - 2014 - Notre Dame Journal of Formal Logic 55 (3):383-395.
    We develop a bottom-up approach to truth-value semantics for classical logic of partial terms based on equality and apply it to prove the conservativity of the addition of partial description and selection functions, independently of any strictness assumption.
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  • Universally free logic and standard quantification theory.Robert K. Meyer & Karel Lambert - 1968 - Journal of Symbolic Logic 33 (1):8-26.
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  • Études sur les règles d'inférence dites règles de Gentzen.Hugues Leblanc - 1963 - Dialogue 1 (4):355-367.
    Je vais traiter ici des inférences dont la validité tient au rôle qu'y jouent les cinq connecteurs « ⊃ », « ∼ », « & », « V » et « ≡ », les deux quantificateurs « ∀ » et « ∃ », et le signe d'identité « = ». Qu'on me permette de rappeler que les deux conjectures présentéd dans ma première étude se sont avéré'es justes. En premier lieu, toute règle de structure et toute règie d'élimination ou d'introduction (...)
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  • On Meyer and Lambert's quantificational calculus FQ.Hugues Leblanc - 1968 - Journal of Symbolic Logic 33 (2):275-280.
  • On Prefacing (⊇ X) A ⊃ A (Y/X) WITH (⊇ Y) — A Free Quantification Theory Without Identity.H. Leblanc & R. K. Meyer - 1970 - Mathematical Logic Quarterly 16 (8):447-462.
  • Probleme der Ontologie.Henri Lauener - 1978 - Zeitschrift Für Allgemeine Wissenschaftstheorie 9 (1):63-92.
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  • Notes on e! III: A theory of descriptions.Karel Lambert - 1962 - Philosophical Studies 13 (4):51--59.
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  • Gentzen and Jaśkowski Natural Deduction: Fundamentally Similar but Importantly Different.Allen P. Hazen & Francis Jeffry Pelletier - 2014 - Studia Logica 102 (6):1103-1142.
    Gentzen’s and Jaśkowski’s formulations of natural deduction are logically equivalent in the normal sense of those words. However, Gentzen’s formulation more straightforwardly lends itself both to a normalization theorem and to a theory of “meaning” for connectives . The present paper investigates cases where Jaskowski’s formulation seems better suited. These cases range from the phenomenology and epistemology of proof construction to the ways to incorporate novel logical connectives into the language. We close with a demonstration of this latter aspect by (...)
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  • A definition of truth for theories with intensional definite description operators.Richard E. Grandy - 1972 - Journal of Philosophical Logic 1 (2):137--155.
  • Reasoning about partial functions with the aid of a computer.William M. Farmer - 1995 - Erkenntnis 43 (3):279 - 294.
    Partial functions are ubiquitous in both mathematics and computer science. Therefore, it is imperative that the underlying logical formalism for a general-purpose mechanized mathematics system provide strong support for reasoning about partial functions. Unfortunately, the common logical formalisms — first-order logic, type theory, and set theory — are usually only adequate for reasoning about partial functionsin theory. However, the approach to partial functions traditionally employed by mathematicians is quite adequatein practice. This paper shows how the traditional approach to partial functions (...)
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  • Denotationless terms and predicates expressive of positive qualities.Rolf A. Eberle - 1969 - Theoria 35 (2):104-123.
  • Jaśkowski’s Universally Free Logic.Ermanno Bencivenga - 2014 - Studia Logica 102 (6):1095-1102.
    A universally free logic is a system of quantification theory, with or without identity, whose theses remain logically true if the domain of quantification is empty and some of the singular terms present in the language do not denote existing objects. In the West, logics satisfying and ones satisfying were developed starting in the 1950s. But Stanisław Jaśkowski preceded all this work by some twenty years: his paper “On the Rules of Supposition in Formal Logic” of 1934 can be regarded (...)
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  • Tautological entailments.Alan Ross Anderson & Nuel D. Belnap - 1962 - Philosophical Studies 13 (1-2):9 - 24.
  • Symmetry and Hybrid Contingentism.Maegan Fairchild - forthcoming - In Peter Fritz & Nicholas K. Jones (eds.), Higher-order Metaphysics. Oxford University Press.
    This paper outlines a defense of hybrid contingentism: that it is contingent which individuals there are, but not contingent what properties there are. Critics pursue two main lines of complaint. First, that the hybrid contingentist’s treatment of haecceitistic properties is metaphysically mysterious, and second, that hybrid contingentism involves an unjustified asymmetry in the associated modal logic. I suggest that these complaints may be too quick, at least in the setting of higher-order metaphysics. It is not at all obvious whether and (...)
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  • Scientific Coordination beyond the A Priori: A Three-dimensional Account of Constitutive Elements in Scientific Practice.Michele Luchetti - 2020 - Dissertation, Central European University
    In this dissertation, I present a novel account of the components that have a peculiar epistemic role in our scientific inquiries, since they contribute to establishing a form of coordination. The issue of coordination is a classic epistemic problem concerning how we justify our use of abstract conceptual tools to represent concrete phenomena. For instance, how could we get to represent universal gravitation as a mathematical formula or temperature by means of a numerical scale? This problem is particularly pressing when (...)
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  • Cut Elimination for Gentzen's Sequent Calculus with Equality and Logic of Partial Terms.Franco Parlamento & Flavio Previale - 2013 - In Kamal Lodaya (ed.), Logic and its Applications. Springer. pp. 161--172.
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