23 found
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  1.  62
    Weak Logics with Strict Implication.Giovanna Corsi - 1987 - Mathematical Logic Quarterly 33 (5):389-406.
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  2.  36
    Free Quantified Epistemic Logics.Giovanna Corsi & Eugenio Orlandelli - 2013 - Studia Logica 101 (6):1159-1183.
    The paper presents an epistemic logic with quantification over agents of knowledge and with a syntactical distinction between de re and de dicto occurrences of terms. Knowledge de dicto is characterized as ‘knowledge that’, and knowlegde de re as ‘knowledge of’. Transition semantics turns out to be an adequate tool to account for the distinctions introduced.
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  3.  33
    Completeness theorem for Dummett's LC quantified and some of its extensions.Giovanna Corsi - 1992 - Studia Logica 51 (2):317 - 335.
    Dummett's logic LC quantified, Q-LC, is shown to be characterized by the extended frame Q+, ,D, where Q+ is the set of non-negative rational numbers, is the numerical relation less or equal then and D is the domain function such that for all v, w Q+, Dv and if v w, then D v . D v D w . Moreover, simple completeness proofs of extensions of Q-LC are given.
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  4.  37
    Directed frames.Giovanna Corsi & Silvio Ghilardi - 1989 - Archive for Mathematical Logic 29 (1):53-67.
    Predicate extensions of the intermediate logic of the weak excluded middle and of the modal logic S4.2 are introduced and investigated. In particular it is shown that some of them are characterized by subclasses of the class of directed frames with either constant or nested domains.
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  5. A unified completeness theorem for quantified modal logics.Giovanna Corsi - 2002 - Journal of Symbolic Logic 67 (4):1483-1510.
    A general strategy for proving completeness theorems for quantified modal logics is provided. Starting from free quantified modal logic K, with or without identity, extensions obtained either by adding the principle of universal instantiation or the converse of the Barcan formula or the Barcan formula are considered and proved complete in a uniform way. Completeness theorems are also shown for systems with the extended Barcan rule as well as for some quantified extensions of the modal logic B. The incompleteness of (...)
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  6.  14
    A Cut‐Free Calculus For Dummett's LC Quantified.Giovanna Corsi - 1989 - Mathematical Logic Quarterly 35 (4):289-301.
  7. A Unified Completeness Theorem For Quantified Modal Logics.Giovanna Corsi - 2002 - Journal of Symbolic Logic 67 (4):1483-1510.
     
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  8.  32
    A Cut-Free Calculus For Dummett's LC Quantified.Giovanna Corsi - 1989 - Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 35 (4):289-301.
  9.  19
    A logic characterized by the class of connected models with nested domains.Giovanna Corsi - 1989 - Studia Logica 48 (1):15 - 22.
    The main aim of this paper is to introduce the logic QE-LC whose language contains the existence predicate E and which is characterized by the class of connected (Kripke) E-models with nested domains.
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  10.  29
    Semantic trees for Dummett's logic LC.Giovanna Corsi - 1986 - Studia Logica 45 (2):199-206.
    The aim of this paper is to provide a decision procedure for Dummett's logic LC, such that with any given formula will be associated either a proof in a sequent calculus equivalent to LC or a finite linear Kripke countermodel.
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  11. Problems in Set Theory, Mathematical Logic and the Theory of Algorithms.Igor Lavrov, Larisa Maksimova & Giovanna Corsi - 2005 - Studia Logica 79 (3):409-410.
     
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  12. Bf, Cbf And Lewis Semantics.Giovanna Corsi - 2003 - Logique Et Analyse 46.
     
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  13.  13
    Quantified Modal Logic With Rigid Terms.Giovanna Corsi - 1988 - Mathematical Logic Quarterly 34 (3):251-259.
  14.  32
    Quantified Modal Logic With Rigid Terms.Giovanna Corsi - 1988 - Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 34 (3):251-259.
  15.  35
    Quantified modal logics of positive rational numbers and some related systems.Giovanna Corsi - 1993 - Notre Dame Journal of Formal Logic 34 (2):263-283.
  16.  30
    Bull's theorem by the method of diagrams.Giovanna Corsi - 1999 - Studia Logica 62 (2):163-176.
    We show how to use diagrams in order to obtain straightforward completeness theorems for extensions of K4.3 and a very simple and constructive proof of Bull's theorem: every normal extension of S4.3 has the finite model property.
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  17. Bridging the Gap: Philosophy, Mathematics and Physics Lectures on the Foundations of Science.Giovanna Corsi, Maria Luisa Dalla Chiara & Gian Carlo Ghirardi - 1994 - Studia Logica 53 (3):462-464.
     
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  18.  8
    Bridging the Gap: Philosophy, Mathematics, and Physics: Lectures on the Foundations of Science: International School of Philosophy of Science: Papers.Giovanna Corsi, María Luisa Dalla Chiara & Gian Carlo Ghirardi (eds.) - 1992 - Dordrecht and Boston: Kluwer Academic Publishers.
    Foundational questions in logic, mathematics, computer science and physics are constant sources of epistemological debate in contemporary philosophy. To what extent is the transfinite part of mathematics completely trustworthy? Why is there a general 'malaise' concerning the logical approach to the foundations of mathematics? What is the role of symmetry in physics? Is it possible to build a coherent worldview compatible with a macroobjectivistic position and based on the quantum picture of the world? What account can be given of opinion (...)
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  19.  19
    Deduction, Computation, Experiment: Exploring the Effectiveness of Proof.Giovanna Corsi & Rossella Lupacchini (eds.) - 2008 - Berlin and Milano: Springer.
    The essays collected in this volume address such questions from different points of view and will interest students and scholars in several branches of scientific knowledge.
  20.  19
    Review. The logical status of diagrams. S-J Shin.Giovanna Corsi - 1997 - British Journal for the Philosophy of Science 48 (2):290-291.
  21.  35
    Intuitionistic Logic Freed of All Metarules.Giovanna Corsi & Gabriele Tassi - 2007 - Journal of Symbolic Logic 72 (4):1204 - 1218.
    In this paper we present two calculi for intuitionistic logic. The first one, IG, is characterized by the fact that every proof-search terminates and termination is reached without jeopardizing the subformula property. As to the second one, SIC, proof-search terminates, the subformula property is preserved and moreover proof-search is performed without any recourse to metarules, in particular there is no need to back-track. As a consequence, proof-search in the calculus SIC is accomplished by a single tree as in classical logic.
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  22. Problems in Set Theory, Mathematical Logic and the Theory of Algorithms.Igor Lavrov, Larisa Maksimova, Giovanna Corsi & Valentin Shehtman - 2005 - Studia Logica 81 (2):283-285.
     
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  23.  11
    Review. The logical status of diagrams. S-J Shin. [REVIEW]Giovanna Corsi - 1997 - British Journal for the Philosophy of Science 48 (2):290-291.
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