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  1. Preservation of admissible rules when combining logics.João Rasga, Cristina Sernadas & Amílcar Sernadas - 2016 - Review of Symbolic Logic 9 (4):641-663.
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  • Truth-values as labels: a general recipe for labelled deduction.Cristina Sernadas, Luca Viganò, João Rasga & Amílcar Sernadas - 2003 - Journal of Applied Non-Classical Logics 13 (3):277-315.
    We introduce a general recipe for presenting non-classical logics in a modular and uniform way as labelled deduction systems. Our recipe is based on a labelling mechanism where labels are general entities that are present, in one way or another, in all logics, namely truth-values. More specifically, the main idea underlying our approach is the use of algebras of truth-values, whose operators reflect the semantics we have in mind, as the labelling algebras of our labelled deduction systems. The “truth-values as (...)
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  • On Combined Connectives.A. Sernadas, C. Sernadas & J. Rasga - 2011 - Logica Universalis 5 (2):205-224.
    Combined connectives arise in combined logics. In fibrings, such combined connectives are known as shared connectives and inherit the logical properties of each component. A new way of combining connectives (and other language constructors of propositional nature) is proposed by inheriting only the common logical properties of the components. A sound and complete calculus is provided for reasoning about the latter. The calculus is shown to be a conservative extension of the original calculus. Examples are provided contributing to a better (...)
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  • Importing Logics: Soundness and Completeness Preservation. [REVIEW]J. Rasga, A. Sernadas & C. Sernadas - 2013 - Studia Logica 101 (1):117-155.
    Importing subsumes several asymmetric ways of combining logics, including modalization and temporalization. A calculus is provided for importing, inheriting the axioms and rules from the given logics and including additional rules for lifting derivations from the imported logic. The calculus is shown to be sound and concretely complete with respect to the semantics of importing as proposed in J. Rasga et al. (100(3):541–581, 2012) Studia Logica.
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  • Fibring as Biporting Subsumes Asymmetric Combinations.J. Rasga, A. Sernadas & C. Sernadas - 2014 - Studia Logica 102 (5):1041-1074.
    The transference of preservation results between importing and unconstrained fibring is investigated. For that purpose, a new formulation of fibring, called biporting, is introduced, and importing is shown to be subsumed by biporting. In consequence, particular cases of importing, like temporalization, modalization and globalization are subsumed by fibring. Capitalizing on these results, the preservation of the finite model property by fibring is transferred to importing and then carried over to globalization.
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  • Decidability and complexity of fibred logics without shared connectives.Sérgio Marcelino & Carlos Caleiro - 2016 - Logic Journal of the IGPL 24 (5).
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  • Failure of Interpolation in Combined Modal Logics.Maarten Marx & Carlos Areces - 1998 - Notre Dame Journal of Formal Logic 39 (2):253-273.
    We investigate transfer of interpolation in such combinations of modal logic which lead to interaction of the modalities. Combining logics by taking products often blocks transfer of interpolation. The same holds for combinations by taking unions, a generalization of Humberstone's inaccessibility logic. Viewing first-order logic as a product of modal logics, we derive a strong counterexample for failure of interpolation in the finite variable fragments of first-order logic. We provide a simple condition stated only in terms of frames and bisimulations (...)
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  • 2005–06 Winter Meeting of the Association for Symbolic Logic.Haim Gaifman - 2006 - Bulletin of Symbolic Logic 12 (3):503-516.
  • Labelled resolution for classical and non-classical logics.D. M. Gabbay & U. Reyle - 1997 - Studia Logica 59 (2):179-216.
    Resolution is an effective deduction procedure for classical logic. There is no similar "resolution" system for non-classical logics (though there are various automated deduction systems). The paper presents resolution systems for intuistionistic predicate logic as well as for modal and temporal logics within the framework of labelled deductive systems. Whereas in classical predicate logic resolution is applied to literals, in our system resolution is applied to L(abelled) R(epresentation) S(tructures). Proofs are discovered by a refutation procedure defined on LRSs, that imposes (...)
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  • Combining Valuations with Society Semantics.Víctor L. Fernández & Marcelo E. Coniglio - 2003 - Journal of Applied Non-Classical Logics 13 (1):21-46.
    Society Semantics, introduced by W. Carnielli and M. Lima-Marques, is a method for obtaining new logics from the combination of agents of a given logic. The goal of this paper is to present several generalizations of this method, as well as to show some applications to many-valued logics. After a reformulation of Society Semantics in a wider setting, we develop in detail two examples of application of the new formalism, characterizing a hierarchy of paraconsistent logics called Pn and a hierarchy (...)
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  • Clausal resolution in a logic of rational agency.Clare Dixon, Michael Fisher & Alexander Bolotov - 2002 - Artificial Intelligence 139 (1):47-89.
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  • Algebraizable logics and a functorial encoding of its morphisms.Darllan Conceição Pinto & Hugo Luiz Mariano - 2017 - Logic Journal of the IGPL 25 (4):524-561.
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  • Logics of Kripke meta-models.Sergey Babenyshev & Vladimir Rybakov - 2010 - Logic Journal of the IGPL 18 (6):823-836.
    This paper introduces and studies a new type of logical construction, which allows to combine various non-classical propositional logics with the temporal or modal background. The possible candidates include a number of epistemic, multi-agent, deontological and other well-studied logics. In this construction, that we call refinement, the Kripke structure of a chosen Kripke complete logic is imposed on clusters of the background transitive frame. Refinements fit in a wider framework of fibred logics, while having some unique features. First of all, (...)
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  • Of the association for symbolic logic.Sergei Artemov, Peter Koellner, Michael Rabin, Jeremy Avigad, Wilfried Sieg, William Tait & Haim Gaifman - 2006 - Bulletin of Symbolic Logic 12 (3-4):503.
  • A Kripke semantics for the logic of Gelfand quantales.Gerard Allwein & Wendy MacCaull - 2001 - Studia Logica 68 (2):173-228.
    Gelfand quantales are complete unital quantales with an involution, *, satisfying the property that for any element a, if a b a for all b, then a a* a = a. A Hilbert-style axiom system is given for a propositional logic, called Gelfand Logic, which is sound and complete with respect to Gelfand quantales. A Kripke semantics is presented for which the soundness and completeness of Gelfand logic is shown. The completeness theorem relies on a Stone style representation theorem for (...)
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