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  1. A completeness proof for a logic with an alternative necessity operator.Stéphane Demri - 1997 - Studia Logica 58 (1):99-112.
    We show the completeness of a Hilbert-style system LK defined by M. Valiev involving the knowledge operator K dedicated to the reasoning with incomplete information. The completeness proof uses a variant of Makinson's canonical model construction. Furthermore we prove that the theoremhood problem for LK is co-NP-complete, using techniques similar to those used to prove that the satisfiability problem for propositional S5 is NP-complete.
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  • Necessity and contingency.M. J. Cresswell - 1988 - Studia Logica 47 (2):145 - 149.
    The paper considers the question of when the operator L of necessity in modal logic can be expressed in terms of the operator meaning it is non-contingent that.
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  • Knowledge and Belief: An Introduction to the Logic of the Two Notions.Jaakko Hintikka - 1962 - Studia Logica 16:119-122.
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  • Knowledge and belief.Jaakko Hintikka - 1962 - Ithaca, N.Y.,: Cornell University Press.
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  • Logic For Reasoning About Knowledge.Ewa Orlowska - 1989 - Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 35 (6):559-572.
    One of the important issues in research on knowledge based computer systems is development of methods for reasoning about knowledge. In the present paper semantics for knowledge operators is introduced. The underlying logic is developed with epistemic operators relative to indiscernibility. Facts about knowledge expressible in the logic are discussed, in particular common knowledge and joint knowledge of n group of agents. Some paradoxes of epistemic logic are shown to be eliminated in the given system. A formal logical analysis of (...)
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  • On Some Completeness Theorems in Modal Logic.D. Makinson - 1966 - Mathematical Logic Quarterly 12 (1):379-384.
    Gives the first published adaptation of the Lindenbaum/Henkin method of maximal consistent sets for establishing the completeness of modal propositional logics with respect to the relational models of Kripke.
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  • A logic for reasoning about relative similarity.Beata Konikowska - 1997 - Studia Logica 58 (1):185-226.
    A similarity relation is a reflexive and symmetric binary relation between objects. Similarity is relative: it depends on the set of properties of objects used in determining their similarity or dissimilarity. A multi-modal logical language for reasoning about relative similarities is presented. The modalities correspond semantically to the upper and lower approximations of a set of objects by similarity relations corresponding to all subsets of a given set of properties of objects. A complete deduction system for the language is presented.
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  • A guide to completeness and complexity for modal logics of knowledge and belief.Joseph Y. Halpern & Yoram Moses - 1992 - Artificial Intelligence 54 (3):319-379.
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  • The Price of Universality.Edith Hemaspaandra - 1996 - Notre Dame Journal of Formal Logic 37 (2):174-203.
    We investigate the effect on the complexity of adding the universal modality and the reflexive transitive closure modality to modal logics. From the examples in the literature, one might conjecture that adding the reflexive transitive closure modality is at least as hard as adding the universal modality, and that adding either of these modalities to a multi-modal logic where the modalities do not interact can only increase the complexity to EXPTIME-complete. We show that the first conjecture holds under reasonable assumptions (...)
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  • Logic For Reasoning About Knowledge.Ewa Orlowska - 1987 - Bulletin of the Section of Logic 16 (1):26-36.
    One of the important issues in research on knowledge based computer systems is development of methods for reasoning about knowledge. In the present paper semantics for knowledge operators is introduced. The underlying logic is developed with epistemic operators relative to indiscernibility. Facts about knowledge expressible in the logic are discussed, in particular common knowledge and joint knowledge of n group of agents. Some paradoxes of epistemic logic are shown to be eliminated in the given system. A formal logical analysis of (...)
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  • Non-contingency axioms for S4 and S5.H. Montgomery & Richard Routley - 1968 - Logique Et Analyse 11:422-424.
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