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Francesco A. Genco [7]Francesco Antonio Genco [2]Francesco Genco [2]
  1.  99
    (1 other version)Conceptual (and Hence Mathematical) Explanation, Conceptual Grounding and Proof.Francesca Poggiolesi & Francesco Genco - 2021 - Erkenntnis:1-27.
    This paper studies the notions of conceptual grounding and conceptual explanation (which includes the notion of mathematical explanation), with an aim of clarifying the links between them. On the one hand, it analyses complex examples of these two notions that bring to the fore features that are easily overlooked otherwise. On the other hand, it provides a formal framework for modeling both conceptual grounding and conceptual explanation, based on the concept of proof. Inspiration and analogies are drawn with the recent (...)
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  2.  96
    Grounding, Quantifiers, and Paradoxes.Francesco A. Genco, Francesca Poggiolesi & Lorenzo Rossi - 2021 - Journal of Philosophical Logic 50 (6):1417-1448.
    The notion of grounding is usually conceived as an objective and explanatory relation. It connects two relata if one—the ground—determines or explains the other—the consequence. In the contemporary literature on grounding, much effort has been devoted to logically characterize the formal aspects of grounding, but a major hard problem remains: defining suitable grounding principles for universal and existential formulae. Indeed, several grounding principles for quantified formulae have been proposed, but all of them are exposed to paradoxes in some very natural (...)
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  3.  40
    Formal explanations as logical derivations.Francesco A. Genco - 2021 - Journal of Applied Non-Classical Logics 31 (3-4):279-342.
    According to a longstanding philosophical tradition dating back to Aristotle, certain proofs do not only certify the truth of their conclusion but also explain it. Lately, much effort is being devo...
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  4.  76
    Mīmāṃsā deontic logic: proof theory and applications.Agata Ciabattoni, Francesco Antonio Genco, Björn Lellmann & Elisa Freschi - 2015 - In Hans De Nivelle (ed.), Automated Reasoning with Analytic Tableaux and Related Methods. Springer. pp. 323--338.
  5.  46
    Understanding Prescriptive Texts: Rules and Logic as Elaborated by the Mīmāṃsā School.Elisa Freschi, Agata Ciabattoni, Francesco A. Genco & Björn Lellmann - 2017 - Journal of World Philosophies 2 (1):47-66.
    The Mīmā ṃ sā school of Indian philosophy elaborated complex ways of interpreting the prescriptive portions of the Vedic sacred texts. The present article is the result of the collaboration of a group of scholars of logic, computer science, European philosophy and Indian philosophy and aims at the individuation and analysis of the deontic system which is applied but never explicitly discussed in Mīmā ṃ sā texts. The article outlines the basic distinction between three sorts of principles —hermeneutic, linguistic and (...)
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  6.  14
    What Stands Between Grounding Rules and Logical Rules is the Excluded Middle.Francesco A. Genco - forthcoming - Review of Symbolic Logic:1-27.
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  7.  24
    Grounding operators: transitivity and trees, logicality and balance.Francesco A. Genco - 2024 - Journal of Applied Non-Classical Logics 34 (4):453-492.
    We formally investigate immediate and mediate grounding operators from an inferential perspective. We discuss the differences in behaviour displayed by several grounding operators and consider a general distinction between grounding and logical operators. Without fixing a particular notion of grounding or grounding relation, we present inferential rules that define, once a base grounding calculus has been fixed, three grounding operators: an operator for immediate grounding, one for mediate grounding – corresponding to the transitive closure of the immediate grounding one – (...)
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  8.  15
    Embedding formalisms: hypersequents and two-level systems of rule.Agata Ciabattoni & Francesco A. Genco - 2016 - In Lev Beklemishev, Stéphane Demri & András Máté (eds.), Advances in Modal Logic, Volume 11. CSLI Publications. pp. 197-216.
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  9. Mīmāṃsā deontic logic: proof theory and applications.Agata Ciabattoni, Francesco Antonio Genco, Björn Lellmann & Elisa Freschi - 2015 - In Hans De Nivelle (ed.), Automated Reasoning with Analytic Tableaux and Related Methods. Springer. pp. 323--338.
  10.  2
    A Logic of Knowledge and Justifications, with an Application to Computational Trust.Francesco A. Genco - forthcoming - Studia Logica:1-61.
    We present a logical framework that enables us to define a formal theory of computational trust in which this notion is analysed in terms of epistemic attitudes towards the possible objects of trust and in relation to existing evidence in favour of the trustworthiness of these objects. The framework is based on a quantified epistemic and justification logic featuring a non-standard handling of identities. Thus, the theory is able to account for the hyperintensional nature of computational trust. We present a (...)
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