According to a longstanding philosophical tradition dating back to Aristotle, certain proofs do not only certify the truth of their conclu- sion but also explain it. Lately, much effort is being devoted to log- ically characterise the explanatory relation of grounding, especially by proof-theoretical means. Nevertheless, no thorough investigation of the resulting notion of formal explanation exists. We show that formal explanations can be seen as logical derivations of a particu- lar kind and study the interactions between grounding and logical rules, formal explanations and logical derivations. We define a min- imal calculus that captures both grounding and logical derivability, and show by a normalisation procedure that grounding rules are proof-theoretically balanced with respect to logical elimination rules. The introduced calculus enables us to combine logical derivations and explanations, to distinguish explanatory parts of derivations from non-explanatory parts, and to compose explanations in order to construct chains of consecutive grounding steps.

Formal explanations as logical derivations / F.A. Genco. - In: JOURNAL OF APPLIED NON-CLASSICAL LOGICS. - ISSN 1166-3081. - 31:3-4(2021), pp. 279-342. [10.1080/11663081.2021.2010435]

Formal explanations as logical derivations

F.A. Genco
Primo
2021

Abstract

According to a longstanding philosophical tradition dating back to Aristotle, certain proofs do not only certify the truth of their conclu- sion but also explain it. Lately, much effort is being devoted to log- ically characterise the explanatory relation of grounding, especially by proof-theoretical means. Nevertheless, no thorough investigation of the resulting notion of formal explanation exists. We show that formal explanations can be seen as logical derivations of a particu- lar kind and study the interactions between grounding and logical rules, formal explanations and logical derivations. We define a min- imal calculus that captures both grounding and logical derivability, and show by a normalisation procedure that grounding rules are proof-theoretically balanced with respect to logical elimination rules. The introduced calculus enables us to combine logical derivations and explanations, to distinguish explanatory parts of derivations from non-explanatory parts, and to compose explanations in order to construct chains of consecutive grounding steps.
classical logic; formal explanation; Grounding; normalisation; proof theory
Settore M-FIL/02 - Logica e Filosofia della Scienza
2021
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/976268
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