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Titlebook: Smart Education and e-Learning 2021; Vladimir L. Uskov,Robert J. Howlett,Lakhmi C. Jain Conference proceedings 2021 The Editor(s) (if appl

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Hengbin Yan,Yinghui Lir. Classical attempts to construct functional . programs from input/output-examples are ., i.e., a . program belonging to a strongly restricted program class is algorithmically derived from examples. More recent approaches enumerate candidate programs and only . them against the examples until a pro
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Yuliana Mercedes De La Cruz-Ramirez,Augusto Felix Olaza-Maguiñafication method based on the specialization of constraint logic programs (CLP). First, we reformulate the verification method as a two-phase procedure: (1) in the first phase a CLP specification of an infinite state system is specialized with respect to the initial state of the system and the tempor
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ple imperative language, called SIMP, extended with a nondeterministic choice operator and we address the problem of checking whether or not a . property . (that specifies that an . configuration cannot be reached) holds for a SIMP program .. The operational semantics of the language SIMP is specifi
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Andrea Montefusco,Federica Angeli,Nunzio Casalinoogic programs, thereby allowing us to reason about infinite sequences of events such as behavior of reactive systems. The main problem with this approach is that only definite co-logic programs are considered, thus representing a rather narrow class of co-logic programs. In this paper we consider ”n
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Federico Flavianiscience and mathematics, is specifically designed for a first course in mathematical logic.A proof of Gödel‘s completeness theorem and its main consequences is given using Robinson‘s completeness theorem and Gödel‘s compactness theorem for propositionallogic. The reader will familiarize himself with
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