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Titlebook: Rule Technologies. Research, Tools, and Applications; 10th International S Jose Julio Alferes,Leopoldo Bertossi,Dumitru Roman Conference pr

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Bridge Rules for Reasoning in Component-Based Heterogeneous Environments rules called “bridge rules”. In this paper we consider how to enhance flexibility and generality of such systems; in particular, we discuss aspects that might be improved to increase practical applicability.
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Choreographic Compilation of Decentralized Comprehension PatternsThe high-level language is a form of multiset rewriting augmented with comprehension patterns. It enables a programmer to describe the behavior of a distributed system as a whole rather than from the perspective of the individual nodes, thus dramatically reducing opportunities for programmer errors.
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Minimal Objectification and Maximal Unnesting in PSOA RuleMLtionally, that directly handles atoms (i.e., predicate applications) without object identifiers (e.g., relationships as in Prolog) and (2) a transformational semantics that handles nested atomic formulas (e.g., nested frames as in Flora-2/F-logic). For (1), the model theory is extended to atoms with
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Setting Standards for Altering and Undoing Smart Contractsaltering and undoing contracts. Unfortunately, these tools often fail when applied to smart contracts. It is therefore necessary to define a new set of standards for the altering and undoing of smart contracts. These standards might ensure that the tools we use to alter and undo smart contracts achi
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A Numerical Optimisation Based Characterisation of Spatial Reasoningplemented within CLP— is developed as an extension to CLP(QS), a declarative spatial reasoning framework providing a range of mixed quantitative-qualitative spatial representation and reasoning capabilities. We demonstrate the manner in which the numerical optimisation based extensions further enhan
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Why Can’t You Behave? Non-termination Analysis of Direct Recursive Rules with Constraintsion. We propose a static program analysis of the non-termination problem for recursion in the Constraint Handling Rules (CHR) language..CHR is an advanced concurrent declarative language involving constraint reasoning. It has been closely related to many other rule-based approaches, so the results a
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