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* [http://www.cs.us.es/~jalonso/trabajos_dirigidos/2004-tesis-MJHD.pdf Teoría computacional (en PVS) de la programación lógica y del análisis formal de conceptos (Tesis, Universidad de Sevilla, 2004)].
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* [http://www.cs.us.es/~jalonso/trabajos_dirigidos/2004-tesis-MJHD.pdf Teoría computacional (en PVS) de la programación lógica y del análisis formal de conceptos] (Tesis, Universidad de Sevilla, 2004).
 
* [http://www.cs.us.es/~mjoseh/pub/A_formally_verified_proof_PVS_strong_completeness_propositional_SLD_resolution.pdf A formally verified proof in PVS of the strong completeness theorem of propositional SLD-resolution].  
 
* [http://www.cs.us.es/~mjoseh/pub/A_formally_verified_proof_PVS_strong_completeness_propositional_SLD_resolution.pdf A formally verified proof in PVS of the strong completeness theorem of propositional SLD-resolution].  
 
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Revisión del 15:50 2 jun 2010

Title: A formally verified proof in PVS of the strong completeness theorem of propositional SLD-resolution.
Authors: José A. Alonso, María J. Hidalgo, Francisco J. Martín y José L. Ruiz Reina.
Date: 2001-2003.
Description: This theory presents a proof in PVS of the Strong Completeness of SLD-Resolution for the propositional logic. We have formalized the propositional logic programming and we have proof the equivalence between the differents semantics of the logic programs. We also transform the previous specifications of Propositional Logic into their respective executable specifications by using refinements. Finally, we verify several refutation algorithms based on breadth search, depth search and depth iterative search.
Code: You can find the PVS theories here.
Documentation: Papers and documents related with this work: