<--- Back to Details
First PageDocument Content
Mathematics / Mathematical logic / Theoretical computer science / Automated theorem proving / Boolean algebra / Logic programming / Resolution / True quantified Boolean formula / Clause / Conflict-Driven Clause Learning / DPLL algorithm
Date: 2008-12-04 03:03:35
Mathematics
Mathematical logic
Theoretical computer science
Automated theorem proving
Boolean algebra
Logic programming
Resolution
True quantified Boolean formula
Clause
Conflict-Driven Clause Learning
DPLL algorithm

Preprocessing Techniques for QBFs Enrico Giunchiglia1 , Paolo Marin1 , and Massimo Narizzano1 DIST - Universit`a di Genova Viale Causa 13, 16145 Genova, Italy Abstract

Add to Reading List

Source URL: ceur-ws.org

Download Document from Source Website

File Size: 195,95 KB

Share Document on Facebook

Similar Documents

AHRENDT, BECKERT, HÄHNLE, MENZEL, REIF, SCHELLHORN, SCHMITT  INTEGRATING AUTOMATED AND INTERACTIVE THEOREM PROVING  1. I NTRODUCTION

AHRENDT, BECKERT, HÄHNLE, MENZEL, REIF, SCHELLHORN, SCHMITT INTEGRATING AUTOMATED AND INTERACTIVE THEOREM PROVING 1. I NTRODUCTION

DocID: 1vah4 - View Document

Automated Discovery of Inductive Theorems Keywords: theorem proving and knowledge acquisition Abstract Inductive mathematical theorems have, as a rule, historically been quite dif cult to prove – both for

Automated Discovery of Inductive Theorems Keywords: theorem proving and knowledge acquisition Abstract Inductive mathematical theorems have, as a rule, historically been quite dif cult to prove – both for

DocID: 1sXwT - View Document

Journal of Automated Reasoning manuscript No. (will be inserted by the editor) On Interpolation in Automated Theorem Proving Maria Paola Bonacina · Moa Johansson

Journal of Automated Reasoning manuscript No. (will be inserted by the editor) On Interpolation in Automated Theorem Proving Maria Paola Bonacina · Moa Johansson

DocID: 1sOSK - View Document

Microsoft Word - BlankPage

Microsoft Word - BlankPage

DocID: 1rugC - View Document

SAT-based Termination Analysis for Java Bytecode with AProVE? Carsten Fuhs LuFG Informatik 2, RWTH Aachen University, Germany

SAT-based Termination Analysis for Java Bytecode with AProVE? Carsten Fuhs LuFG Informatik 2, RWTH Aachen University, Germany

DocID: 1rrok - View Document