The CADE-25 Automated Theorem Proving system competition – CASC-25

Author:

Sutcliffe Geoff1,Urban Josef2

Affiliation:

1. Department of Computer Science, University of Miami, Miami, USA. E-mail: geoff@cs.miami.edu

2. Intelligent Systems ICIS, Radboud Universiteit, Nijmegen, The Netherlands

Publisher

IOS Press

Subject

Artificial Intelligence

Reference17 articles.

1. P. Backeman and P. Rümmer, Efficient algorithms for bounded rigid E-unification, in: Proceedings of the 24th Conference on Automated Reasoning with Analytic Tableaux and Related Methods, H. de Nivelle, ed., Lecture Notes in Computer Science, Vol. 9323, Springer-Verlag, 2015, pp. 70–85.

2. P. Backeman and P. Rümmer, Theorem proving with bounded rigid E-unification, in: Proceedings of the 25th International Conference on Automated Deduction, A. Felty and A. Middeldorp, eds, Lecture Notes in Computer Science, Vol. 9195, Springer-Verlag, 2015, pp. 572–587.

3. R. Bonichon, D. Delahaye and D. Doligez, Zenon: An extensible automated theorem prover producing checkable proofs, in: Proceedings of the 14th International Conference on Logic for Programming, Artificial Intelligence, and Reasoning, N. Dershowitz and A. Voronkov, eds, Lecture Notes in Artificial Intelligence, Vol. 4790, 2007, pp. 151–165.

4. G. Bury and D. Delahaye, Integrating simplex with tableaux, in: Proceedings of the 24th Conference on Automated Reasoning with Analytic Tableaux and Related Methods, H. de Nivelle, ed., Lecture Notes in Computer Science, Vol. 9323, Springer-Verlag, 2015, pp. 86–101.

5. L. de Moura and N. Bjorner, Z3: An efficient SMT solver, in: Proceedings of the 14th International Conference on Tools and Algorithms for the Construction and Analysis of Systems, C. Ramakrishnan and J. Rehof, eds, Lecture Notes in Artificial Intelligence, Vol. 4963, Springer-Verlag, 2008, pp. 337–340.

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