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The complexity of theorem-proving procedures

Published: 03 May 1971 Publication History

Abstract

It is shown that any recognition problem solved by a polynomial time-bounded nondeterministic Turing machine can be “reduced” to the problem of determining whether a given propositional formula is a tautology. Here “reduced” means, roughly speaking, that the first problem can be solved deterministically in polynomial time provided an oracle is available for solving the second. From this notion of reducible, polynomial degrees of difficulty are defined, and it is shown that the problem of determining tautologyhood has the same polynomial degree as the problem of determining whether the first of two given graphs is isomorphic to a subgraph of the second. Other examples are discussed. A method of measuring the complexity of proof procedures for the predicate calculus is introduced and discussed.

References

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D. L. Kreider and R. W. Ritchie: Predictably Computable Functionals and Definitions by Recursion. Zeitschrift für math. Logik und Grundlagen der Math., Vol. 10, 65-80 (1964).
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S. A. Cook: Characterizations of Pushdown Machines in terms of Time-Bounded Computers. |J. Assoc. Computing Machinery,\ Vol. 18, No. 1, Jan. 1971, pp 4-18.
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Cobham, Alan: The intrinsic computational difficulty of functions. Proc. of the 1964 International Congress for Logic, Methodology, and the Philosophy of Science, North Holland Publishing Co., Amsterdam, pp. 24-30.
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D. G. Corneil and C. C. Gotlieb: An Efficient Algorithm for Graph Isomorphism. J. Assoc Computing Machinery Vol. 17, No. 1, Jan. 1970, pp 51-64.
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M. Davis and H. Putnam: A Computing Procedure for Quantification Theory. J. Assoc. Computing Machinery, 1960, pp. 201-215.
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J. H. Bennett: On Spectra. Doctoral Dissertation, Princeton University, 1962.
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Hao Wang: Dominoes and the AEA case of the decision problems. Proc. of the Symposium on Mathematical Theory of Automata, at Polytechnic Institute of Brooklyn, 1962. pp. 23-55.
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John Hopcroft and Jeffrey Ullman: Formal Languages and their Relation to Automata. Addison-Wesley, 1969.

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cover image ACM Conferences
STOC '71: Proceedings of the third annual ACM symposium on Theory of computing
May 1971
270 pages
ISBN:9781450374644
DOI:10.1145/800157
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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Published: 03 May 1971

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STOC '71 Paper Acceptance Rate 23 of 50 submissions, 46%;
Overall Acceptance Rate 1,469 of 4,586 submissions, 32%

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