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Results: 1 to 30 of 79 found      Go to page: 1 2 3

[1] Thomas Barron, Christopher O’Neill and Roberto Pelayo. On dynamic algorithms for factorization invariants in numerical monoids. Math. Comp.
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[2] Jonathan Sorenson and Jonathan Webster. Strong pseudoprimes to twelve prime bases. Math. Comp. 86 (2017) 985-1003.
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[3] Alexander Abatzoglou, Alice Silverberg, Andrew V. Sutherland and Angela Wong. A framework for deterministic primality proving using elliptic curves with complex multiplication. Math. Comp. 85 (2016) 1461-1483.
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[4] Eric Bach and Andrew Shallue. Counting composites with two strong liars. Math. Comp. 84 (2015) 3069-3089.
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[5] Yannick Saouter, Timothy Trudgian and Patrick Demichel. A still sharper region where $\pi(x)-{\mathrm{li}}(x)$ is positive. Math. Comp. 84 (2015) 2433-2446.
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[6] José María Grau, Antonio M. Oller-Marcén and Daniel Sadornil. A primality test for $Kp^n+1$ numbers. Math. Comp. 84 (2015) 505-512.
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[7] Yupeng Jiang and Yingpu Deng. Strong pseudoprimes to the first eight prime bases. Math. Comp. 83 (2014) 2915-2924.
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[8] Zhenxiang Zhang. Estimating the counts of Carmichael and Williams numbers with small multiple seeds. Math. Comp. 84 (2015) 309-337.
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[9] Yannick Saouter and Herman te Riele. Improved results on the Mertens conjecture. Math. Comp. 83 (2014) 421-433.
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[10] San Ling, Enver Ozdemir and Chaoping Xing. Constructing irreducible polynomials over finite fields. Math. Comp. 81 (2012) 1663-1668.
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[11] Zhenxiang Zhang. Notes on some new kinds of pseudoprimes. Math. Comp. 75 (2006) 451-460. MR 2176408.
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[12] Anders Björn and Hans Riesel. Table errata to ``Factors of generalized Fermat numbers''. Math. Comp. 74 (2005) 2099-2099. MR 1314895.
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[13] Pedro Berrizbeitia. Sharpening ``Primes is in P'' for a large family of numbers. Math. Comp. 74 (2005) 2043-2059. MR 2164112.
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[14] Jerzy Browkin. Erratum to ``Some new kinds of pseudoprimes''. Math. Comp. 74 (2005) 1573-1573. MR 2099412.
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[15] Zhenxiang Zhang. Finding $C_3$-strong pseudoprimes. Math. Comp. 74 (2005) 1009-1024. MR 2114662.
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[16] A. O. L. Atkin and D. J. Bernstein. Prime sieves using binary quadratic forms. Math. Comp. 73 (2004) 1023-1030. MR 2031423.
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[17] Jerzy Browkin. Some new kinds of pseudoprimes. Math. Comp. 73 (2004) 1031-1037. MR 2031424.
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[18] Pedro Berrizbeitia and T. G. Berry. Biquadratic reciprocity and a Lucasian primality test. Math. Comp. 73 (2004) 1559-1564. MR 2047101.
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[19] Zhenxiang Zhang and Min Tang. Finding strong pseudoprimes to several bases. II. Math. Comp. 72 (2003) 2085-2097. MR 1986825.
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[20] Richard E. Crandall, Ernst W. Mayer and Jason S. Papadopoulos. The twenty-fourth Fermat number is composite. Math. Comp. 72 (2003) 1555-1572. MR 1972753.
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[21] Zhenxiang Zhang. A one-parameter quadratic-base version of the Baillie-PSW probable prime test. Math. Comp. 71 (2002) 1699-1734. MR 1933051.
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[22] Andrew Granville and Carl Pomerance. Two contradictory conjectures concerning Carmichael numbers. Math. Comp. 71 (2002) 883-908. MR 1885636.
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[23] Harvey Dubner and Yves Gallot. Distribution of generalized Fermat prime numbers. Math. Comp. 71 (2002) 825-832. MR 1885631.
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[24] Pamela A. Cutter. Finding prime pairs with particular gaps. Math. Comp. 70 (2001) 1737-1744. MR 1836931.
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[25] Jon Grantham. Frobenius pseudoprimes. Math. Comp. 70 (2001) 873-891. MR 1680879.
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[26] R. P. Brent, R. E. Crandall, K. Dilcher and C. Van Halewyn. Three new factors of Fermat numbers. Math. Comp. 69 (2000) 1297-1304. MR 1697645.
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[27] Andreas Stein and H. C. Williams. Explicit primality criteria for $(p-1)p^n-1$. Math. Comp. 69 (2000) 1721-1734. MR 1697651.
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[28] Zhenxiang Zhang. Finding strong pseudoprimes to several bases. Math. Comp. 70 (2001) 863-872. MR 1697654.
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[29] Everett W. Howe. Higher-order Carmichael numbers. Math. Comp. 69 (2000) 1711-1719. MR 1709151.
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[30] Tony Forbes. Prime clusters and Cunningham chains. Math. Comp. 68 (1999) 1739-1747. MR 1651752.
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Results: 1 to 30 of 79 found      Go to page: 1 2 3


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