Fermat quotient

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1WIEFERICH PAST AND FUTURE NICHOLAS M. KATZ 1. The early history Fermat’s Last Theorem (FLT) is the assertion that for n ≥ 3, the equation X n + Y n = Z n has no solutions in integers X, Y, Z with XY Z 6= 0. It was pr

WIEFERICH PAST AND FUTURE NICHOLAS M. KATZ 1. The early history Fermat’s Last Theorem (FLT) is the assertion that for n ≥ 3, the equation X n + Y n = Z n has no solutions in integers X, Y, Z with XY Z 6= 0. It was pr

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Source URL: web.math.princeton.edu

Language: English - Date: 2013-10-15 16:12:04
2Mod p3 analogues of theorems of Gauss and Jacobi on binomial coefficients John B. Cosgrave1 , Karl Dilcher2  1 Dublin,

Mod p3 analogues of theorems of Gauss and Jacobi on binomial coefficients John B. Cosgrave1 , Karl Dilcher2 1 Dublin,

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Source URL: www.fields.utoronto.ca

Language: English - Date: 2009-09-29 09:20:19
3Acta Mathematica Universitatis Ostraviensis  Jiří Klaška

Acta Mathematica Universitatis Ostraviensis Jiří Klaška

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Source URL: dml.cz

Language: English
4Serdica J. Computing[removed]), 293–300  SEARCH FOR WIEFERICH PRIMES THROUGH THE USE

Serdica J. Computing[removed]), 293–300 SEARCH FOR WIEFERICH PRIMES THROUGH THE USE

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Source URL: sci-gems.math.bas.bg

Language: English - Date: 2011-06-11 19:00:26
5

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Source URL: www.math.dartmouth.edu

Language: English - Date: 2005-03-02 15:21:07
6

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Source URL: arxiv.org

Language: English - Date: 2012-12-17 20:21:28
7

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Source URL: gauss.dartmouth.edu

Language: English
8

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Source URL: web.science.mq.edu.au

Language: English - Date: 2005-01-29 10:13:20