Several Congruences Related to Harmonic Numbers

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Abstract

Let p be a prime greater than or equal to 5. In this paper, by using the harmonic numbers and Fermat quotient we establish congruences involving the sums p−1 X2 k=1 µ k r ¶ Hk, p−1 X2 k=1 ¡ 2k k ¢2 16k H (2) k and p−1 X2 k=1 1 4 k µ 2k k ¶ H (3) k . For example, p−1 X2 k=0 ¡ 2k k ¢2 16k H (2) k ≡ 4E2p−4 − 8Ep−3 ¡ mod p 2 ¢ , where H (m) k are the generalized harmonic numbers of order m and En are Euler numbers

Publisher

Department of Mathematics, University of the Punjab

Subject

Pharmacology (medical)

Reference12 articles.

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2. [2] H. W. Gould, Combinatorial identities: A standardized set of tables listing 500 binomial coefficient summations, Second Edition, viii + 106 pp., Published by the author, Morgantown, W.Va, 1972.

3. [3] K. Ireland and M. Rosen, A Classical Introduction to Modern Number Theory, Springer-Verlag, New York, 1982.

4. [4] H. T. Jin and D. K. Du, Abel’s lemma and identities on harmonic numbers, Integers, 15 (2015), #A22.

5. [5] S. Koparal and N. Om¨ ur, ¨ On congruences related to central binomial coefficients, harmonic and Lucas numbers, Turkish J. Math. 40 (2016) 973-985.

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