On the exponential Diophantine equation $F_{n}^{x}+F_{n+1}^{x}+\cdots+F_{n+k-1}^{x}=F_{m}$
Author:
Publisher
Adam Mickiewicz University (Euclid)
Subject
General Mathematics
Reference10 articles.
1. [1] A. Baker and H. Davenport, The equations $3x^2-2=y^2$ and $8x^2-7=z^2$, Q. J. Math, 20(1) (1969), 129-137.
2. [2] J.J. Bravo and F. Luca, Coincidences in generalized Fibonacci recurrences, J. Number Theory, 33(6) (2013), 2121-2137.
3. [3] Y. Bugeaud, M. Maurice, and S. Siksek, Classical and modular approaches to exponential Diophantine equations I. Fibonacci and Lucas perfect powers, Annals of Mathematics 163 (2006), 969-1018.
4. [4] R.D. Carmichael, On the numerical factors of the arithmetic forms $\alpha^n \pm \beta^n$, Ann. Math. (2)\ 15 (1913), 30-70.
5. [5] A. Dujella and A. Pethő, A generalization of a theorem of Baker and Davenport, Quart. J. Math. Oxford Ser. (2) 49 (1998), no. 195, 291-306.
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