Properties of a quadratic Fibonacci recurrence.
Duke, W., Greenfield, Stephen J., Speer, Eugene R. (1998)
Journal of Integer Sequences [electronic only]
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Duke, W., Greenfield, Stephen J., Speer, Eugene R. (1998)
Journal of Integer Sequences [electronic only]
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Filipczak, Tomasz (2015-12-07T12:09:00Z)
Acta Universitatis Lodziensis. Folia Mathematica
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Pinthira Tangsupphathawat, Narong Punnim, Vichian Laohakosol (2012)
Colloquium Mathematicae
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The problem whether each element of a sequence satisfying a fourth order linear recurrence with integer coefficients is nonnegative, referred to as the Positivity Problem for fourth order linear recurrence sequence, is shown to be decidable.
Ekhad, Shalosh B., Mohammed, Mohamud (2003)
Integers
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S. Lewanowicz (1976)
Applicationes Mathematicae
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Cossali, G.E. (2003)
Journal of Integer Sequences [electronic only]
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Pablo Sáez, Xavier Vidaux (2011)
Acta Arithmetica
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Mohammad Farrokhi, D.G. (2009)
Integers
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Loehr, Nicholas A., Savage, Carla D. (2010)
Integers
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Amdeberhan, Tewodros (2010)
Integers
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Diego Marques, Alain Togbé (2011)
Colloquium Mathematicae
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In 2000, Florian Luca proved that F₁₀ = 55 and L₅ = 11 are the largest numbers with only one distinct digit in the Fibonacci and Lucas sequences, respectively. In this paper, we find terms of a linear recurrence sequence with only one block of digits in its expansion in base g ≥ 2. As an application, we generalize Luca's result by finding the Fibonacci and Lucas numbers with only one distinct block of digits of length up to 10 in its decimal expansion.
Gould, H.W., Quaintance, Jocelyn (2007)
Integers
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Kiliç, Emrah, Tan, Elif (2010)
Integers
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Antzoulakos, Demetrios L. (2004)
International Journal of Mathematics and Mathematical Sciences
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Alexey Stakhov (2012)
Visual Mathematics
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