
AbstractLetfn{f}_{n}be thennth Fibonacci number withf1=f2=1{f}_{1}={f}_{2}=1. Recently, the exact values of∑k=n∞1fks−1⌊{\left({\sum }_{k=n}^{\infty }\frac{1}{{f}_{k}^{s}}\right)}^{-1}⌋have been obtained only fors=1,2s=1,2, where⌊x⌋\lfloor x\rflooris the floor function. It has been an open problem fors≥3s\ge 3. In this article, we consider the case ofs=4s=4and show that∑k=n∞1fk4−1=fn4−fn−14+2(−1)n5f2n−1−n+25,⌊{\left(\mathop{\sum }\limits_{k=n}^{\infty }\frac{1}{{f}_{k}^{4}}\right)}^{-1}⌋={f}_{n}^{4}-{f}_{n-1}^{4}+\frac{2{\left(-1)}^{n}}{5}{f}_{2n-1}-\left\{\frac{n+2}{5}\right\},where{x}≔x−⌊x⌋\left\{x\right\}:= x-\lfloor x\rfloor.
lucas number, Pisano period, pisano period, 65q30, 11b39, Fibonacci number, fibonacci number, 11b50, Sequences (mod \(m\)), secondary 11y55, catalan’s identity, primary 11b37, Catalan's identity, recurrence relation, QA1-939, Lucas number, Fibonacci and Lucas numbers and polynomials and generalizations, Mathematics
lucas number, Pisano period, pisano period, 65q30, 11b39, Fibonacci number, fibonacci number, 11b50, Sequences (mod \(m\)), secondary 11y55, catalan’s identity, primary 11b37, Catalan's identity, recurrence relation, QA1-939, Lucas number, Fibonacci and Lucas numbers and polynomials and generalizations, Mathematics
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