Pages that link to "Item:Q1352648"
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The following pages link to Effective lower bound for the \(p\)-adic distance between powers of algebraic numbers (Q1352648):
Displaying 44 items.
- On divisors of Lucas and Lehmer numbers (Q392795) (← links)
- On the Diophantine equation \(x^2 - 4p^m = \pm y^n\) (Q442163) (← links)
- Perfect powers in the summatory function of the power tower (Q719144) (← links)
- Logarithms of algebraic numbers (Q888182) (← links)
- A note on the paper by Bugeaud and Laurent ``Minoration effective de la distance \(p\)-adique entre puissances de nombres algébriques'' (Q983291) (← links)
- Effective bounds for solutions of \(S\)-unit equations and of Thue-Mahler equations (Q1273706) (← links)
- Difference between powers and squares of integers (Q1277193) (← links)
- Sums of factorials in binary recurrence sequences (Q1604981) (← links)
- Binomial coefficients and Lucas sequences (Q1604986) (← links)
- Divisibility properties of binary recurrent sequences (Q1605098) (← links)
- Effective resolution of Diophantine equations of the form \(u_n+u_m=w p_1^{z_1} \dotsm p_s^{z_s}\) (Q1692331) (← links)
- On the convergence of series of reciprocals of primes related to the Fermat numbers (Q1867424) (← links)
- Fibonacci factoriangular numbers (Q2012569) (← links)
- On a Diophantine equation involving Fibonacci numbers and the Ramanujan \(\tau\)-function of factorials (Q2115627) (← links)
- On a variant of Pillai's problem involving \(S\)-units and Fibonacci numbers (Q2161101) (← links)
- On the solutions of the Diophantine equation \(F_n \pm \frac{a (10^m - 1)}{9} = k!\) (Q2161349) (← links)
- Factoriangular numbers in balancing and Lucas-balancing sequence (Q2210308) (← links)
- Finding all \(S\)-Diophantine quadruples for a fixed set of primes \(S\) (Q2232820) (← links)
- On a mixed Littlewood conjecture for quadratic numbers (Q2388619) (← links)
- On the Diophantine equation \(2^x=x^2+y^2-2\) (Q2428768) (← links)
- On binomial Thue-Mahler equations (Q2567412) (← links)
- On a conjecture of Erdős and Stewart (Q2701574) (← links)
- Lucas factoriangular numbers (Q3297060) (← links)
- SOLUTIONS OF THE DIOPHANTINE EQUATION <i>x</i><sup><i>y</i></sup>+<i>y</i><sup><i>z</i></sup>+<i>z</i><sup><i>x</i></sup>=<i>n</i>! (Q3503705) (← links)
- On the diophantine equation $x^2-2^m=\pm y^n$ (Q4372359) (← links)
- Effective irrationality measures for real and <i>p</i>-adic roots of rational numbers close to 1, with an application to parametric families of Thue–Mahler equations (Q4600749) (← links)
- On integers with identical digits (Q4786379) (← links)
- Pell factoriangular numbers (Q4985656) (← links)
- Exponential Diophantine Equations (Q5038215) (← links)
- Differences between perfect powers: The Lebesgue-Nagell equation (Q5047924) (← links)
- On the existence of S-Diophantine quadruples (Q5109015) (← links)
- A note on divisible points of curves (Q5496631) (← links)
- On the equation \(y^x\pm x^y=z^2\) (Q5928698) (← links)
- On simple \(K_4\)-groups (Q5945576) (← links)
- The Diophantine equations \(P_n^x+P_{n+1}^y=P_m^x\) or \(P_n^y+P_{n+1}^x=P_m^x\) (Q6042183) (← links)
- On the solutions of the Diophantine equation \(P_n \pm \frac{a(10^m -1)}{9}=k!\) (Q6044386) (← links)
- On a variant of Pillai’s problem with binary recurrences and S-units (Q6110499) (← links)
- Differences between perfect powers: prime power gaps (Q6142631) (← links)
- Number of solutions to a special type of unit equations in two unknowns, II (Q6491581) (← links)
- \(p\)-adic valuation of \(\prod_{k=m+1}^n (k^2-m^2)\) (Q6546721) (← links)
- Solutions to a Pillai-type equation involving tribonacci numbers and \(S\)-units (Q6591069) (← links)
- Sums or products of double factorials in Lucas sequences (Q6591601) (← links)
- Lower bounds for linear forms in two \(p\)-adic logarithms (Q6623039) (← links)
- On the Diophantine equation \(2^s + p^k = m^2\) with a Fermat prime \(p\) (Q6651551) (← links)