The following pages link to (Q2941257):
Displaying 16 items.
- An upper bound for solutions of the Lebesgue-Nagell equation \(x^2+a^2=y^n\) (Q313554) (← links)
- On some generalized Lebesgue-Nagell equations (Q626833) (← links)
- On a class of Lebesgue-Ljunggren-Nagell type equations (Q784274) (← links)
- A polynomial-exponential equation related to the Ramanujan-Nagell equation (Q1743617) (← links)
- Sur une question de V. A. Lebesgue. (On a question of V. A. Lebesgue) (Q1821138) (← links)
- On Le's and Bugeaud's papers about the equation \(ax^2 + b^{2m-1} = 4c^p\) (Q1849561) (← links)
- A Lucas-Lehmer approach to generalised Lebesgue-Ramanujan-Nagell equations (Q2052846) (← links)
- Some exponential Diophantine equations. II: The equation \(x^2 - dy^2=k^z\) for even \(k\) (Q2122484) (← links)
- A note on the Lebesgue-Ljunggren-Nagell equation \(ax^2+b^{2m}=4y^n\) (Q2166154) (← links)
- On the Diophantine equation \(x^2+3^a41^b=y^n\) (Q2221026) (← links)
- On the Lebesgue–Nagell equation (Q3112372) (← links)
- Complete solution of the Diophantine Equation $x^{2}+5^{a}\cdot 11^{b}=y^{n}$ (Q4972037) (← links)
- Limit Points of Nathanson’s Lambda Sequences (Q5051842) (← links)
- A GENERALIZATION OF THE RAMANUJAN–NAGELL EQUATION (Q5229050) (← links)
- (Q5299670) (← links)
- On the diophantine equation $x^2+2^a3^b73^c=y^n $ (Q6137011) (← links)