Pages that link to "Item:Q5933692"
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The following pages link to On the Diophantine equations \((2^n-1)(6^n-1)=x^2\) and \((a^n-1)(a^{kn}-1)=x^2\) (Q5933692):
Displaying 17 items.
- A note on the diophantine equation \((a^n-1)(b^n-1)= x^2\) (Q377815) (← links)
- The Diophantine equation \((x^{k} - 1)(y^{k} - 1) = (z^{k} - 1)^{t}\) (Q935925) (← links)
- On the equation \(1!^k+2!^k+\cdots+n!^k=x^2\) (Q1397467) (← links)
- The product of like-indexed terms in binary recurrences (Q1864854) (← links)
- The Diophantine equation \((a^n-1)(b^n-1)=x^2\) (Q1872897) (← links)
- Variations on a diophantine theme (Q1902311) (← links)
- On the exponential Diophantine equation \((a^n-2)(b^n-2)=x^2\) (Q2150623) (← links)
- On the exponential Diophantine equation \((a^n-1)(b^n-1)=x^2\) (Q2197964) (← links)
- A note on the exponential Diophantine equation \((a^n-1)(b^n-1)=X^2\) (Q2274783) (← links)
- On the Diophantine equation \(h(a)x^2+f(a)=g(a)a^n\) (Q2285757) (← links)
- On the diophantine equation \((2^n-1)(3^n-1)=x^2\) (Q2707228) (← links)
- On the Diophantine equation \((a^n - 1)(b^n -1) = x^2\) (Q2915401) (← links)
- A Remark on a Paper of Luca and Walsh (Q3108542) (← links)
- On the Diophantine equation $(2^x-1)(p^y-1)=2z^2$ (Q4959536) (← links)
- On the equations <i>a</i><sup>2</sup>−2<i>b</i><sup>6</sup>=<i>c</i><sup><i>p</i></sup> and <i>a</i><sup>2</sup>−2=<i>c</i><sup><i>p</i></sup> (Q5169633) (← links)
- SOLVING DIOPHANTINE EQUATIONS (a^n - 1)(b^m - 1) = x^2 BY USING PELL’S EQUATIONS (Q5229555) (← links)
- Some results concerning the exponential Diophantine equation \((a^n-1)(b^m-1) = x^2\) (Q6572382) (← links)