Pages that link to "Item:Q5928698"
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The following pages link to On the equation \(y^x\pm x^y=z^2\) (Q5928698):
Displaying 13 items.
- The exponential Diophantine equation \(x^y + y^x = y^2\) with \(xy\) odd (Q485540) (← links)
- On the equation \(x^ 2+Dxy+y^ 2=z^ k\) (Q1118636) (← links)
- On the equation \(Y^ 2=(X+p)(X^ 2+p^ 2)\) (Q1344011) (← links)
- On the equation \(x^y=y^x\) (Q1589793) (← links)
- On the odd prime solutions of the Diophantine equation \(x^y + y^x = z^z\) (Q1722298) (← links)
- A purely exponential Diophantine equation in three unknowns (Q2151162) (← links)
- Resolution of the equation \((3^{x_{1}}-1)(3^{x_{2}}-1)=(5^{y_{1}}-1)(5^{y_{2}}-1)\) (Q2204756) (← links)
- On the Diophantine equation \(y^x-x^y=z^2\) (Q2478016) (← links)
- On solutions of the equations \(x^2 \pm y^8 = \pm z^6\) (Q2907749) (← links)
- On the diophantine equation x<sup>y</sup>-y<sup>x</sup>=c<sup>z</sup> (Q3144096) (← links)
- The exponential diophantine equation xy + yx = z2 via a generalization of the Ankeny–Artin–Chowla conjecture (Q4643776) (← links)
- Perfect powers with few binary digits and related Diophantine problems, II (Q4649449) (← links)
- A remark on a Diophantine equation of S. S. Pillai. (Q6648079) (← links)