Timeline for Integer solutions to $x^2 + x + 1 = y^z$? [duplicate]
Current License: CC BY-SA 4.0
13 events
when toggle format | what | by | license | comment | |
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Dec 12, 2023 at 18:51 | history | closed |
Pace Nielsen Martin Sleziak Max Horn Alexey Ustinov user44191 |
Duplicate of Is $x^2+x+1$ ever a perfect power? | |
Dec 7, 2023 at 7:26 | comment | added | Maarten Havinga | Indeed, why not? | |
S Dec 7, 2023 at 7:25 | vote | accept | Maarten Havinga | ||
S Dec 7, 2023 at 7:25 | vote | accept | Maarten Havinga | ||
S Dec 7, 2023 at 7:25 | |||||
Dec 6, 2023 at 21:57 | review | Close votes | |||
Dec 12, 2023 at 18:51 | |||||
Dec 6, 2023 at 21:12 | answer | added | José Hdz. Stgo. | timeline score: 4 | |
Dec 6, 2023 at 10:30 | vote | accept | Maarten Havinga | ||
S Dec 7, 2023 at 7:25 | |||||
Dec 6, 2023 at 10:23 | answer | added | GH from MO | timeline score: 3 | |
Dec 6, 2023 at 10:20 | comment | added | GH from MO | Please use a high-level tag like "nt.number-theory". I added this tag now. | |
Dec 6, 2023 at 10:19 | history | edited | GH from MO |
edited tags
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Dec 6, 2023 at 10:19 | comment | added | Geoff Robinson | Look at question 206931 and its answers. The second answer refers to the Nagell-Ljunggren equation, and its solution by Ljunggren- was writing my comment as @GH from MO's comment came in. | |
Dec 6, 2023 at 10:13 | comment | added | Geoff Robinson | I think this question (or variants thereof ) has been asked before on this site. I will try to find some of the questions. | |
Dec 6, 2023 at 10:08 | history | asked | Maarten Havinga | CC BY-SA 4.0 |