Timeline for Why Is $e^{\pi\sqrt{232}}$ an Almost Integer?
Current License: CC BY-SA 2.5
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Apr 13, 2017 at 12:58 | history | edited | CommunityBot |
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Jul 28, 2010 at 20:11 | comment | added | S. Carnahan♦ | Hmm, I seem to be missing some factors of 2. In particular, $e^{\pi \sqrt{232}}$ doesn't need a discussion of powers, but $e^{\pi \sqrt{58}}$ invites a discussion of square roots. Fortunately, $f_{4B}$ is a level 8 modular function whose square is $f_{2A}(2\tau)-24$. I'll fix it later. | |
Jul 28, 2010 at 17:01 | history | answered | S. Carnahan♦ | CC BY-SA 2.5 |