Timeline for Is it possible to express $\int_{0+\epsilon}^{1-\epsilon}\left(\sqrt{1-x^2}^{\sqrt{1-x^2}^{\cdots}}\right) dx$ in elementary functions?
Current License: CC BY-SA 4.0
8 events
when toggle format | what | by | license | comment | |
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Jul 23, 2020 at 4:25 | vote | accept | zeraoulia rafik | ||
Jul 15, 2020 at 21:29 | answer | added | Gerald Edgar | timeline score: 2 | |
Jul 15, 2020 at 15:34 | comment | added | zeraoulia rafik | @GeraldEdgar , I have edited it to assure convergence look it and thanks | |
Jul 15, 2020 at 15:34 | history | edited | zeraoulia rafik | CC BY-SA 4.0 |
added 56 characters in body; edited title
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Jul 15, 2020 at 14:40 | review | Close votes | |||
Jul 22, 2020 at 3:06 | |||||
Jul 15, 2020 at 14:23 | comment | added | Gerald Edgar | Note: the continued exponential $u^{u^{\dots}}$ does not converge for $u$ near $0$. In your case, the integrand does not converge for $x$ near $1$. | |
Jul 15, 2020 at 13:51 | comment | added | Loïc Teyssier | I guess $l$ is the first integral with an infinite sequence of powers. | |
Jul 15, 2020 at 12:59 | history | asked | zeraoulia rafik | CC BY-SA 4.0 |