Timeline for Proof of the sum of the reciprocal non trivial zeros cubed
Current License: CC BY-SA 4.0
16 events
when toggle format | what | by | license | comment | |
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Aug 20, 2021 at 9:40 | vote | accept | Horus | ||
Aug 19, 2021 at 22:15 | answer | added | Henri Cohen | timeline score: 5 | |
Aug 19, 2021 at 21:40 | comment | added | David Roberts♦ | @Gerry I agree. I had to hunt for the link/definition as the page the OP linked to was not short. I will edit it in when I get time | |
Aug 19, 2021 at 17:13 | comment | added | Steven Clark | You need to correct your formula for $Z(n)$. Assuming the first opening parenthesis following $B_{n,k}$ can be deleted, your formula doesn't match your result for $n=3$. Also note $(-1)^{n-k-1} (-1)^{n-k+1}=1$ so these two factors just drop out. | |
S Aug 19, 2021 at 16:47 | history | suggested | Dirk Werner | CC BY-SA 4.0 |
heading; some LaTeX
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Aug 19, 2021 at 16:43 | comment | added | Steven Clark | A closing parenthesis is missing in your long formula for $Z(n)$. Also, what's the meaning of the apostrophe on the first sum $\sum\limits_{\rho} '$? | |
Aug 19, 2021 at 14:30 | review | Suggested edits | |||
S Aug 19, 2021 at 16:47 | |||||
Aug 19, 2021 at 13:23 | comment | added | Gerry Myerson | @David, I figured as much, but it should be explicitly in the body of the question. | |
Aug 19, 2021 at 11:23 | comment | added | David Roberts♦ | @Gerry The numbers $\gamma_i$ are these mathworld.wolfram.com/StieltjesConstants.html | |
Aug 19, 2021 at 11:06 | comment | added | R.P. | The definition of the $\gamma_i$ can be found on the linked page. | |
Aug 19, 2021 at 10:55 | comment | added | Gerry Myerson | OK. Now you can include the definition of $\gamma_i$. | |
Aug 19, 2021 at 10:49 | history | edited | Horus | CC BY-SA 4.0 |
added 50 characters in body
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Aug 19, 2021 at 10:47 | comment | added | Horus | @Gerry Myerson my bad lemme edit it real quick. | |
Aug 19, 2021 at 10:43 | comment | added | Gerry Myerson | (1) You use the notation $Z(n)$, but you never tell us what it means. (2) Somehow, when you plug in $n=3$, the left side remains $Z(n)$. | |
Aug 19, 2021 at 9:50 | review | First posts | |||
Aug 19, 2021 at 14:30 | |||||
Aug 19, 2021 at 9:50 | history | asked | Horus | CC BY-SA 4.0 |