Timeline for Is the sum $\sum\limits_{j=0}^{k-1}(-1)^{j+1}(k-j)^{2k-2} \binom{2k+1}{j} \ge 0?$
Current License: CC BY-SA 3.0
17 events
when toggle format | what | by | license | comment | |
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S Feb 12, 2016 at 0:09 | history | edited | Marco Golla | CC BY-SA 3.0 |
Shortened title, improved formatting.
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S Feb 12, 2016 at 0:09 | history | suggested | CommunityBot | CC BY-SA 3.0 |
Shortened title.
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Feb 12, 2016 at 0:05 | review | Suggested edits | |||
S Feb 12, 2016 at 0:09 | |||||
S Feb 11, 2016 at 18:27 | history | suggested | CommunityBot | CC BY-SA 3.0 |
Shortened question
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Feb 11, 2016 at 17:53 | review | Suggested edits | |||
S Feb 11, 2016 at 18:27 | |||||
Jun 25, 2010 at 3:26 | comment | added | Alexandra Seceleanu | Thank you, everyone, for the beautiful answers. I am most grateful. | |
S Jun 23, 2010 at 15:16 | vote | accept | Alexandra Seceleanu | ||
Jun 23, 2010 at 15:16 | vote | accept | Alexandra Seceleanu | ||
S Jun 23, 2010 at 15:16 | |||||
Jun 23, 2010 at 10:26 | comment | added | David Carchedi | Thanks Pietro and Victor for the great answers. Hopefully this also will help ME. | |
Jun 23, 2010 at 7:30 | answer | added | Victor Protsak | timeline score: 20 | |
Jun 23, 2010 at 0:53 | comment | added | Pietro Majer | Your sequence -1,1,10,245,11326,855162,.. is not contained in the Online Encyclopedia of Integer Sequences. If you find it interesting, as David Carchedi also suggests, you may like to include it ;-) | |
Jun 23, 2010 at 0:27 | answer | added | Pietro Majer | timeline score: 41 | |
Jun 22, 2010 at 21:29 | answer | added | David Carchedi | timeline score: 2 | |
Jun 22, 2010 at 17:54 | comment | added | darij grinberg | Nitpicking: you need $k\geq 2$. | |
Jun 22, 2010 at 16:58 | history | edited | Alexandra Seceleanu | CC BY-SA 2.5 |
deleted 2 characters in body
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Jun 22, 2010 at 16:55 | history | edited | Gjergji Zaimi | CC BY-SA 2.5 |
deleted 1 characters in body; edited title; edited title
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Jun 22, 2010 at 16:51 | history | asked | Alexandra Seceleanu | CC BY-SA 2.5 |