Timeline for Negative probabilities - what are two ordinary pgfs that correspond to the gf of a half-coin?
Current License: CC BY-SA 3.0
14 events
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Jul 16, 2016 at 1:59 | history | edited | BCLC | CC BY-SA 3.0 |
link
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Jul 5, 2016 at 18:10 | comment | added | LSpice | Re: votes to close, I don't know what privileges the poser of a question has, but in general probably the discrepancy in the visibility of the votes is explained by the fact that @IosifPinelis has over 4000 rep and BCLC has just over 100. | |
Jul 5, 2016 at 18:04 | answer | added | Iosif Pinelis | timeline score: 5 | |
Jul 5, 2016 at 16:34 | history | edited | Iosif Pinelis | CC BY-SA 3.0 |
added 2 characters in body; edited tags
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Jul 5, 2016 at 16:33 | comment | added | Iosif Pinelis | What do you mean by VTCs? Votes-to-close? I see three of them, in the line right below the tags. | |
Jul 5, 2016 at 16:17 | comment | added | BCLC | @IosifPinelis What VTCs? I don't see any :( | |
Jul 5, 2016 at 16:13 | comment | added | Iosif Pinelis | In the paper cited in this question, its author states, specifically for the "half-coin" example, the existence of pgf's $g$ and $h$ such that $fg=h$, with a further reference to another two papers of his, where the "fundamental theorem" is proved, by some rather non-constructive methods. So, the question about an explicit construction (concerning those three publications) seems to make sense. So, I don't understand the close votes. | |
Jul 5, 2016 at 16:00 | answer | added | Iosif Pinelis | timeline score: 3 | |
Jul 4, 2016 at 12:13 | comment | added | BCLC | @DouglasZare edited...? | |
Jul 4, 2016 at 12:12 | history | edited | BCLC | CC BY-SA 3.0 |
not unique
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Jul 2, 2016 at 4:06 | review | Close votes | |||
Jul 2, 2016 at 11:37 | |||||
Jul 1, 2016 at 22:55 | history | edited | BCLC | CC BY-SA 3.0 |
fg=h, last part
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Jul 1, 2016 at 22:45 | comment | added | Robert Israel | You mean $fg = h$, not $f=gh$. | |
Jul 1, 2016 at 22:06 | history | asked | BCLC | CC BY-SA 3.0 |