Timeline for Extension of subcopulas to copulas
Current License: CC BY-SA 4.0
24 events
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S Dec 18, 2021 at 21:18 | history | bounty ended | Star | ||
S Dec 18, 2021 at 21:18 | history | notice removed | Star | ||
Dec 18, 2021 at 21:18 | vote | accept | Star | ||
Dec 15, 2021 at 3:08 | comment | added | user44143 | @YemonChoi, I’m sure the OP has motivation for asking about this, but the post doesn’t provide the motivation, and the particular setup looks rather arbitrary. | |
Dec 15, 2021 at 2:14 | comment | added | Yemon Choi | @MattF. How is this question unmotivated? I don't work with copulas myself but they are an established construction/concept. | |
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Dec 14, 2021 at 7:48 | answer | added | Anthony Quas | timeline score: 1 | |
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Dec 13, 2021 at 2:27 | comment | added | Anthony Quas | So I think there are two kinds of box you are talking about? The first kind with one vertex at $(0,0,\ldots,0)$ and the other at an element of $\mathcal I$; and the second kind, those with vertices $a=(a_1,a_2,\ldots,a_n)$ and $b=(b_1,b_2,\ldots,b_n)$ with $a_i\le b_i$ for each $i$ and $a,b\in\mathcal I$? The first kind (with bottom left corner 0) is referred to in condition 1) for a copula; the second kind (with arbitrary bottom left corner $a\in\mathcal I$) is what you're talking about in $\mathcal A$ and $\mathcal D$. Is this right? | |
Dec 12, 2021 at 23:43 | comment | added | Anthony Quas | If I understand it correctly, $C(a,b)$ is the volume of the region $[0,a]\times [0,b]$? | |
Dec 12, 2021 at 23:00 | history | edited | Star | CC BY-SA 4.0 |
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Dec 12, 2021 at 22:57 | comment | added | Anthony Quas | In the question, you’ve written $\mathcal I\subseteq [0,1]^3$. Do you mean $[0,1]^n$? | |
S Dec 12, 2021 at 20:20 | history | bounty started | Star | ||
S Dec 12, 2021 at 20:20 | history | notice added | Star | Canonical answer required | |
Dec 10, 2021 at 20:07 | history | asked | Star | CC BY-SA 4.0 |