Timeline for Monotonicity of doubling dimension
Current License: CC BY-SA 4.0
12 events
when toggle format | what | by | license | comment | |
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S Aug 9, 2021 at 12:17 | vote | accept | SetValued_Michael | ||
S Aug 9, 2021 at 12:16 | vote | accept | SetValued_Michael | ||
S Aug 9, 2021 at 12:17 | |||||
Aug 3, 2021 at 22:14 | history | edited | YCor | CC BY-SA 4.0 |
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Aug 3, 2021 at 20:16 | answer | added | Del | timeline score: 2 | |
Aug 3, 2021 at 13:33 | vote | accept | SetValued_Michael | ||
S Aug 9, 2021 at 12:16 | |||||
Aug 3, 2021 at 13:33 | answer | added | Piotr Hajlasz | timeline score: 3 | |
Aug 3, 2021 at 13:26 | comment | added | SetValued_Michael | @PiotrHajlasz Why so, I thought the doubling dimension is just $\log_2(c_X)$ where $c_X$ is the doubling constant of $X$ (in the sense of that $c_X$ is the smallest natural number for which every ball in $X$ of radius $r>0$ can be covered by $c_X$ balls of radius $\frac{r}{2}$.) | |
Aug 3, 2021 at 13:09 | comment | added | Piotr Hajlasz | That is a very different question :) | |
Aug 3, 2021 at 13:05 | history | edited | SetValued_Michael | CC BY-SA 4.0 |
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Aug 3, 2021 at 13:04 | comment | added | SetValued_Michael | Oh, I mean the Assouad dimension to be precise. | |
Aug 3, 2021 at 13:04 | comment | added | Piotr Hajlasz | Just to make sure that we are on the same page: what do you mean by the doubling constant? | |
Aug 3, 2021 at 12:53 | history | asked | SetValued_Michael | CC BY-SA 4.0 |