Timeline for $\lim_{r \to +\infty}\frac{1}{\sqrt{2r \ln(\ln(r))}}(B_r-B_{\left \lfloor{\sqrt{2r \ln(\ln(r))}}\right \rfloor})= 0$ a.s.?
Current License: CC BY-SA 4.0
5 events
when toggle format | what | by | license | comment | |
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Nov 20, 2021 at 18:34 | vote | accept | Kurt.W.X | ||
Nov 20, 2021 at 9:45 | comment | added | Mateusz Kwaśnicki | It looks like you must have meant something else, as it makes little sense to compare $B_r$ with $B_{\lfloor f(r)\rfloor}$: these are completely different scales, and the floor function looks artificial here. | |
Nov 20, 2021 at 7:35 | answer | added | mike | timeline score: 1 | |
Nov 20, 2021 at 2:37 | history | edited | Kurt.W.X | CC BY-SA 4.0 |
added 1 character in body
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Nov 20, 2021 at 2:26 | history | asked | Kurt.W.X | CC BY-SA 4.0 |