Timeline for Exotic analytic triangulations of $S^5$?
Current License: CC BY-SA 4.0
15 events
when toggle format | what | by | license | comment | |
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S May 16, 2021 at 17:02 | history | bounty ended | CommunityBot | ||
S May 16, 2021 at 17:02 | history | notice removed | CommunityBot | ||
May 14, 2021 at 22:07 | comment | added | aglearner | @MoisheKohan , so far no luck with answers. If you could add even a brief one, I would be very grateful. | |
May 14, 2021 at 14:46 | history | edited | aglearner | CC BY-SA 4.0 |
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May 11, 2021 at 22:01 | history | edited | aglearner | CC BY-SA 4.0 |
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S May 8, 2021 at 15:22 | history | bounty started | aglearner | ||
S May 8, 2021 at 15:22 | history | notice added | aglearner | Draw attention | |
May 7, 2021 at 8:07 | comment | added | aglearner | Dear Moishe, thanks for sharing this good news! Will be very interested to learn why Lipschitz maps are sufficient. (I also hope that for what you have in mind these maps are asked to be Lipschtiz only on the interior of each simplex (of each dimension), but not on closed simplices. Indeed I am thinking about analytic maps that can behave as $\sqrt x$ behaves on $[0,1]$ at 0). | |
May 7, 2021 at 3:18 | comment | added | Moishe Kohan | Yes. Actually, you need much less, for instance, Lipschitz maps will suffice. I will add a full answer sometime later, unless somebody does it before. | |
S May 6, 2021 at 23:40 | history | edited | aglearner | CC BY-SA 4.0 |
Poincare 3-sphere —> Poincaré homology sphere
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S May 6, 2021 at 23:40 | history | suggested | Daniel Asimov | CC BY-SA 4.0 |
Poincare 3-sphere —> Poincaré homology sphere
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May 6, 2021 at 23:29 | review | Suggested edits | |||
S May 6, 2021 at 23:40 | |||||
May 6, 2021 at 14:51 | history | edited | Francesco Polizzi | CC BY-SA 4.0 |
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May 6, 2021 at 12:46 | history | edited | aglearner | CC BY-SA 4.0 |
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May 6, 2021 at 12:32 | history | asked | aglearner | CC BY-SA 4.0 |