Timeline for A Priori proof that Covering Radius strictly less than $\sqrt 2$ implies class number one
Current License: CC BY-SA 3.0
14 events
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Jun 22, 2022 at 8:13 | history | edited | CommunityBot |
replaced http://math.uga.edu/~pete with http://alpha.math.uga.edu/~pete
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Apr 13, 2017 at 12:58 | history | edited | CommunityBot |
replaced http://mathoverflow.net/ with https://mathoverflow.net/
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Aug 5, 2011 at 2:13 | answer | added | Will Jagy | timeline score: 5 | |
Jul 24, 2011 at 3:27 | answer | added | Will Jagy | timeline score: 6 | |
Jul 22, 2011 at 3:55 | answer | added | Will Jagy | timeline score: 11 | |
Jul 7, 2011 at 16:34 | history | edited | Will Jagy | CC BY-SA 3.0 |
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Jul 6, 2011 at 20:12 | history | edited | Will Jagy | CC BY-SA 3.0 |
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Jul 6, 2011 at 19:10 | history | edited | Will Jagy | CC BY-SA 3.0 |
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Jul 6, 2011 at 2:05 | history | edited | Will Jagy | CC BY-SA 3.0 |
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Jul 4, 2011 at 18:58 | history | edited | Will Jagy | CC BY-SA 3.0 |
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Jul 4, 2011 at 5:03 | comment | added | Pete L. Clark | (ii) The reason I refer to my preprint is that I have a more general setup in which it makes sense to ask the same question: namely for quadratic forms over any $S$-integer ring in a global field. The answer is so far known for definite forms over $\mathbb{Z}$ and $\mathbb{F}_q(t)$, by methods which are not, as Will puts it, a priori. It would be great to have an argument which sheds light on the more general case. | |
Jul 4, 2011 at 5:01 | comment | added | Pete L. Clark | Just a couple of comments: (i) this is a serious research question in the sense that several people who know something about quadratic forms have been trying to answer it for well over a year (and I have too!). Unless we're all missing something pretty obvious, the answer to this question might well be publishable.... | |
Jul 4, 2011 at 4:41 | history | edited | Will Jagy | CC BY-SA 3.0 |
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Jul 4, 2011 at 4:25 | history | asked | Will Jagy | CC BY-SA 3.0 |