Timeline for Existence of infinitely many Heegner points that are divisible by $p^{n}$ in $K_{\lambda}$
Current License: CC BY-SA 3.0
16 events
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Jun 15, 2020 at 7:27 | history | edited | CommunityBot |
Commonmark migration
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Jan 14, 2018 at 12:47 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Jan 14, 2018 at 12:37 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Jan 6, 2018 at 14:15 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Jan 6, 2018 at 12:38 | history | edited | The Thin Whistler |
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Jan 6, 2018 at 12:23 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 31, 2017 at 17:39 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 31, 2017 at 13:56 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 31, 2017 at 9:50 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 31, 2017 at 9:06 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 30, 2017 at 15:23 | history | edited | The Thin Whistler |
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Dec 30, 2017 at 0:01 | comment | added | reuns | Did you mean somewhere $\alpha \in K$ such that $\{ x \in K, x O_K \subset \mathbb{Z}+\alpha \mathbb{Z}\}=c O_K$, and evaluating the modular j function $j(\alpha)$ to generate the ray class field ? | |
Dec 29, 2017 at 22:50 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 29, 2017 at 21:32 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 29, 2017 at 16:15 | history | edited | The Thin Whistler | CC BY-SA 3.0 |
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Dec 29, 2017 at 16:07 | history | asked | The Thin Whistler | CC BY-SA 3.0 |