Timeline for A question on Ahlfors covering surface
Current License: CC BY-SA 3.0
17 events
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Oct 14, 2015 at 15:52 | answer | added | Arnaud Chéritat | timeline score: 2 | |
Oct 14, 2015 at 14:03 | comment | added | Arnaud Chéritat | to yaoxiao : I have never heard of this principle before! | |
Oct 14, 2015 at 14:00 | comment | added | yaoxiao | @ArnaudChéritat I do not know whether your heuristic and personal view is some thing related to what is so called Bloch principle. en.wikipedia.org/wiki/Bloch%27s_principle | |
Oct 14, 2015 at 13:27 | comment | added | yaoxiao | @AlexandreEremenko Oh, I am sorry for the mistake for the statement, You are right. Thank you, professor. I re-edit my question. | |
Oct 14, 2015 at 13:25 | history | edited | yaoxiao | CC BY-SA 3.0 |
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Oct 14, 2015 at 13:05 | answer | added | Alexandre Eremenko | timeline score: 4 | |
Oct 14, 2015 at 12:52 | comment | added | Alexandre Eremenko | You misstated the theorem. The CLOSURES of the domains must be disjoint. | |
Oct 14, 2015 at 11:56 | history | edited | yaoxiao | CC BY-SA 3.0 |
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Oct 14, 2015 at 11:48 | comment | added | yaoxiao | @ArnaudChéritat Thank you, I know what you mean. You can continue your view towards on this. | |
Oct 14, 2015 at 9:37 | answer | added | Lasse Rempe | timeline score: 5 | |
Oct 14, 2015 at 9:19 | comment | added | Arnaud Chéritat | I can give a heuristic and personal view on this, that I developped when I tried to understand Bloch's theorem on an intuitive level. (note: I don't know the proofs of Ahlfors' island theorems). It has to do with the difference between C (the complex plane) and D (the unit disk). The first is essentially euclidean and the second essentially hyperbolic. Before continuing, I need to know if you see what I mean by this, for otherwise I need first to develop the corresponding intuition. | |
Oct 14, 2015 at 6:41 | history | edited | yaoxiao |
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Oct 14, 2015 at 0:37 | answer | added | Malik Younsi | timeline score: 4 | |
Oct 13, 2015 at 23:18 | comment | added | yaoxiao | @IgorRivin Thank you. My question is about is there a relatively basic proof to prove infinitely many univalent island argument in the statement. | |
Oct 13, 2015 at 23:16 | history | edited | yaoxiao | CC BY-SA 3.0 |
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Oct 13, 2015 at 20:26 | comment | added | Igor Rivin | You might want to give a more detailed description of what it is you seek. | |
Oct 13, 2015 at 15:13 | history | asked | yaoxiao | CC BY-SA 3.0 |