Timeline for How to best think of the State Transition Matrix, and how to use it to find periodic Halo orbits?
Current License: CC BY-SA 4.0
39 events
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Feb 3, 2022 at 0:20 | history | edited | uhoh | CC BY-SA 4.0 |
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Jun 17, 2020 at 8:54 | history | edited | CommunityBot |
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Jun 20, 2019 at 17:14 | history | edited | uhoh | CC BY-SA 4.0 |
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Jul 23, 2018 at 10:43 | history | edited | uhoh | CC BY-SA 4.0 |
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Jun 20, 2017 at 9:53 | history | edited | uhoh | CC BY-SA 3.0 |
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Jun 20, 2017 at 9:13 | history | edited | uhoh | CC BY-SA 3.0 |
flagged possible transposition of labels/names for L1 and L2
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S Jun 18, 2017 at 1:36 | history | bounty ended | uhoh | ||
S Jun 18, 2017 at 1:36 | history | notice removed | uhoh | ||
S Jun 16, 2017 at 8:56 | history | bounty started | uhoh | ||
S Jun 16, 2017 at 8:56 | history | notice added | uhoh | Reward existing answer | |
Jun 16, 2017 at 8:48 | vote | accept | uhoh | ||
S Jun 16, 2017 at 8:05 | history | bounty ended | uhoh | ||
S Jun 16, 2017 at 8:05 | history | notice removed | uhoh | ||
S Jun 15, 2017 at 6:56 | history | bounty started | uhoh | ||
S Jun 15, 2017 at 6:56 | history | notice added | uhoh | Reward existing answer | |
S Jun 15, 2017 at 6:54 | history | bounty ended | uhoh | ||
S Jun 15, 2017 at 6:54 | history | notice removed | uhoh | ||
Jun 14, 2017 at 7:22 | answer | added | ChrisR | timeline score: 7 | |
S Jun 14, 2017 at 4:39 | history | bounty started | uhoh | ||
S Jun 14, 2017 at 4:39 | history | notice added | uhoh | Reward existing answer | |
S Jun 14, 2017 at 4:37 | history | bounty ended | uhoh | ||
S Jun 14, 2017 at 4:37 | history | notice removed | uhoh | ||
Jun 14, 2017 at 4:11 | history | edited | uhoh | CC BY-SA 3.0 |
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Jun 12, 2017 at 18:48 | answer | added | DuffBeerBaron | timeline score: 3 | |
Jun 12, 2017 at 17:17 | answer | added | user20022 | timeline score: 5 | |
Jun 11, 2017 at 19:27 | comment | added | uhoh | @LucJ.Bourhis ya it's a hard question I know. I don't have B&B handy right this second but from what I remember is that it's written textbook style, in that it is clear, and methodical and proceeds from beginning to end, but didn't have much in the way of intuitive helpers, those short-cuts that help some of the people some of the time to just "get it" all at once. What is a state transition matrix? Just what transition of an orbit's state is it the matrix of? Once I have that sense it's much easier for me to go through the derivation or application. The answer could be a few sentences. | |
Jun 11, 2017 at 18:30 | comment | added | user20022 | I know that writing this very comment disqualifies me for a "Aha!" moment but I am afraid I am not psychic ;-) Is your issue the explanation of $\delta x_f = \Phi(t_f, t_0)\delta x_0 + \dot{x}_f \delta t$ ? Or is it the application that Howell, or Breakwell and Brown make of it? | |
S Jun 8, 2017 at 4:17 | history | bounty started | uhoh | ||
S Jun 8, 2017 at 4:17 | history | notice added | uhoh | Draw attention | |
Apr 13, 2017 at 12:58 | history | edited | CommunityBot |
replaced http://space.stackexchange.com/ with https://space.stackexchange.com/
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S Mar 22, 2017 at 8:44 | history | bounty ended | CommunityBot | ||
S Mar 22, 2017 at 8:44 | history | notice removed | CommunityBot | ||
S Mar 14, 2017 at 7:17 | history | bounty started | uhoh | ||
S Mar 14, 2017 at 7:17 | history | notice added | uhoh | Draw attention | |
Mar 14, 2017 at 7:07 | history | edited | uhoh | CC BY-SA 3.0 |
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Mar 13, 2017 at 23:54 | history | tweeted | twitter.com/StackSpaceExp/status/841437423640952834 | ||
Mar 10, 2017 at 17:44 | history | edited | uhoh | CC BY-SA 3.0 |
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Mar 10, 2017 at 17:35 | history | edited | uhoh | CC BY-SA 3.0 |
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Mar 10, 2017 at 17:25 | history | asked | uhoh | CC BY-SA 3.0 |