Timeline for Which formula for the de Broglie wavelength of an electron is correct?
Current License: CC BY-SA 3.0
17 events
when toggle format | what | by | license | comment | |
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May 1, 2016 at 7:16 | vote | accept | Bruno KM | ||
May 1, 2016 at 7:16 | vote | accept | Bruno KM | ||
May 1, 2016 at 7:16 | |||||
Apr 30, 2016 at 15:31 | history | tweeted | twitter.com/StackPhysics/status/726433681053769728 | ||
Apr 30, 2016 at 15:16 | vote | accept | Bruno KM | ||
May 1, 2016 at 7:16 | |||||
Apr 30, 2016 at 15:09 | comment | added | Bruno KM | I decided to just mention what the key difference was, based on what people have answered before the pictures were taken down. Thanks for the feedback! | |
Apr 30, 2016 at 15:08 | history | edited | Bruno KM | CC BY-SA 3.0 |
added 327 characters in body
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Apr 30, 2016 at 13:47 | comment | added | garyp | @DavidZ Evidently, based on the answers, the photo contained information about the speed of the electron. Kasper, perhaps you can edit the question and add that information. Without it, it's hard to answer the question ... | |
Apr 30, 2016 at 13:44 | history | protected | Qmechanic♦ | ||
Apr 30, 2016 at 13:38 | answer | added | UKH | timeline score: 3 | |
Apr 30, 2016 at 13:29 | comment | added | David Z | Hi Kasper; I removed the photos as we prefer not to have pictures of text. If you think any part of the pictures is important to include in the question, please retype it and quote it. | |
Apr 30, 2016 at 13:28 | history | edited | David Z | CC BY-SA 3.0 |
remove photos
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Apr 30, 2016 at 13:19 | answer | added | DarthPlagueis | timeline score: 9 | |
Apr 30, 2016 at 13:13 | answer | added | vbj | timeline score: 3 | |
Apr 30, 2016 at 12:58 | comment | added | vbj | $p=\frac{E}{c}$, the 4 momentum can be written as, $\bf{p}=(\frac{E}{c},p^{1},p^{2},p^{3})$. | |
Apr 30, 2016 at 12:58 | answer | added | Marta | timeline score: 8 | |
Apr 30, 2016 at 12:48 | review | Suggested edits | |||
Apr 30, 2016 at 13:28 | |||||
Apr 30, 2016 at 12:46 | history | asked | Bruno KM | CC BY-SA 3.0 |