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Solving the Infinite Square Well Problem | Quantum Mechanics 

Faculty of Khan
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This video derives and discusses the solution to the #InfiniteSquareWell problem in #QuantumMechanics.
Questions/requests? Let me know in the comments!
Pre-reqs: The previous videos in this playlist: • Quantum Mechanics
Patreon: www.patreon.com/user?u=4354534
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3 июл 2024

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Комментарии : 14   
@146fallon9
@146fallon9 Год назад
the legend has uploaded
@captainkielbasa5471
@captainkielbasa5471 Год назад
love following these just to realize how much i've forgotten in uni
@sinaasadiyan
@sinaasadiyan Год назад
great series, hope you continue these videos
@lahcenebellounis536
@lahcenebellounis536 Год назад
Thank you for saving me ... I was at the edge of sanity before your video ❤
@eulefranz944
@eulefranz944 Год назад
9:19 a small detail: as you only have the absolute square of c1 you can only solve for c1 up to an arbitrary phase factor e^i phi, which corresponds to the unmeasureable/ arbitrary phase of the single wave function without other relations
@Funkaar_Studio
@Funkaar_Studio Год назад
Long time no see sir
@Nutshell_Mathematica
@Nutshell_Mathematica Год назад
How do u get this teaching platform It's super nice
@karsonio3543
@karsonio3543 Год назад
Nice
@mastershooter64
@mastershooter64 Год назад
Will you continue the tensor calculus and differential geometry series?
@FacultyofKhan
@FacultyofKhan Год назад
Most certainly!
@tayebtchikou1646
@tayebtchikou1646 10 месяцев назад
What? This guy is the owner of the channel Faculty of Khan, this is awesome@@FacultyofKhan
@eulefranz944
@eulefranz944 Год назад
:] finally
@SampleroftheMultiverse
@SampleroftheMultiverse Месяц назад
This field model may be related to the your topic. ru-vid.com/video/%D0%B2%D0%B8%D0%B4%D0%B5%D0%BE-wrBsqiE0vG4.htmlsi=waT8lY2iX-wJdjO3 Thanks for your informative and well produced video. The buckling of the field via Euler’s contain column effect is the answer to your question. You and your viewers might find the quantum-like analog interesting and useful. I have been trying to describe the “U” shape wave that is produced in my amateur science mechanical model in the video link. I hear if you over-lap all the waves together using Fournier Transforms, it may make a “U” shape or square wave. Can this be correct representation Feynman Path Integrals? In the model, “U” shape waves are produced as the loading increases and just before the wave-like function shifts to the next higher energy level. Your viewers might be interested in seeing the load verse deflection graph in white paper found elsewhere on my RU-vid channel. Actually replicating it with a sheet of clear folder plastic and tape. Seeing it first hand is worth the effort.
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