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was looking into this for the harmonic micromotion of an ion in a Paul trap and this (mostly the first Floquet vid, really) is just what I needed. Thanks!!
Great video, sir, hope you continue to contribute more videos for us
Great lecture! Why do you choose those initial conditions for Floquet theory? It was not well explained in the other video.
It would be great if you created topic -wise playlists
Refer to the link in description. That has topic wise lectures available.
Great last lecture! And great course.
Really great course! thanks very much.
Is it like the high frequency base provides the necessary torque to reach the (pi,0) point which obviously includes gravity compensation also?
What a cool video!!
It is the wrong equation at 6.30 ~ should be cos(wt) not sin(wt) :)
How about double inverted pendulum?
+1 for RUclips in RUclips inverted jigsaw pendulum inception!
Excellen!
was looking into this for the harmonic micromotion of an ion in a Paul trap and this (mostly the first Floquet vid, really) is just what I needed. Thanks!!
Great video, sir, hope you continue to contribute more videos for us
Great lecture! Why do you choose those initial conditions for Floquet theory? It was not well explained in the other video.
It would be great if you created topic -wise playlists
Refer to the link in description. That has topic wise lectures available.
Great last lecture! And great course.
Really great course! thanks very much.
Is it like the high frequency base provides the necessary torque to reach the (pi,0) point which obviously includes gravity compensation also?
What a cool video!!
It is the wrong equation at 6.30 ~ should be cos(wt) not sin(wt) :)
How about double inverted pendulum?
+1 for RUclips in RUclips inverted jigsaw pendulum inception!
Excellen!