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at 3:57, it takes me some time to realize that the time domain signal cos(w0*t)'s laplace transform is s/(s^2+w0^2), thank you so much for this video.
This helps me a lot.
You do great, plz continue❤
Thank you :) I plan to start uploading some new stuff shortly.
at time 02:25, you wrote the equation sCV(s) - CV(0) + 1/(sL) = 0 but shouldn't it be sCV(s) - CV(0) + V(s)/(sL)? Please let me know if I am wrong.
Yup, that is DEFINITELY missing a V(s), a mistake on my part. Good catch! It was so blatant I didn't even notice it when I wrote down the next line (which is correct).
An LC might run off very little energy... depends, I have to try it myself.
@3:35 you mean 1/LC = w0^2
Doh! Yup.
nice
at 3:57, it takes me some time to realize that the time domain signal cos(w0*t)'s laplace transform is s/(s^2+w0^2), thank you so much for this video.
This helps me a lot.
You do great, plz continue❤
Thank you :) I plan to start uploading some new stuff shortly.
at time 02:25, you wrote the equation sCV(s) - CV(0) + 1/(sL) = 0 but shouldn't it be sCV(s) - CV(0) + V(s)/(sL)? Please let me know if I am wrong.
Yup, that is DEFINITELY missing a V(s), a mistake on my part. Good catch! It was so blatant I didn't even notice it when I wrote down the next line (which is correct).
An LC might run off very little energy... depends, I have to try it myself.
@3:35 you mean 1/LC = w0^2
Doh! Yup.
nice