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Very good video!! I hope you make another video showing the solution of the Lagrangian.
Nice explanation sir 🤘
Very neat, clear and very didactical explanation , thank you !
Appreciate it, good work.
Very nice explanation sir thanku so much 👍
Wellllllll explanation sirrrr
Clear af
Great video! But shouldn't it be x = r*cosφ*sina and y = r*sinφ*sina ? Thank you!
@@physicstutorgeniuslearning5959 you're right! by the time i realised it, i had already posted the comment. Your video is so so helpful! Thank you!
Thank you sir
please sir can you answer me please what if we have in the vector x=u sinv , do we still do z^2=u^2cos^2v+u^sin^2v? --we have z^2=x^2+y^2 given
Very good video!! I hope you make another video showing the solution of the Lagrangian.
Nice explanation sir 🤘
Very neat, clear and very didactical explanation , thank you !
Appreciate it, good work.
Very nice explanation sir thanku so much 👍
Wellllllll explanation sirrrr
Clear af
Great video! But shouldn't it be x = r*cosφ*sina and y = r*sinφ*sina ? Thank you!
@@physicstutorgeniuslearning5959 you're right! by the time i realised it, i had already posted the comment. Your video is so so helpful! Thank you!
Thank you sir
please sir
can you answer me please
what if we have in the vector x=u sinv , do we still do z^2=u^2cos^2v+u^sin^2v?
--we have z^2=x^2+y^2 given
Thank you sir