Canonical form | Second order PDE | Hyperbolic

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#canonical #form #english #pde
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Thank you sir. You are a great teacher. Thank you again!

maxfob
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This guy is awesome! Very detailed explanations!

jennifershope
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OH MY GOOOOD! Dude thanks a loooot for this video!!!!

AndresPuelloC
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Perfect explanation, perfect, thank you.

ataz
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You are a great teacher, thank you for this subject, it helped a lot.

fulyaerturkler
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Excellent explanation, can't thank you enough!

ilkerberkeelcioglu
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Thanks so much about the series of lecture...God bless u Sir

iemnhanthethao
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Thank you so much!
You are great in teaching knowledge and skills!

harryporter
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Love your all video lectures sir. Every lecture is perfectly explained... With concepts. Thank you for teaching maths.... 🙏🙏🙏

gulzarnazra
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Wow sir! You taught better than my teacher

dushyantrohilla
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Thank you so much sir your explaination is so amazing.

zakhelexulu
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thank you. you are a wonderful teacher.

Joshua
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Finally i understood what greek and latin was going on. thanks be

gaaraofddarkness
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thankyou so much sir! your videos are extremely helpful

bughead
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Thank u soo much sir for giving us a valuable lacture

afzolkarim
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This is very helpful and clear, thank you so much, it is quality content

EvangelineB
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Perfect way of teaching and explanation. Thank you sir

farhatfatima
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I thought "It is very tough", but after watching this video it became very easy.Not very easy but easy

anik
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exceptional presentation. well done and many thanks. I have found out that matrix representation can be very usefull. How could the solution presented at the end be written as a form of two 1st order pdes and as a matrix of them? Any bibliographic suggestion would be appreciated too.

vetianos
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how to plot u as a function of x and y using canonical form?

fadoobaba