Derive the kinetic equation in terms of conversion for irreversible bi-molecular type second order reaction using integral method of analysis of data in constant volume batch reactor, if the amount of A and B that have reacted at any time are equal. Draw the model graph.
What if for any other order or in other words if it was for order zero, one or three? what is the role of assuming order in this whole solving of equation to get Y=MX+C
Thank you sir. This is what i was searching for. This video helped me alot.
Thanks for the beautiful explanation
Very Nice explanations..... thank You sir...
Thanks a lot sir... I was unable to understand this equation.. but you made it really easy.. i got out of marks only because of you! 😊👌
Thank you so much for the simplification.
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Thanks🙏🙇🙏💕 sir Very good explanation
Thank youuu sir...it was badly needed
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Thank you
Fantastic explaination sir😍
Thank you sir ❤❤
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Nice explanation
Best i had ever seen❤️
You are literally a lifesaver
Thank you so much sir 🙏
Derive the kinetic equation in terms of conversion for irreversible bi-molecular type second order reaction using integral method of analysis of data in constant volume batch reactor, if the amount of A and B that have reacted at any time are equal. Draw the model graph.
All is correct but you have to take negative value of differential equation and lastly that will come a reverse after log......
Thank you Sir.
plese explain RRKM Theory.....and Hinshelwood theory
I am working on them they are bit tricky but will surely prepare.
Thank you
A well explanatory explanation
This is not clear explanation as I know .. butt good teaching sir
Thanks
Thanks sir👍
Perfect
What if for any other order or in other words if it was for order zero, one or three? what is the role of assuming order in this whole solving of equation to get Y=MX+C
What will be half life period of this reaction
hi.m.atif.from.pakistan.sir.nice.video
Thank you very much atif
Sir why not take negative sign in starting
Integration of d[A]/dt will give u -dx/dt because [A]=[A°]-x. So -ve would be cancelled both the sides
sir if a = b what will happen
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Integration kasy find krty ??
Derive second order equation when a =b
Second-order integrated rate law, 1/[A] = (1/[A]o) + kt when [A] = [B]
有夠詳細讚
Tq sir
Can you show when a=b
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This is directly copied from Puri Sharma Patania .... You failed to explain the resolving of partial fractions and also how -ln(b-x) how do - come?