Fluid Mechanics: Dimensional Analysis: Buckingham Pi Theorem

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Explanation and application of Buckingham Pi Theorem as a method in Dimensional Analysis

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Really appreciate the video, an actually intuitive explanation of the Buckingham Pi Theorem unlike the incomprehensible mess that is the lecture notes by my mechanics professor👍

Jon_
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The video offers the same level of information and teaching expertise as a private tutor I pay monthly for, yet here I am receiving it for free. Thank you very much for this valuable video.

rashikanjum
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Actually made this once incomprehensible topic very understandable to me. Amazing job.

Astro-gynh
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Thanku ser, what an explanation
May God bless you and your family 🙏❤️
You are an extraordinary talent
My favourite teacher 💓🤪

rampradeeps
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Terima kasih ilmunya Tuan. Mudah saya faham. Saya ulang kaji balik ilmu² ni. Bila baca penyampaian konvensional yang sediaada, susah betul nak faham. Cara tuan ajar, siap dengan contoh lagi buat senang faham. Terutama untuk orang disleksia macam saya. Semoga diberkati Allah selalu.

DrAidFawzal
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At the end would it not be a function of Re^-1? Why is it f(Re) when Pi 2 is the inverse of Re and not Re^-1? Or are they the same?
Great video, much better than my professor!

Dylan-mnqv
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Why PI1 is the functtion of Re: PI1=f(Re)? Shouldn't it be PI1=f(Re^-1)?
Thanks a lot for the video.

sergeydukman
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in awe of your class, thank you for helping me!

eggvmof
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thank you so much, i was able to understand this in 10 mins thanks to your video! Bless you

CM-dxxu
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Greatest lecture i have ever watched. Thanks

MATHSdotPHYSICS
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Excellent! Thank you very much for posting this.

charlschnetler
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That was helpful! Thank you so much! Awesome top tier quality production!

CluckYou
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Very clear and crisp

Wonderful help!!!

Harshavardhan-esxt
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the best explanation about this topic!very clear!!

wrpesll
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Thank you so much for sharing us this lesson.

mukhtarabdi
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Thank you very much, may God bless you all

nabaaali
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God bless you sir. You have done a great job

edokamichael
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Thank you soo much i really grasp the topic!!! Love it!!!

redalreemphasis
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Why have we took Density for mass ? Can we not take Viscosity and drag force as mass is already related to them in case of repeating variables?

arpitashilpuja
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Really great Video Sir🙏It helped me a lot

AndSooOn