How to Find Mass Moment of Inertia | Mechanics Statics | (Solved Examples)

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Learn to find the mass moment of random objects, composite bodies, and learn to use the parallel axis theorem. We go through multiple examples using the shell and disk method step by step, and cover everything from finding the volume to writing the mass moment of inertia in terms of mass.

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Intro (00:00)
Parallel Axis Theorem (02:29)
Determine the mass moment of inertia of the cylinder (03:35)
The right circular cone is formed by revolving the shaded area (06:18)
Determine the moment of inertia Ix of the sphere (08:59)
The slender rods have a mass of 4 kg/m (10:15)
The thin plate has a mass per unit area of (11:35)

Book used: R. C. Hibbeler and K. B. Yap, Engineering Mechanics Statics.
Hoboken: Pearson, 2017.
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I just finished Dynamics and took the final exam last week, and you helped me a lot man. Thanks.

joeyGalileoHotto
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Seems like your videos have been a massive help to countless students worldwide!

PunmasterSTP
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I love how he presents a whole subtopic in a few minutes 😊

kerenhappuch
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natte
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wt
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theazndonut
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A little something for the algorithm, great video!

kimbrodersen
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Your videos are amazing! My uni has a couple chapters after shear force on Dry Friction, Wedges and sipping/tipping...It would be awesome if you could make videos on those topics too!! Im coming back next semester to watch you Dynamics Playlist!!

georgemikhaiel
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natte
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janecm
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muhammadhaseeb
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ruannnnnnnnn
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ivansantiagopenaortiz
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Truly excellent videos man, big appreciation. My course of study uses the same book from hibbler too. Will you continue on other topics such as friction and center of gravity?

broz
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xanonymousx
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am greatfull you really good at explaining.

carlosnjiri
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Hi, I have one math question: Two particles have positions at time t given by S1=4t-t^2 and S2=5t^2-t^3. Find the velocities V1 and V2 at the instant the accelerations of the two particles are equal.

zerilioner
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I took this topic today in engineering dynamics, I took it in statics and physics 101 and currently taking it in mechanics for pure bending. and your explanation is wonderful, but this topic is tedious; cause there are different formulas for the same object in different axises :(. And finding inertia by integrating is a bit harder lol. I hate to say it but this topic is tough 😂

HashemAljifri
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mountainyatri