Intro to the Finite Element Method Lecture 2 | Solid Mechanics Review

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Intro to the Finite Element Method Lecture 2 | Solid Mechanics Review

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PDF Notes: (website coming soon)

Contents:
Introduction: (0:00)
Displacement and Strain: (4:09)
Cauchy Stress Tensor: (37:11)
Stress Measures: (59:11)
Balance Equations: (1:13:00)
Constitutive Laws: (1:15:00)
Euler-Bernoulli Beams: (1:42:17)
Example - Euler-Bernoulli Beam Exact Solution: (2:04:35)
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Mr. Clayton, the way you structure your lectures by illustrating every piece of theory with an example is a jewell in the land of education. I love it! The only negative point I can come up with is that you don't speak Dutch. Many greetings from the Netherlands.

herrefaber
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I participated in a solid mechanics course when I was an undergraduate student in 2014. Actually, the first and second lectures remind me of ten years ago at school. I have been working as a CFD engineer since 2019 in the industry, but I am also trying to learn FEM because there are not as many job opportunities for CFD professionals. These lectures are actually ingenious and very helpful in expanding my career path. Thanks a lot.

KJ-rhcs
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best lecture for finite elements. thank you!

maestro.X
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You have made a new channel Mr Clayton. I literally panicked, when I couldn't find your videos in your other channel.

cooler
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The lectures are so great! Thanks for sharing🙏🏻

sepd
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Dear Dr. Clayton, thank you very much for the lecture. Greetings from South Korea

iputuwidiantara
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Nice and easy :) Thank you very much Clayton

TheRussianTourist
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Shouldn't it be (h/4) instead of (h/2) for the argument in the second set of parentheses at the 2:34:16 mark? Also, nice work...I'm loving these videos!

mikelso
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those lectures are briliant. nice and keep simple. it helps a lot for unterstanding . thanks a lot for sharring those videos.

dongzhao
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holy jesus greatful to Dr.Clayton,you save me!

jnneqrq
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This Clayton guy is pretty good, i gotta say. His trademark "hehehe'" 11:28 got me addicted to his videos. On a separate note, also great didactis. Subscribed

MrRenatopepin
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sir could u please tell us where we can download the slides of these lectures.

khaishchadha
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Dear Pettit : Congratulations for your post, and Channel, I ve learn a lot. Woulld it be possible to post the presentation pdf file and the Mathematica file so we can follow through in our adventure inti FEM. Thanks

rafmuvdi
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There is a minor error in the equation for von Mises stress: I2(s) is equal to 0.5{[I1(s)]^2 - I1(SS)} it doesn't affect the final result since I1(S) is zero

hsyoutoobe
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1:57:04 Hello, dear professor
In slide displacement function, why is y not a function of x2?
I see that when we move in the direction of x2, the value of y changes

sinatorabizadeh
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Hello, thank you for your series. I've started learning with this course and it looks good if you post pdf of each lecture. How can we get it (pdf) ? Thank you so much.

longnguyenbuitien
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Dear Dr.Clayton, are there eclass resource available for me non-local student ?

jnneqrq
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Hello,
at 1:34:00 how should we calculate G12/G13/G23?

mostafabamdad
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Good day sir, would is it possible to post the example and the solutions? This would be great help in order to check my solution.

MOHAMMAD
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At 1:07:10, is the I_1(S) missing the squared? I mean, I_2(S) = 0.5 * [I_1(S)^2 * I_1(S * S)], right?

KhangTran-slyb