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I've been pondering about the right hand rule for a while now. just a 3mins watch, I got it alright. Thanks for saving me.
I have watched hundreds of videos on the subject of 3D stress analysis, and this is the best one I have found. You are brilliant! Thanks.
Concept is clearThank you 👍Please upload more videos.
thank you so much
thank you sir
Hello sir, are your calculation for all the section properties correct?
is there a particular part that you want to be verified?
@@MechanicsofMaterialsLibre I am getting different answers to yours for moment of inertia and J and Q, I used 216mm as my outer diameter and for inner diameter I subtracted he thickness and got 208mm, what was your inner diameter that you used?
@@samkeloinnocent8316 I see. The inner diameter is 200 mm since the wall is on both sides and thickness should be subtracted twice. Hope that helps!
@@MechanicsofMaterialsLibre okay thank you so much sir your videos help me a lot🤗
@@samkeloinnocent8316 Glad to hear that it was helpful
I've been pondering about the right hand rule for a while now. just a 3mins watch, I got it alright. Thanks for saving me.
I have watched hundreds of videos on the subject of 3D stress analysis, and this is the best one I have found. You are brilliant! Thanks.
Concept is clear
Thank you 👍
Please upload more videos.
thank you so much
thank you sir
Hello sir, are your calculation for all the section properties correct?
is there a particular part that you want to be verified?
@@MechanicsofMaterialsLibre I am getting different answers to yours for moment of inertia and J and Q, I used 216mm as my outer diameter and for inner diameter I subtracted he thickness and got 208mm, what was your inner diameter that you used?
@@samkeloinnocent8316 I see. The inner diameter is 200 mm since the wall is on both sides and thickness should be subtracted twice. Hope that helps!
@@MechanicsofMaterialsLibre okay thank you so much sir your videos help me a lot🤗
@@samkeloinnocent8316 Glad to hear that it was helpful