Solid Mechanics - Prof. Jay Ghosh (IIT Bombay)
Solid Mechanics - Prof. Jay Ghosh (IIT Bombay)
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Video

Topic # 10.2 - Euler's Buckling Formula (Pin-Ended Columns)
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Topic # 10.2 - Euler's Buckling Formula (Pin-Ended Columns)
Topic # 10.3 - Columns with Other End-Support Conditions
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Topic # 10.3 - Columns with Other End-Support Conditions
Topic # 10 - Problem Example 1
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Topic # 10 - Problem Example 1
Topic # 10 - Problem Example 2
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Topic # 10 - Problem Example 2
Topic # 9.6 - IMPORTANT - Singularity Functions (Problem 2)
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Topic # 9.6 - IMPORTANT - Singularity Functions (Problem 2)
Topic # 9.6 - IMPORTANT - Singularity Functions (Problem 1)
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Topic # 9.6 - IMPORTANT - Singularity Functions (Problem 1)
Topic # 9.6 - IMPORTANT - Beam Deflections using Singularity Functions
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Topic # 9.6 - IMPORTANT - Beam Deflections using Singularity Functions
Topic # 9.5 - Method of Superposition (Problems)
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Topic # 9.5 - Method of Superposition (Problems)
Topic # 9.5 - Beam Deflection using Method of Superposition
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Topic # 9.5 - Beam Deflection using Method of Superposition
Topic # 9.4 - Deflection of Indeterminate Beams (Theory + Problems)
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Topic # 9.4 - Deflection of Indeterminate Beams (Theory Problems)
Topic # 8.3 - Problem Example 1 (Mohr's Circle)
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Topic # 8.3 - Problem Example 1 (Mohr's Circle)
Topic # 9.3 - 4th Order Method (Theory + Problems)
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Topic # 9.3 - 4th Order Method (Theory Problems)
Topic # 9.2 - 2nd Order Method (Problems)
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Topic # 9.2 - 2nd Order Method (Problems)
Topic # 9.2 - Deflection using 2nd Order Method
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Topic # 9.2 - Deflection using 2nd Order Method
Topic # 9.1 - Introduction to Beam Deflection
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Topic # 9.1 - Introduction to Beam Deflection
Topic # 8.3 - Problem Example 2 (Mohr's Circle)
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Topic # 8.3 - Problem Example 2 (Mohr's Circle)
Topic # 8.3 - Mohr's Circle Concepts (Part 2)
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Topic # 8.3 - Mohr's Circle Concepts (Part 2)
Topic # 8.3 - Mohr's Circle Concepts (Part 1)
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Topic # 8.3 - Mohr's Circle Concepts (Part 1)
Topic # 8.1 - Basic Concepts of Stress Transformation
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Topic # 8.1 - Basic Concepts of Stress Transformation
Topic # 8.1 - Problem Example
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Topic # 8.1 - Problem Example
Topic # 8.2 - Principal Stresses & Maximum In-Plane Shear
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Topic # 8.2 - Principal Stresses & Maximum In-Plane Shear
Topic # 8.2 - Problem Example
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Topic # 8.2 - Problem Example
Topic # 7.2 - Problem 3
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Topic # 7.2 - Problem 3
Topic # 7.5 - Shear Flow in Thin-Walled Sections (PROBLEM EXAMPLE)
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Topic # 7.5 - Shear Flow in Thin-Walled Sections (PROBLEM EXAMPLE)
Topic # 7.5 - Shear Flow in Thin-Walled Sections (PART 1)
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Topic # 7.5 - Shear Flow in Thin-Walled Sections (PART 1)
Topic # 7.5 - Shear Flow in Thin-Walled Sections (PART 2)
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Topic # 7.5 - Shear Flow in Thin-Walled Sections (PART 2)
Topic # 7.6 - Shear Center (Problem Example)
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Topic # 7.6 - Shear Center (Problem Example)
Topic # 7.4 - Shear Stresses in Built Up Sections (Problem Example)
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Topic # 7.4 - Shear Stresses in Built Up Sections (Problem Example)
Topic # 7.4 - Shear Stresses in Built Up Sections
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Topic # 7.4 - Shear Stresses in Built Up Sections

Komentáře

  • @gaytrirajpurohit8532
    @gaytrirajpurohit8532 Před 15 dny

    Sir why le=4m in the 2-2 section?

  • @user-xc8ku7xh4d
    @user-xc8ku7xh4d Před 17 dny

    Can't express in words your great teaching

  • @ABH656
    @ABH656 Před 25 dny

    Thanks sir for clearing the concepts

  • @shreeswar7940
    @shreeswar7940 Před měsícem

    Dear professor, apart from the logic we know for those moments at the ends, lets have a look into those mathematical relations. As of solving the moments between A and B i got 6.75 kNm. If the moment at A and moment at B are tends to be zero how am i able to get a value above zero. May be i am confused or wrong. Please let me clear about this topic. Thank you 😊

  • @aomprakashsubudhi7026
    @aomprakashsubudhi7026 Před měsícem

    Sir thank you very much for such amazing lectures

  • @jelaniherbert8904
    @jelaniherbert8904 Před 2 měsíci

    For the equations for "Total deflections @ B" how did you get 41 on the numerator for final deflection of B?

  • @MarufHossain-vc7rj
    @MarufHossain-vc7rj Před 2 měsíci

    I have a little bit confussion about the shareflow direction about I section and C section Once video you showed for C section @ web share flow is opposite to external force And another I section where it seems parallel

  • @utilityzc2039
    @utilityzc2039 Před 3 měsíci

    Why is there no shear in pure bending...will the 'layers' of beam not tend to 'slide' with respect to each other in pure bending?

  • @utilityzc2039
    @utilityzc2039 Před 3 měsíci

    Why is there no shear in pure bending...will the 'layers' of beam not 'slide' with respect to each other in pure bending? Also, why is that not the case in, say, a cantilever beam with point load at the end?

  • @urmukul80
    @urmukul80 Před 3 měsíci

    Thanks for clearing up my concept. I know that you didn't cover the torsion for the non-circular section, but I will be glad if you do, sir.

  • @tummijanaki7806
    @tummijanaki7806 Před 3 měsíci

    thank you sir

  • @amirbedewi2295
    @amirbedewi2295 Před 4 měsíci

    i get the I=184.........

  • @VVPatel235
    @VVPatel235 Před 4 měsíci

    18:54 sir where can we find the notes

  • @AmitKumar-fv8bt
    @AmitKumar-fv8bt Před 4 měsíci

    Thank you sir a lot. For the first time i can feel that how forces act in real. Hats of to you sir ❤❤. Wish i had seen your lectures earlier.

  • @varunchaudhary4757
    @varunchaudhary4757 Před 4 měsíci

    @ prof Jay Ghosh , Sir in flange we have complementary shear arise due to resisting shear force in the same way in web also we have resisting Shear force in upward direction only Why your using same direction (downward in web ) as that of loading V ? . Sir kindly ans it I’m very much confuse with Shear direction in thin section especially in Web shear flow direction .

  • @civilengineer2992
    @civilengineer2992 Před 4 měsíci

    Sir please teach more topics on this stability/buckling part of beams/columns/frames Like snap theough buckling , post bucling , bucking of beam -colums , static , dyanamic and energy methods of stability

  • @daleegner7032
    @daleegner7032 Před 4 měsíci

    Great video 👌

  • @wurmh2hm
    @wurmh2hm Před 4 měsíci

    That twisting experiment... Based on true story! literally got me😄

  • @user-cl7xk8yz6b
    @user-cl7xk8yz6b Před 5 měsíci

    THANKS YOU VERY MUCH!!

  • @user-cl7xk8yz6b
    @user-cl7xk8yz6b Před 5 měsíci

    best teacher on youtube!

  • @adityabanerjee1638
    @adityabanerjee1638 Před 5 měsíci

    Isn't the final fig for max shear wrong in terms of the direction of sigma x as it should be compressive 35Mpa?

  • @adityabanerjee1638
    @adityabanerjee1638 Před 5 měsíci

    Thank you Prof.

  • @AbdulBasit-li2gl
    @AbdulBasit-li2gl Před 5 měsíci

    didnt understand a single word.

  • @LK-pw7fm
    @LK-pw7fm Před 5 měsíci

    Your insights makes everything so much more clear. Thanks for uploading these, and spreading knowledge.

  • @adhishchaudhary1616
    @adhishchaudhary1616 Před 5 měsíci

    For no Torsion the plane of bending should pass through a)neutral axis of the section b)shear centre of section c)be parallel to one of the principle axis ?

  • @LK-pw7fm
    @LK-pw7fm Před 5 měsíci

    This is amazing teaching. Thanks a lot! I've been using these without understanding where they came from.

  • @LK-pw7fm
    @LK-pw7fm Před 5 měsíci

    You're absolutely amazing! Clear concise explanations. Wish my professors were half as good as you are.

  • @vegetable9829
    @vegetable9829 Před 5 měsíci

    Sir literally had goosebumps. Felt like crying after watching you explain it so calmly. Was about to give up but suddenly came across your video. This is by far the hardest topic of this course. Thank you again. May God bless you.

  • @amitthakur257
    @amitthakur257 Před 5 měsíci

    Amazing video with clear explainations and images..i still have doubt about the direction of flow at web..at flange the concept was shown..if same concept is used at web then the direction would be opposite of what was shown here..

  • @JasonP-pe4yz
    @JasonP-pe4yz Před 5 měsíci

    thank you!!!!

  • @jerrysmith9780
    @jerrysmith9780 Před 5 měsíci

    That was actually very interesting...Thank You. I've been a P.Eng. for over 25 years and I love how you logically presented shear flow. Thank you for sharing. P.S. Your casual comment about deriving equations for thin walled sections requires that we measure to the centrelines is KEY and allowed me to derive the shear in the web. Thank you again for this.

    • @solidmechanics-prof.jaygho7500
      @solidmechanics-prof.jaygho7500 Před 5 měsíci

      I'm quite thrilled to hear someone as experienced as you found the lecture video helpful. Thanks for your comment!

  • @tahmidulhaq3409
    @tahmidulhaq3409 Před 6 měsíci

    Will you make videos on structural analysis and Design?

  • @just_bee9482
    @just_bee9482 Před 6 měsíci

    Very perspicuous. Thank you sir

  • @enggurunepal
    @enggurunepal Před 6 měsíci

    Well explained.. Thank you.

  • @SouvikCivil
    @SouvikCivil Před 6 měsíci

    Sir, your explination cleared my complete basic understanding of this concept ! Thank you ! LOVE FROM JADAVPUR UNIVERSITY SIR 🤗💝

  • @actorvijayofficial_68
    @actorvijayofficial_68 Před 6 měsíci

    Sir does pure shear stress Planes only exist on maximum shear stress Planes??

  • @m.yideas7486
    @m.yideas7486 Před 6 měsíci

    Sir God bless you it was really very helpful❤

  • @mohamedaminemaalla5577
    @mohamedaminemaalla5577 Před 6 měsíci

    greetings from germany, here we calculate the equations not only the max. values, but it was helpful. but i have an example and i wish that you can help me with it how can i send it to you sir ?

  • @souvik.fingtore
    @souvik.fingtore Před 6 měsíci

    Proud to be a subscriber of exergic channel ...even I am from civil engineering background...I am always eager to watch ur lectures 🙏🙏

  • @mhchow1727
    @mhchow1727 Před 6 měsíci

    thanks! hope you can make more videos

  • @user-oo8rh7rl5y
    @user-oo8rh7rl5y Před 7 měsíci

    Sir i am jee advanced aspirant so sir can you help me pls sir pls provide email adress I have problem in 2 ques

  • @user-oo8rh7rl5y
    @user-oo8rh7rl5y Před 7 měsíci

    Hii sir

  • @SpaDerola
    @SpaDerola Před 8 měsíci

    If you have a built up beam of different materials, do you transform the beam prior to doing this? So essentially you work with the transformed cross section?

  • @kingadnan1081
    @kingadnan1081 Před 8 měsíci

    Hats off to you prof💯💯

  • @kingadnan1081
    @kingadnan1081 Před 8 měsíci

    Thanks.

  • @kongantianvesh1109
    @kongantianvesh1109 Před 8 měsíci

    Quality education 🎉 Thankyou sir

  • @SpaDerola
    @SpaDerola Před 8 měsíci

    How would you 'turn off' a linear load? Just apply opposite udl when the linear load ends?

  • @user-il9cb6ni7d
    @user-il9cb6ni7d Před 8 měsíci

    Hello, could you please explain in a lecture vedio the (Unified Hook's law) which combine the both cases plane stress and plane strain together?

  • @debruppaul8239
    @debruppaul8239 Před 8 měsíci

    I don't know if you will believe me or not, you made the course so interesting an intuitive 180-degree opp to nptel lecture(I usually do not comment, but videos forced me). Thanks a lot, sir, learned a lot from these and also scored very good marks in the college exam. Thanks

  • @tinywrestler383
    @tinywrestler383 Před 8 měsíci

    sir shouldnt be the point in the 2nd quadrant as 60 is positive ?