English best motivational status πŸš€ πŸš€ AIR 96 πŸš€ πŸš€ #gate #gatemechanical #shorts #motivation #explore

English best motivational status πŸš€ πŸš€ AIR 96 πŸš€ πŸš€ #gate #gatemechanical  #shorts #motivation #explore
English best motivational status πŸš€ πŸš€ AIR 96 πŸš€ πŸš€ #gate #gatemechanical  #shorts #motivation #explore

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#gate #gatemechanical #StructuralEngineering, #CivilEngineering, #MechanicalEngineering, , or #StructuralAnalysis.
The prime highlights of this session are: –
1. Maximum principal stress theory or Rankine’s Theory
2. Maximum principal strain theory or St. Venant’s Theory
3. Maximum Shear Stress Theory or Guest and Tresca’s Theory
4. Maximum Strain Energy Theory or Haigh’s Theory
5. Maximum Shear Strain Energy theory or Von-Mises and Henckey Theory

Welcome to our YouTube channel! In this lecture on Strength of Materials, we delve into the fundamental concepts and principles that govern the behavior of materials under different types of loads and stresses. Whether you’re a student preparing for the Graduate Aptitude Test in Engineering (GATE) or simply interested in expanding your knowledge of material strength, this lecture is perfect for you.
Explore the fascinating world of theories of failure in this concise video. From the brittle fracture theory to the maximum principal stress theory, we delve into the mechanics behind structural failures. Discover how materials behave under different conditions and the factors that contribute to their ultimate downfall.

More such videos: –
1. GATE 2024(ME) | Preparation Strategy| Weightage Analysis | Preparation in 6 months |AIR 96
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2. GATE 2024 Mechanical (ME) |SOM(Part-1) |AIR 96

3. Stress-strain curve| Hooke’s Law | SOM(Part-2) | πŸš€ Stress-Strain curve πŸš€ AIR 96

4. Properties of Materials| Endurance Limit | SOM(Part-3) | πŸš€ πŸš€ AIR 96

5. Homogeneous | Isotropic | Deformation | SOM(Part-4) | πŸš€ πŸš€ AIR 96

6. Elongation due to self-weight |Statically Indeterminate Beam| SOM(Part-5) AIR 96 πŸš€ πŸš€

7. How to find the reactions for a statically indeterminate beam| SOM(Part-6) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€

8. Composite Bar|| Stress due to temperature change | SOM(Part-7) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€

9. Poisson’s Ratio| Bulk Modulus | SOM(Part-7) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€

10. Shear strain| Sign convention | SOM(Part-9) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€

11. Part -1Bending Moment and Shear force diagram| SOM(Lecture-10) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€

12. Part -2 Bending Moment and Shear force diagram| SOM(Lecture-10) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€

13. Questions on Bending Moment and Shear force diagram| SOM(Lecture-11) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€

14. Part-1 Deflection of Beam||Methods| SOM(Lecture-12) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€ #gate #gatemechanical

15. Deflection of Beam||Methods| SOM(Lecture-12) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€ #gate #gatemechanical

16. Numerical on Deflection of Beam| Betti’s Law| SOM(Lecture-13) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€ #gate #gatemechanical

17. Mohr’s Circle|Transformation of stress| SOM(Lecture-13) |Gate Mechanical AIR 96 #gatemechanical

18. Questions on Mohr’s Circle|Transformation of strain|Strain rosette| SOM(Lecture-13) |Gate Mechanical πŸš€ πŸš€ AIR 96 πŸš€ πŸš€ #gate #gatemechanical

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