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GATE ME Weightage Analysis for Strength of Materials
By BYJU'S Exam Prep
Updated on: September 25th, 2023
The Graduate Aptitude Test in Engineering (GATE) is a highly competitive examination for postgraduate admissions and job opportunities in the field of engineering and technology. As a mechanical engineering aspirant, one of the most important subjects to prepare for is Strength of Materials (SOM). GATE ME weightage analysis for the strength of materials includes analyzing the expected cutoffs, previous years’ trends, etc.
Here we are providing the detailed GATE ME weightage analysis for the Strength of Materials. GATE ME Exam conducted in various sessions. The following weightage analysis helps you to understand the importance of the subject in the GATE Exam.
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GATE ME Weightage Analysis for Strength of Materials
In the GATE Mechanical Engineering (ME) paper, SOM carries a significant weightage. Based on the GATE ME weightage analysis of previous years’ question papers, SOM questions have been asked consistently and carry an average weightage of 10-12 marks out of the total 65 marks in the paper. This indicates the importance of SOM in the GATE ME examination.
Strength of Materials Analysis
- GATE Mechanical Engineering 2021
- Paper-1 Analysis: 7 Marks
- Paper-2 Analysis: 7 Marks
- GATE Mechanical Engineering 2020
- Paper-1 Analysis: 5 Marks
- Paper-2 Analysis: 6 Marks
- GATE Mechanical Engineering 2019
- Paper-1 Analysis: 8 Marks
- Paper-2 Analysis: 9 Marks
- GATE Mechanical Engineering 2018
- Paper-1 Analysis: 14 Marks
- Paper-2 Analysis: 10 Marks
- GATE Mechanical Engineering 2017
- Paper-1 Analysis: 11 Marks
- Paper-2 Analysis: 8 Marks
- GATE Mechanical Engineering 2016
- Paper-1 Analysis: 9 Marks
- Paper-2 Analysis: 8 Marks
- Paper-3 Analysis: 11 Marks
Topic-wise Analysis of the Strength of Materials
Strength of Materials (SOM) is a broad subject that covers a wide range of topics. In the GATE Mechanical Engineering (ME) paper, the following topics are asked in the GATE exam in previous years.
- Topics covered in 2021: Stresses and strains, Bending of Beams, Deflection of Beams, Theory of Failures, Buckling
- Topics covered in 2020: Shear Force & Bending Moment Diagrams, principal Stresses & strains, MOHR circle, Buckling of Column
- Topics covered in 2019: Thermal stresses, Stress & Strain, Twisting Moment, Deflection, Mohr’s circle
- Topics covered in 2018: Poisson’s Ratio, Shear Stress, Stress in Beams, Plain Stress, Torsion, Columns, Thin cylinders, True stress, and Combined bar(Al, Steel)
- Topics covered in 2017: Maximum shear stress, Thermal stresses, Bending moment, Thin Cylindrical Shells, Principle, Stresses and Strains in Plane Stresses, torsion, and Axial load.