Strength of Materials
Pure Bending
Marks 1Marks 2
Stresses In Beams
Marks 1Marks 2
Simple Stress and Strain
Marks 1Marks 2
Complex Stresses
Marks 1Marks 2
Moment of Inertia
Marks 1Marks 2
Deflection of Beams
Marks 1Marks 2
Shear Force and Bending Moment
Marks 1Marks 2
Thin Cylinders
Marks 1Marks 2
Columns and Struts
Marks 1Marks 2
Strain Energy Method
Marks 1Marks 2
1
GATE ME 2025
MCQ (Single Correct Answer)
+1
-0.33

The yield stress of a metal in uniaxial tension is 200 MPa . According to von Mises yield criterion, the yield stress (in MPa) of the metal in pure shear is closest to

A
115.5
B
100.0
C
66.7
D
141.4
2
GATE ME 2025
MCQ (Single Correct Answer)
+1
-0.33

A metallic square plate is subjected to a uniform hydrostatic pressure $(P)$. Choose the correct Mohr's circle representing the state of stress at any point in the plate from the options given below.

For the Mohr's circle, normal stress is positive towards right and shear stress is positive in the upward direction.

A
GATE ME 2025 Strength of Materials - Complex Stresses Question 1 English Option 1
B
GATE ME 2025 Strength of Materials - Complex Stresses Question 1 English Option 2
C
GATE ME 2025 Strength of Materials - Complex Stresses Question 1 English Option 3
D
GATE ME 2025 Strength of Materials - Complex Stresses Question 1 English Option 4
3
GATE ME 2024
MCQ (Single Correct Answer)
+1
-0.33

The phases present in pearlite are

A

austenite and ferrite

B

cementite and austenite

C

ferrite and cementite

D

martensite and ferrite

4
GATE ME 2023
MCQ (More than One Correct Answer)
+1
-0
The principal stresses at a point P in a solid are 70 MPa, −70 MPa and 0. The yield stress of the material is 100 MPa. Which prediction(s) about material failure at P is/are CORRECT? 
A
Maximum normal stress theory predicts that the material fails
B
Maximum shear stress theory predicts that the material fails
C
Maximum normal stress theory predicts that the material does not fail 
D
Maximum shear stress theory predicts that the material does not fail
GATE ME Subjects
Engineering Mechanics
Machine Design
Strength of Materials
Heat Transfer
Production Engineering
Industrial Engineering
Turbo Machinery
Theory of Machines
Engineering Mathematics
Fluid Mechanics
Thermodynamics
General Aptitude