Torsion of Shafts MCQ – Objective Questions with Answers

Torsion of Shafts MCQ – Objective Questions with Answers

Mechanical Engineering › Strength of Materials | Free practice MCQs with detailed explanations

Last Updated: June 2026

📌 About this MCQ Set

Torsion is the twisting of a shaft due to an applied torque. The torsion equation relates torque, shear stress, angle of twist and the polar moment of inertia.

These MCQs cover the torsion equation, polar moment of inertia, power transmission and stress distribution.

8 questions • every answer comes with a worked explanation. Click Show Answer to check yourself.

📖 New to this topic? Read the full concept guide: Torsion of Shafts

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Torsion of Shafts MCQs

Q1. The torsion equation for a circular shaft is:

  1. T/J = τ/r = Gθ/L
  2. M/I = σ/y
  3. P/A = σ
  4. T = F×r only
Show Answer

Answer: A. T/J = τ/r = Gθ/L

Torsion equation: T/J = τ/r = Gθ/L.

Q2. The polar moment of inertia (J) of a solid circular shaft of diameter d is:

  1. πd⁴/64
  2. πd⁴/32
  3. πd³/16
  4. πd²/4
Show Answer

Answer: B. πd⁴/32

J = πd⁴/32 for a solid circular section.

Q3. In a shaft under torsion, shear stress is maximum at:

  1. The centre (axis)
  2. The outer surface
  3. The mid-radius
  4. Both ends
Show Answer

Answer: B. The outer surface

Shear stress varies linearly with radius and is maximum at the outer surface.

Q4. The shear stress at the axis (centre) of a shaft under torsion is:

  1. Maximum
  2. Zero
  3. Equal to surface stress
  4. Infinite
Show Answer

Answer: B. Zero

At r = 0 the shear stress is zero.

Q5. Polar modulus (Zp) is defined as:

  1. J × r
  2. J / r
  3. r / J
  4. J × L
Show Answer

Answer: B. J / r

Polar modulus Zp = J / r; it measures torsional strength.

Q6. Torsional rigidity of a shaft is given by:

  1. G·J
  2. E·I
  3. G/J
  4. T·L
Show Answer

Answer: A. G·J

Torsional rigidity = G·J; it resists angular twist.

Q7. The power transmitted by a shaft rotating at N rpm under torque T is:

  1. 2πNT/60
  2. NT/60
  3. πNT/30
  4. T/N
Show Answer

Answer: A. 2πNT/60

P = 2πNT/60 watts, with T in N·m and N in rpm.

Q8. For a hollow shaft of outer diameter D and inner diameter d, J equals:

  1. π(D⁴−d⁴)/32
  2. π(D⁴−d⁴)/64
  3. πD⁴/32
  4. π(D−d)⁴/32
Show Answer

Answer: A. π(D⁴−d⁴)/32

J = π(D⁴ − d⁴)/32 for a hollow circular section.

Frequently Asked Questions

What is the torsion equation?

T/J = τ/r = Gθ/L, relating torque, polar moment of inertia, shear stress, radius, modulus of rigidity, angle of twist and length.

Where is shear stress maximum in a shaft?

At the outer surface (maximum radius); it is zero at the axis and varies linearly in between.

Why are hollow shafts preferred for transmitting torque?

Hollow shafts give a higher strength-to-weight ratio because material near the axis carries little stress, so it can be removed with small loss of strength.

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