
Circular Motion (For MCQ Practice)
Here is a clear and exam-focused Summary Note of the lesson, Circular Motion, specifically tailored for MCQ preparation:
🔹 1. What is Circular Motion?
Circular motion is the motion of an object along a circular path.
The direction of the object continuously changes, so even at constant speed, its velocity changes (because velocity is a vector).

🔹 2. Types of Circular Motion
Uniform Circular Motion (UCM):
Speed remains constant
Velocity continuously changes due to a direction change
Centripetal force acts towards the centre
Non-uniform Circular Motion:
Speed changes
Both the magnitude and direction of velocity change
Requires centripetal and tangential force
🔹 3. Important Terms & Formulas
| Quantity | Symbol | Formula | Unit |
|---|---|---|---|
| Radius of Circle | r | — | metre (m) |
| Time Period | T | Time for one complete revolution | second (s) |
| Frequency | f | Revolutions per second = 1/T | hertz (Hz) |
| Speed (in UCM) | v | v = 2πr / T | m/s |
| Angular Velocity | ω | ω = 2π / T = 2πf | rad/s |
| Centripetal Acceleration | aᶜ | a = v² / r or ω²r | m/s² |
| Centripetal Force | Fᶜ | F = mv² / r or mω²r | Newton (N) |
🔹 4. Centripetal Force
The force that acts towards the centre of the circle
Responsible for changing the direction of velocity
Examples:
Tension in the string (for a rotating stone)
Gravitational force (for planets orbiting the sun)
Friction (for a car on a circular track)
🔹 5. Characteristics of UCM
Speed is constant
Velocity changes due to a direction change
Acceleration is always towards the centre (centripetal)
Centripetal force is essential to keep an object in a circle
No work is done by the centripetal force (force ⊥ displacement)
🧠 MCQ Focus Areas
The distinction between uniform and non-uniform circular motion
Concept of centripetal force and its direction
Formulas for speed, frequency, time period, force, and acceleration
Real-life examples of circular motion
Conceptual questions about the direction of velocity, force, and acceleration
Circular Motion: MCQ Practice Set
🧠 MCQ Quiz Hints
Q1. In uniform circular motion, acceleration is always directed outward from the centre.
✅ Correct Answer:❌ False (It is directed towards the centre.)
Q2. Angular velocity changes with time in uniform circular motion.
✅ Correct Answer:❌ False (Angular velocity is constant.)
Q3. A particle moves in a circle of radius 4 m with a constant speed of 6 m/s. What is the magnitude of its acceleration?
Soln:
a = v²/r = (6²)/4 = 36/4 = 9 m/s²
Hence, the magnitude of its acceleration is 9 m/s².
Q4. A 2 kg mass is attached to a string of length 1.5 m and whirled in a horizontal circle at 4 m/s. What is the tension in the string?
Soln:
T = mv²/r = (2 × 16)/1.5 = 32 / 1.5 = 21.3 N
Hence, tension in the string is 21.3 N.
Q5. An object moves with constant speed in a circular path. What is the work done by the centripetal force in one complete revolution?
✅ Correct Answer: Zero
Reason: Centripetal force is perpendicular to displacement; no work is done.
Q6. A conical pendulum has a length of 1 m and completes one revolution in 2 seconds. What is the angular velocity (ω)?
Soln:
T = 2 s → ω = 2π/T = 2π/2 = π rad/s
Q7. Which of the following forces is not a real force but an effect observed in rotating frames?
✅ Correct Answer: Centrifugal force- As it is a fictitious force observed in a rotating reference frame.
Q8. If mass is doubled and radius is halved for an object in circular motion with the same speed, the centripetal force becomes:
Soln:
Fc = mv²/r → (2m)v²/(r/2) = 4mv²/r → 4 times increase
Note: Here, some terms starting with angular (like angular velocity, angular acceleration, etc) and a few more terms are taken from the NEB syllabus, i.e. out of grade 10(SEE), just for the entrance examination for NEB, Science.
🔍 You Can Also Read:
🧠 Conceptual MCQs – Work, Energy & Power
🔢 Numerical-Based MCQs – Work, Energy & Power
✅ MCQ Quiz – Chapter: Sources of Energy
🧠 Conceptual MCQs – Sources of Energy
🔢 Numerical-Based MCQ – Simple Machine