NEET Physics: Oscillations — MCQ Test 17

Q6. A mass oscillates with \( v = -8 \cos (2t) \) (in m/s). What is its displacement function?

Q7. What happens to the period of a spring-mass system if both the mass and spring constant are doubled?

Q8. A mass of \( 0.5 \, \text{kg} \) on a spring has \( E = 2 \, \text{J} \) at \( A = 20 \, \text{cm} \). What is the spring constant?

Q9. A spring-mass system oscillates with \( T = 0.4 \, \text{s} \) when \( m = 0.2 \, \text{kg} \). What is the spring constant?

Q10. A mass of \( 4 \, \text{kg} \) is attached to a spring with \( k = 1600 \, \text{N/m} \) and displaced by \( 5 \, \text{cm} \). What is the total energy?

NEET PhysicsOscillations

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Which statement correctly describes the relationship between SHM and uniform circular motion?

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About this NEET MCQ Test

This page provides a free online MCQ test for NEET Physics preparation, focusing specifically on the chapter Oscillations. It contains 10 carefully selected multiple-choice questions (MCQs) designed to test your conceptual understanding and exam readiness.

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Key concepts covered in this specific test include Statement, Correctly, Describes, Relationship, Circular, and Frequency.

Taking these timed MCQ tests helps you simulate the real NEET exam environment. Detailed step-by-step explanations are provided for every question to help you learn from your mistakes and strengthen your fundamentals.

Preview of Questions in this Test

Q1. Which statement correctly describes the relationship between SHM and uniform circular motion?

  • A. SHM requires a centripetal force like circular motion
  • B. SHM and circular motion have identical force laws
  • C. SHM is the projection of uniform circular motion on a diameter
  • D. SHM occurs in two dimensions like circular motion

Q2. A spring-mass system has \( m = 2 \, \text{kg}, k = 800 \, \text{N/m} \). What is its angular frequency?

  • A. 15 rad/s
  • B. 20 rad/s
  • C. 25 rad/s
  • D. 30 rad/s

Q3. Which of the following represents periodic motion but not SHM? (\( \omega \) is a positive constant)

  • A. \( 2 \cos (\omega t) \)
  • B. \( \cos \omega t + \cos 3\omega t \)
  • C. \( 3 \sin (2\omega t) \)
  • D. \( e^{-\omega t} \)

Q4. Two identical springs (\( k = 100 \, \text{N/m} \)) are attached to a \( 2.0 \, \text{kg} \) mass as in Fig. 13.14. What is the period?

  • A. 0.5 s
  • B. 0.6 s
  • C. 0.62 s
  • D. 0.628 s

Q5. A spring of \( k = 200 \, \text{N/m} \) has a \( 0.5 \, \text{kg} \) mass. If \( E = 1 \, \text{J} \), what is the amplitude?

  • A. 0.05 m
  • B. 0.08 m
  • C. 0.12 m
  • D. 0.1 m

+ 5 more questions in the actual test

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