NEET Physics: Oscillations — MCQ Test 2

Q6. A pendulum has \( L = 0.64 \, \text{m}, g = 9.8 \, \text{m/s}^2 \). What is its angular frequency?

Q7. A particle in SHM has \( x = 5 \sin (2t) \) (in m). What is its speed at \( x = 2.5 \, \text{m} \)?

Q8. Two identical springs (\( k = 70 \, \text{N/m} \)) are attached to a \( 1.4 \, \text{kg} \) mass as in Fig. 13.14. What is the frequency?

Q9. A particle in SHM has \( x = 5 \cos (2t + \frac{\pi}{4}) \) (in m). What is its acceleration at \( t = 0 \, \text{s} \)? (Take \( \cos 45^\circ = \frac{\sqrt{2}}{2} \))

Q10. Two identical springs (\( k = 100 \, \text{N/m} \)) are attached to a \( 1 \, \text{kg} \) mass as in Fig. 13.14. What is the period?

Q11. The projection of a particle in circular motion on the x-axis is \( x = 3 \cos (2\pi t) \) (in m). What is the radius of the circular path?

Q12. In an ideal SHM system, what happens to the kinetic energy as the particle approaches the extreme position?

Q13. A pendulum of length \( 0.8 \, \text{m} \) oscillates with \( g = 10 \, \text{m/s}^2 \). What is its frequency?

Q14. A mass of \( 3 \, \text{kg} \) is attached to a spring with \( k = 300 \, \text{N/m} \). If displaced by \( 15 \, \text{cm} \), what is the total energy?

Q15. A particle in SHM has \( x = 2 \sin (4t + \frac{\pi}{3}) \) (in m). What is its acceleration at \( t = 0 \, \text{s} \)? (Take \( \cos \frac{\pi}{3} = 0.5 \))

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Free MCQ Test 2 of 20

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Two identical springs (\( k = 60 \, \text{N/m} \)) are attached to a \( 1.2 \, \text{kg} \) mass as in Fig. 13.14. What is the frequency?

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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 15 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 Identical, Attached, Frequency, Amplitude, Pendulum, and Oscillates.

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. Two identical springs (\( k = 60 \, \text{N/m} \)) are attached to a \( 1.2 \, \text{kg} \) mass as in Fig. 13.14. What is the frequency?

  • A. 1.0 Hz
  • B. 1.59 Hz
  • C. 2.0 Hz
  • D. 2.5 Hz

Q2. A spring-mass system has \( m = 0.5 \, \text{kg}, k = 200 \, \text{N/m} \). If the amplitude is \( 4 \, \text{cm} \), what is the total energy?

  • A. 0.1 J
  • B. 0.16 J
  • C. 0.2 J
  • D. 0.25 J

Q3. A simple pendulum has a length of \( 0.9 \, \text{m} \) and oscillates with \( g = 9.8 \, \text{m/s}^2 \). What is its period?

  • A. 1.5 s
  • B. 1.9 s
  • C. 2.2 s
  • D. 2.5 s

Q4. A particle in SHM has an amplitude of \( 10 \, \text{cm} \) and a frequency of \( 2.5 \, \text{Hz} \). What is its maximum velocity? (Take \( \pi = 3.14 \))

  • A. 1.57 m/s
  • B. 1.8 m/s
  • C. 2.0 m/s
  • D. 2.5 m/s

Q5. What property of SHM allows its displacement to be expressed as a linear combination of sine and cosine functions?

  • A. The amplitude variation
  • B. The phase constant shift
  • C. The angular frequency
  • D. The harmonic nature of motion

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