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Simple Harmonic Motion Shm MCQ Tests

10th Class Physics MCQ Tests
Simple Harmonic Motion Shm of 10th Class Physics has 7 questions. If you take an online MCQ test, the system will randomly choose the questions. If you want to take the quiz by chapter then click the start test button.

Total Questions: 7
Total Marks: 7
Time: 10 Mins
Total Questions: 7
Total Marks: 7
Time: 10 Mins
10Min : 00 Sec Remaining
Question # 1
Which of the following is true for a body executing simple harmonic motion (SHM)?
Question # 2
What is the direction of acceleration produced in a body executing simple harmonic motion?
Question # 3
An object starts vibrating with simple harmonic motion from extreme position and comes back to the same extreme position. How many vibrations does it make?
Question # 4
The __________ of a wave can be used to determine how much energy is being transferred by the wave.
Question # 5
Which of the following conditions is satisfied in simple harmonic motion, when the magnitude of the acceleration is maximum?
Question # 6
If a wave frequency increases, its period __________.
Question # 7
A 200 g mass is hung vertically down with a spring and spring elongates 2cm. Taking g = 10 ms−2 , calculate the spring constant.
Total Questions
1234567
Question # 1
Which of the following is true for a body executing simple harmonic motion (SHM)?
Question # 2
What is the direction of acceleration produced in a body executing simple harmonic motion?
Question # 3
An object starts vibrating with simple harmonic motion from extreme position and comes back to the same extreme position. How many vibrations does it make?
Question # 4
The __________ of a wave can be used to determine how much energy is being transferred by the wave.
Question # 5
Which of the following conditions is satisfied in simple harmonic motion, when the magnitude of the acceleration is maximum?
Question # 6
If a wave frequency increases, its period __________.
Question # 7
A 200 g mass is hung vertically down with a spring and spring elongates 2cm. Taking g = 10 ms−2 , calculate the spring constant.
Total Questions
1234567

10th Class 2026

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