The \(x\text-t\) graph of a particle performing simple harmonic motion is shown in the figure. The acceleration of the particle at \(t=2\) s is:
         
1. \(-\frac{\pi^2}{16} ~\text{ms}^{-2}\)
2. \(\frac{\pi^2}{8}~ \text{ms}^{-2}\)
3. \(-\frac{\pi^2}{8} ~\text{ms}^{-2}\)
4. \(\frac{\pi^2}{16} ~\text{ms}^{-2}\)
Subtopic:  Simple Harmonic Motion |
 62%
From NCERT
NEET - 2023
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The phase difference between displacement and acceleration of a particle in a simple harmonic motion is:
1. \(\frac{3\pi}{2}\text{rad}\)
2. \(\frac{\pi}{2}\text{rad}\)
3. zero
4. \(\pi ~\text{rad}\)

Subtopic:  Simple Harmonic Motion |
 73%
From NCERT
NEET - 2020
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NEET 2023 - Target Batch - Aryan Raj Singh
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The displacement of a particle executing simple harmonic motion is given by,

y=A0+A sinωt + B cosωt.
Then the amplitude of its oscillation is given by:
1. A+B
2. A0 + A2+B2
3. A2+B2
4. A02 + (A+B)2

Subtopic:  Simple Harmonic Motion |
 57%
From NCERT
NEET - 2019
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NEET 2023 - Target Batch - Aryan Raj Singh
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The average velocity of a particle executing SHM in one complete vibration is:
1. zero
2. Aω2
3. Aω
4. Aω22

Subtopic:  Simple Harmonic Motion |
 71%
From NCERT
NEET - 2019
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The distance covered by a particle undergoing SHM in one time period is: (amplitude = A)
1. zero
2. A
3. 2 A
4. 4 A

Subtopic:  Simple Harmonic Motion |
 74%
From NCERT
NEET - 2019
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NEET 2023 - Target Batch - Aryan Raj Singh
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