The $x-t$ graph of a particle performing simple harmonic motion is shown in the figure. The acceleration of the particle at $t=2 \ s$ is:

  • A
    $-\frac{\pi^2}{16} \ m/s^2$
  • B
    $\frac{\pi^2}{8} \ m/s^2$
  • C
    $-\frac{\pi^2}{8} \ m/s^2$
  • D
    $\frac{\pi^2}{16} \ m/s^2$

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Similar Questions

$A$ body is oscillating in simple harmonic motion according to the equation $x = 6 \cos \left(2 \pi t + \frac{\pi}{3}\right) \ m$. The magnitude of the acceleration (in $m/s^2$) of the body at $t = 1 \ s$ is:

Write the formula of instantaneous acceleration of $SHM$ particle along $X$-axis.

$A$ particle of mass $0.3 \, kg$ is subjected to a force $F = -kx$ with $k = 15 \, N/m$. What will be its initial acceleration if it is released from a point $20 \, cm$ away from the origin? (in $m/s^2$)

The acceleration-displacement graph of a particle executing $SHM$ is shown in the figure. The time period of the simple harmonic motion is:

The average acceleration of a particle performing $SHM$ over one complete oscillation is:

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