JEE MAINS PRACTICE · Physics

Oscillations

665 practice questions for JEE Mains Practice194 easy · 260 medium · 211 hard. Every question is graded instantly with a step-by-step solution when you miss it.

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Sample questions

MCQ
The displacement time (x-t) graph of a particle performing simple harmonic motion is shown in the figure. The acceleration fo the particle at $t = 1$ s is
MCQ
The body of mass $M$ is performing S.H.M. as shown in the figure. The periodic time '$T$' of oscillation of a given system is
MCQ
The graph shows variation of displacement of a particle performing SHM with time t. which of the following statements is correct from the graph?
MCQ
The frequency of small oscillations of thin uniform vertical rod of mass $'m'$ and length $'l'$ hinged at point O with the help of two springs with spring constants $k_1$ and $k_2$, is
MCQ
A simple pendulum having length $l$ and mass 'm' is suspended between two plates having uniform electric field 'E' as shown in figure. The bob is given a charge $q$. The time period 'T' of its vibration is
MCQ
For a particle executing simple harmonic motion , which of the following statements is NOT correct?
MCQ
The phase of a particle performing a linear S.H.M increases by $\dfrac{\pi^c}{6}$ after every 5 second. The frequency of its oscillation is
MCQ
A body of mass $1$ kg is performing linear SHM. Its displacement $x$(cm) at $t$(s) is given by $x=6\sin\left(100t+\dfrac{\pi}{4}\right)$. Maximum kinetic energy of the body is
MCQ
A pendulum clock is running slow. In order to correct it, we should a. reduce the amplitude of the oscillation. b. increase the mass of the bob. c. reduce the length of the pendulum. d. take the pendulum at the equator…
MCQ
If the length of seconds pendulum on the surface of the earth is 1 m. The length of the seconds pendulum on the surface of the planet is $\left\{g_{planet}=\dfrac{7}{2}g_{earth}\right\}$ {periodic time of the seconds…
MCQ
The average acceleration of a particle performing S.H.M. over two complete oscillations is (A = amplitude, $\omega$ = angular frequency)
MCQ
The displacement of two identical particles performing S.H.M are represented by equation $x_1 = 6 \sin (5t + \pi /4)$ and $x_2 = 4 \cos \omega t$. The energies of both the particles will be same, if the value of…
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