AP EAMCET · PHYSICS · Oscillations
The displacement of a particle executing SHM is given by
\(y=5 \sin \left(4 t+\frac{\pi}{3}\right) .\)
If \(T\) is the time period and the mass of the particle is \(2 \mathrm{~g}\), the kinetic energy of the particle when \(t=\frac{T}{4}\) is given by
- A 0.4 J
- B 0.5 J
- C 3 J
- D 0.3 J
Answer & Solution
Correct Answer
(A) 0.4 J
Step-by-step Solution
Detailed explanation
The displacement of particle, executing SHM Velocity of particle \(\begin{aligned} \left(\frac{d y}{d t}\right) & =\frac{5 d}{d t} \sin \left(4 t+\frac{\pi}{3}\right) \\ & =5 \cos \left(4 t+\frac{\pi}{3}\right) \cdot 4 \\ & =20 \cos \left(4 t+\frac{\pi}{3}\right) \end{aligned}\)…
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