A toy of mass $20 \mathrm{~g}$ at rest acquires a velocity $(3 \hat{\mathrm{i}}-2 \hat{\mathrm{j}})…

A toy of mass $20 \mathrm{~g}$ at rest acquires a velocity $(3 \hat{\mathrm{i}}-2 \hat{\mathrm{j}}) \mathrm{ms}^{-1}$ in 2 seconds. Then the power of the toy is
  1. $0.975 \mathrm{~W}$
  2. $0.325 \mathrm{~W}$
  3. $1.3 \mathrm{~W}$
  4. $0.065 \mathrm{~W}$

Solution

Mass of toy, $\mathrm{m}=20 \mathrm{~g}=0.02 \mathrm{~kg}$ Velocity, $\overrightarrow{\mathrm{v}}=(3 \hat{\mathrm{i}}-2 \hat{\mathrm{j}}) \mathrm{m} / \mathrm{s}$ $ |\overrightarrow{\mathrm{v}}|=\sqrt{9+4}=\sqrt{13} \mathrm{~m} / \mathrm{s} $ Power of the toy is defined by $ \begin{aligned} & P=F v \\ & =\frac{\mathrm{mv}^2}{t} \\ & =\frac{0.02 \times 13}{2}=0.13 \mathrm{~W} \end{aligned} $

Asked in: AP EAMCET 2023 (19 May Shift 1)

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