In the \( \mathrm{R}-\mathrm{C} \) circuit shown in the figure the total energy of \( 3.6 \times...
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In the \( \mathrm{R}-\mathrm{C} \) circuit shown in the figure the total energy of \( 3.6 \times 10^{-3} \mathrm{~J} \) is dissipated in the \( 10 \Omega \) resistor when the switch \( \mathrm{S} \) is closed. The initial charge on the capacitor is
(A) \( 60 \mu \mathrm{C} \)
(B) \( 120 \mu \mathrm{C} \)
(C) \( 60 \sqrt{2} \mu \mathrm{C} \)
(D) \( \frac{60}{\sqrt{2}} \mu \mathrm{C} \)
\( P \)
W.
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