A capacitor of capacitance \( \mathrm{C} \) is charged to a potential difference \( \mathrm{V} \...
A capacitor of capacitance \( \mathrm{C} \) is charged to a potential difference \( \mathrm{V} \) from a cell and then disconnected from \( \mathrm{t} \). A charge \( +\mathrm{Q} \) is now given to its positive plate. The potential difference across the capacitor is
P now
(A) \( \mathrm{V} \)
(B) \( \mathrm{V}+\frac{\mathrm{Q}}{\mathrm{C}} \)
(C) \( \mathrm{V}+\frac{\mathrm{Q}}{2 \mathrm{C}} \)
(D) \( \mathrm{V}-\frac{\mathrm{Q}}{\mathrm{C}} \), if \( \mathrm{V}\mathrm{CV} \)
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