Q.Derive the expression for effective capacitance when 'n' capacitors are connected in series.
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Start your 14-day free trial to unlock the full solution →In series, all capacitors carry the same charge Q, and the total voltage is the sum of individual voltages, leading to the reciprocal-sum formula for effective capacitance.
Setup: Consider capacitors of capacitances connected in series across a battery of emf .
Key property of series connection: In series, the same charge flows through and gets stored on each capacitor (since they are connected end-to-end, and charge induced on facing plates is identical by charge conservation on the isolated connecting conductors).
Let the potential differences across the capacitors be . Since for each:
The total applied voltage is the sum of the individual drops:
If is the single equivalent capacitance that stores the same charge at the same total voltage , then . Comparing: …
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