An inductor of reactance , a capacitor of reactance , and a resistor of resistance are connected in series with an AC source of , . Average power dissipated by the circuit is _____ W.
JEE Physics 2025 Question with Solution
Answer
Correct answer:1
Step-by-step solution
Standard Method
Given: , , , , and frequency .
Find: Average power dissipated by the circuit.
In a series LCR circuit, the total impedance is
Substituting the given values,
The RMS current is
Only the resistor dissipates average power, so
Substituting,
Therefore, the average power dissipated by the circuit is .
Step-by-Step Calculation
Given: Inductive reactance , capacitive reactance , resistance , RMS voltage , and frequency .
Find: Average power dissipated by the circuit.
- First calculate the net reactance:
- Now find the impedance of the series circuit:
- Calculate the RMS current:
- Average power is dissipated only in the resistor:
Therefore, the required average power dissipated is .
Common mistakes
Using directly with total voltage and current without accounting for phase difference is incorrect, because average power in an AC LCR circuit depends on the resistive part only. Use instead.
Adding and directly as is wrong, because inductive and capacitive reactances oppose each other. First find the net reactance as .
Treating the given as peak voltage instead of RMS voltage leads to an incorrect current. The solution uses the supplied AC source voltage directly as in the impedance relation.
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