A coil has an inductance of and resistance of . A is applied across the coil. The energy stored in the magnetic field after the current has built up to its equilibrium value will be _____ .
JEE Physics 2023 Question with Solution
Answer
Correct answer:625
Step-by-step solution
Standard Method
Given:
- Inductance
- Resistance
- Applied voltage
Find: The energy stored in the magnetic field when the current reaches equilibrium.
At steady state, the inductor behaves as a short circuit, so the circuit reduces to a resistor connected across the source.

Using Ohm's law, the steady-state current is
Substituting the values,
The energy stored in the inductor is
Substituting and ,
Now express it in the required form:
Therefore, the required numerical value is 625.
Expanded Working
Given: , ,
Find: The blank in _____ \times 10^{-2} \, \text{J}.
When sufficient time has passed after applying a DC source, the current becomes constant. Then
and the induced emf across the inductor becomes zero. Hence the inductor offers no opposition in steady state and acts like a wire.
So the equilibrium current is determined only by the resistance:
Magnetic energy stored in an inductor is
Therefore,
To match the asked format,
Hence the answer is 625.
Common mistakes
Using the transient current instead of the equilibrium current is incorrect because the question asks for the value after the current has fully built up. First take the steady-state current , then compute energy.
Treating the inductor as having resistance is wrong because inductance and resistance are different quantities. At steady state for DC, the inductor behaves like a short circuit, not like a resistor of .
Forgetting the factor in gives an incorrect energy. Always use the full magnetic energy expression before substituting values.
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