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II. Short Answer Questions · Q1

Q.What is displacement current?

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✓ Free question

Step 1. In a charging parallel-plate capacitor, no conduction current actually flows across the gap between the plates, yet a magnetic field is still observed there, exactly as if a current were flowing.

Step 2. Maxwell explained this by noting that the electric flux ΦE=EA=q/ϵ0\Phi_E=EA=q/\epsilon_0 between the plates is changing with time as the capacitor charges, and defined the displacement current as id=ϵ0dΦEdt=dqdti_d=\epsilon_0\dfrac{d\Phi_E}{dt}=\dfrac{dq}{dt}.

Step 3. Displacement current is therefore defined generally as the current that comes into play in any region in which the electric field (or the electric flux) is changing with time -- it behaves magnetically exactly like a real current even though no charge physically crosses the region.

Step 4. When the current in a circuit is constant (steady state), dΦE/dt=0d\Phi_E/dt=0 and the displacement current vanishes; it is only non-zero while the field is actually changing, such as during the charging or discharging of a capacitor.

✓Final answer

Displacement current is the current which comes into play in a region where the electric field (or electric flux) is changing with time, given by id=ϵ0dΦEdti_d=\epsilon_0\dfrac{d\Phi_E}{dt}.

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