Which component stores energy in a magnetic field?

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Multiple Choice

Which component stores energy in a magnetic field?

Explanation:
Inductors store energy in a magnetic field. When current flows through a coil, a magnetic field builds up around it and a portion of the energy is stored in that field. The stored energy equals 1/2 L I^2, with L as the inductance and I as the current. This magnetic energy is why inductors resist sudden changes in current, since changing the current alters the magnetic field and the energy in it, creating a back-EMF that opposes the change. A capacitor stores energy in an electric field between its plates (1/2 C V^2), a resistor mainly dissipates energy as heat, and a transformer uses magnetic fields to transfer energy between windings rather than primarily storing it. So, the component that stores energy in a magnetic field is the inductor.

Inductors store energy in a magnetic field. When current flows through a coil, a magnetic field builds up around it and a portion of the energy is stored in that field. The stored energy equals 1/2 L I^2, with L as the inductance and I as the current. This magnetic energy is why inductors resist sudden changes in current, since changing the current alters the magnetic field and the energy in it, creating a back-EMF that opposes the change. A capacitor stores energy in an electric field between its plates (1/2 C V^2), a resistor mainly dissipates energy as heat, and a transformer uses magnetic fields to transfer energy between windings rather than primarily storing it. So, the component that stores energy in a magnetic field is the inductor.

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