Which statement best describes the rotor design attribute of AC induction motors?

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Multiple Choice

Which statement best describes the rotor design attribute of AC induction motors?

Explanation:
AC induction motors rely on a rotating magnetic field produced by AC in the stator, and the rotor remains a passive conductor with currents induced in it rather than being fed directly from the supply. Because there is no external electrical connection to the rotor, there are no brushes or a commutator for typical designs. The common rotor type is the squirrel-cage rotor, which consists of conducting bars shorted at the ends, allowing induction to generate torque without a direct armature circuit. In other words, the rotor does not require brushes or an armature to be powered. Some wound-rotor designs do use slip rings and brushes to feed the rotor winding, but those are less common in basic AC induction motor concepts. The rotor in a standard induction motor is not powered by direct current; the rotor currents are induced by the stator’s AC field.

AC induction motors rely on a rotating magnetic field produced by AC in the stator, and the rotor remains a passive conductor with currents induced in it rather than being fed directly from the supply. Because there is no external electrical connection to the rotor, there are no brushes or a commutator for typical designs. The common rotor type is the squirrel-cage rotor, which consists of conducting bars shorted at the ends, allowing induction to generate torque without a direct armature circuit. In other words, the rotor does not require brushes or an armature to be powered.

Some wound-rotor designs do use slip rings and brushes to feed the rotor winding, but those are less common in basic AC induction motor concepts. The rotor in a standard induction motor is not powered by direct current; the rotor currents are induced by the stator’s AC field.

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