the answer is rotational force
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An electric motor's magnetic field can collapse due to a sudden change in voltage or current levels, which can demagnetize the motor's components. This can happen if the motor is overloaded, if there is a short circuit, or if there is a disruption in the power supply.
The output of all electric motors is rotational motion. Electric motors convert electrical energy into mechanical energy by generating a rotating magnetic field that causes the motor shaft to rotate.
True. In an electric motor, a magnetic field causes a current-carrying loop to experience a torque that makes it spin. This spinning motion is the basis of how electric motors convert electrical energy into mechanical energy.
Permanent magnets or electromagnets are typically used in electric motors. Permanent magnets provide a constant magnetic field, while electromagnets have a magnetic field that can be controlled by the flow of electric current.
All electrical motors use a magnetic field and electric current to generate motion. The interaction between the magnetic field and the current generates a force that causes the motor to rotate. Additionally, motors typically have a rotor and a stator, where the rotor is the rotating part and the stator is the stationary part.
They both produce magnetic fields. So when together they attract.