It will be spinning at high revolutions.
In this electric motor, an electric current flowing through the coil interacts with the magnetic field, generating a force that causes the coil to rotate. This rotation changes the direction of the magnetic field around the coil, which in turn causes the coil to keep rotating in the same direction.
The part that rotates inside of an electric motor is called the rotor.
..because of coil it creates magnetic field through the magnet, the coil contains electric charges and it continue to move, upward and downward. The significant of coil is to store electric charges.
The coil of wire in an electric motor acts as the armature, generating a magnetic field when an electrical current passes through it. This magnetic field interacts with the motor's permanent magnets to produce rotational motion, which drives the motor's shaft.
The field coil in an electric motor creates a magnetic field when electricity flows through it. This magnetic field interacts with the armature, causing it to rotate and generate mechanical motion. The field coil determines the strength and direction of the magnetic field, influencing the motor's efficiency and performance.
The rotating coil of a dynamo or electric motor is called armature.
To make a simple electric motor for a science fair project, you will need a battery, a magnet, insulated wire, a small piece of cardboard, and a paperclip. Wind the wire around the cardboard to create a coil, attach the ends of the wire to the battery terminals, and place the magnet next to the coil. When the battery is connected, the coil will spin due to the interaction between the electric current and the magnetic field, creating a simple electric motor.
Actually an electric motor is a simple device. It contains a housing, wiring, brushes, electrical connections, and an electrical coil.
if it is a capacitor start and run motor, this is because of shorted capacitor
To make a motor using magnets, you can create a simple design with a coil of wire and a magnet. When an electric current flows through the coil, it creates a magnetic field that interacts with the magnet, causing the coil to rotate. This rotation can be used to create mechanical motion in a motor.
An electric generator converts mechanical energy into electrical energy, while an electric motor converts electrical energy into mechanical energy. Generators produce electricity by rotating a coil within a magnetic field, while motors use electricity to create a magnetic field that causes a coil to rotate.
The part of an electric motor that connects the power supply to the split-ring and coil is called the commutator. It works in conjunction with the brushes, which are conductive contacts that transfer electrical current from the power supply to the rotating coil through the commutator. This setup allows for the continuous rotation of the coil by reversing the current direction at the appropriate moments.