electric genarator
A magnetic field is generated whenever a current is passing through a wire.
Before you can understand how electrical energy is supplied by your electric company, you need to know how it is produced. A magnet and a conductor, such as a wire, can be used to induce a current in the conductor. The key is motion. An electric current is induced in a conductor when the conductor moves through a magnetic field. Generating an electric current from the motion of a conductor through a magnetic field is called electromagnetic induction. Current that is generated in this way is called induced current. To induce a current in a conductor, either the conductor can move through the magnetic field or the magnet itself can move.
A charge in motion is usually called an electric current, but could also be called dynamic electricity (analogous to a charge at rest being called static electricity).
For some kinds of electric motors - not all kinds - the answer is yes.It is hard to explain the reasons using very simple terms, but here goes:Most small direct current electric motors that have stators which are made of permanent magnets can be made to generate direct current electricity when their rotors are turned at a fast enough speed by another engine, such as, for example, a car engine or a steam engine.For more information see the answer to the Related Question shown below.
Force and motion might be associated with a safety device.
An electrical generator, these can produce AC or DC electric current.
Electric motor
they produce a current the magnetic field has to turn motion into that current. the gas coal or water pass on that current to the magnetic field.
Any electrical generator except solar.
Charges in motion refer to electric charges that are moving within a material or a circuit. As charges move, they produce an electric current. The flow of electric current is what enables the transfer of energy and information in various electrical devices and systems.
Create relative motion between a magnetic field and a loop of wire.
An example of a device that uses both magnetism and electricity is an electric motor. Electric motors contain coils of wire that produce a magnetic field when an electric current is passed through them, interacting with permanent magnets to generate motion. This principle is used in various applications, such as in vehicles, appliances, and industrial machinery.
A potential electric current can be converted into various forms of energy such as light, heat, mechanical motion, or chemical energy, depending on the nature of the load or device it is powering.
An electric motor is a device that converts electrical energy into mechanical motion. It works by utilizing the electromagnetic principles to generate rotational motion.
An electric motor, an electric fan
Electricity in motion is called electric current. It is the flow of electric charge through a conductor.
Motion of a coil within a magnetic field will induce a current in the coil if it can complete a circuit.