Rotating magnetic fields.
An electric motor is a device that uses electricity to create mechanical motion, usually by converting electrical energy into rotational motion. Electric motors are commonly used in various applications such as household appliances, power tools, and vehicles to make things move.
An electric motor is a device that uses electricity to create mechanical motion. It converts electrical energy into rotational motion by utilizing electromagnetic principles. Electric motors are commonly found in appliances, vehicles, and industrial machinery.
a motor...
There is really no way to make energy - do some reading about the Law of Conservation of Energy for more details. With a magnet, you can convert one type of energy into another - mechanical energy into electrical energy, or electrical energy into mechanical energy.
electromagnet. When an electric current passes through the coils, a magnetic field is created that interacts with the core, causing it to rotate and produce mechanical motion. This is the basic principle behind how motors work.
An electric motor is a device that uses electricity to create mechanical motion, usually by converting electrical energy into rotational motion. Electric motors are commonly used in various applications such as household appliances, power tools, and vehicles to make things move.
An electric motor is a device that uses electricity to create mechanical motion. It converts electrical energy into rotational motion by utilizing electromagnetic principles. Electric motors are commonly found in appliances, vehicles, and industrial machinery.
a motor...
The A.O. Smith company is a top supplier of electrical products for automobiles. They manufacture hermetic motors for air conditioning that are used in automobiles.
Electrical motors use electrical energy, they don't produce it. Generators produce electricity. Also, since they come in very different sizes, you would have to take a look at the generator's electrical specifications, specifically its power (or multiply voltage x current), and compare to those of the light-bulb.
Your question doesn't make much sense to me. Power of different types is used for a vast range of things. Electrical-motors, heaters, computers, lighting, air conditioning, etc, etc. Mechanical-vehicles, trains, ships, aircraft, etc, etc. P.S the person who questioned this dosent make sense
There is really no way to make energy - do some reading about the Law of Conservation of Energy for more details. With a magnet, you can convert one type of energy into another - mechanical energy into electrical energy, or electrical energy into mechanical energy.
A car motor works because it has gas and a spark, the two things that make most motors work.
Copper is used in car motors primarily due to its excellent electrical conductivity, which allows for efficient transmission of electrical currents. Its thermal conductivity also helps dissipate heat, preventing overheating in motor components. Additionally, copper is resistant to corrosion, ensuring durability and reliability in the demanding environment of a car engine. These properties make copper an ideal choice for wiring, windings, and other critical components in automotive motors.
Cars have either internal combustion engines, or electric motors (or both) which make them move. This is a fairly large subject which we cannot fully deal with in the form of an answer on this site. Suffice to say, by the use of ingenious and intricate machinery, the chemical energy stored in gasoline, or the electrical energy stored in a battery, can be converted into forward motion of a car.
electromagnet. When an electric current passes through the coils, a magnetic field is created that interacts with the core, causing it to rotate and produce mechanical motion. This is the basic principle behind how motors work.
The answer is both yes and no.It actually depends on the kind of washing machine in question.The problem is the motion.A washing machine need some kind of an engine or motor in order to move the cloths back and forth. This can of course be done manually.If we rule out manual washing machines, and also only count in electrical ones then these can be made in two different ways.The motor causing the tumbling or the motion in the washing machine can be made with both permanent magnets like NeoDym, or with purely electrical pulses creating strong electromagnetic fields.Most motors in washing machines made today are made without magnets. It is cheaper to make purely electrical motors where the electricity provides the magnetic fields needed. By electronically rotate the magnetic field around the axis, this will force the motion of the motor. It would use less electricity to make the motors with NeoDym magnets but it would also cost more to produce.As a conclusion: We can not make an electrical washing machine that operate without magnetic fields, but magnetic fields does not have to be made by magnets.