The combination of a magnetic field and a coiled wire creates an electromagnetic induction effect, which generates an electric current in the wire. This phenomenon is the basis for the operation of electric generators and Transformers.
The combination of a magnetic field and a coiled wire can create an electric current through electromagnetic induction. When the magnetic field changes within the coil, it induces a voltage that leads to the flow of current within the wire. This phenomenon forms the basis of how generators produce electricity.
When a magnetic field intersects a coiled wire, it induces an electric current to flow in the wire. This phenomenon is known as electromagnetic induction and is the fundamental principle behind electrical generators and transformers.
The wire in an electric motor is coiled to create a magnetic field when an electric current flows through it. This magnetic field interacts with other magnetic fields in the motor, causing the motor to rotate. Coiling the wire helps increase the strength of the magnetic field and improves the motor's efficiency.
When electricity runs through a coiled wire, the coil becomes an electromagnet. The magnetic field produced by the coil allows it to attract or repel other metals.
40mT means 40 milli Tesla. A Tesla is a derived unit in the SI system of measures, and is a measure of magnetic field strength. The quantity given is rather small, but would be equal to that of a handful of fridge magnets. The Earth's magnetic field is about 30 micro Tesla.
The combination of the magnetic field of a coiled wire wrapped around an iron core will create a very useful electromagnet. This is the bases used in the construction of mechanical relays.
The combination of a magnetic field and a coiled wire can create an electric current through electromagnetic induction. When the magnetic field changes within the coil, it induces a voltage that leads to the flow of current within the wire. This phenomenon forms the basis of how generators produce electricity.
When a magnetic field intersects a coiled wire, it induces an electric current to flow in the wire. This phenomenon is known as electromagnetic induction and is the fundamental principle behind electrical generators and transformers.
Yes
The wire in an electric motor is coiled to create a magnetic field when an electric current flows through it. This magnetic field interacts with other magnetic fields in the motor, causing the motor to rotate. Coiling the wire helps increase the strength of the magnetic field and improves the motor's efficiency.
cadussesAnswer:A staff with a snake coiled around it.
You can't see any force. You can only see light which is a ripple in the electromagnetic field.
an AC, or alternating current
Magnetic field.
When electricity runs through a coiled wire, the coil becomes an electromagnet. The magnetic field produced by the coil allows it to attract or repel other metals.
No. A coiled wire can never become an electric bell without some more piecesand parts. When you have those, however, assembled in the right way, it's truethat passing an electric current through the coiled wire will cause the bell to ring.
it creates a very strong magnet A+ users