YESA solenoid is a coil of wire, which turns into a magnet when a?current?flows through
solenoid!
The word, 'Solenoid' defines a shape, which turns out to be cylinder-shaped. Solenoid is an adjective . . . that means that it modifies a noun. The noun in this case is coil: As in 'solenoid coil' which is cylinder-shaped. In a car, the solenoid coil, or just 'Solenoid' pulls in the electric contactor on a car's starter to turn the starter. After the car starts, the solenoid releases the contactor to where it will be ready for the next engine startup.
A solenoid, which is a long coil of wire, produces a magnetic field similar to that of a bar magnet when a current passes through it. The magnetic field produced by a solenoid is confined within the coil and has north and south poles along its axis.
A solenoid can be converted into an electromagnet by running an electric current through the coil of wire. The current creates a magnetic field around the coil, turning the solenoid into a magnet. When the current is turned off, the solenoid no longer functions as a magnet.
no. because there is no solenoid of any kind on a 125sx.
Factors affecting the magnetic field strength of a solenoid are: - length of the solenoid - diameter of the solenoid - current through the coil around the solenoid - number of turns of the coil of current around the solenoid, usually turns of wire - material in the core
Passing an electric current through a solenoid coil can turn it into an electromagnet. The current generates a magnetic field around the coil, inducing magnetism in the core material of the solenoid. This allows the solenoid to attract ferromagnetic materials or influence nearby objects.
Solenoid has a longer length compared to its diameter. The Distance between two loops in a solenoid is longer. while Coil has the bigger diameter. The distance between two loops in a coil is shorter compared to its diameter.
There could be more than one reasons. Applied voltage may not be 118 volts. Solenoid valve may have been stuck mechanically. Solenoid coil could be faulty, partially short.
When current is passed through a solenoid coil, magnetic field produced due to each turn of solenoid coil is in the same direction. As a result the resultant magnetic field is very strong and uniform. The field lines inside the solenoid are in the form of parallel straight lines along the axis of solenoid. Thus, the solenoid behaves like a bar magnet.
To increase the magnetic field of a solenoid, you can increase the number of turns of wire in the coil or increase the current flowing through the coil. Both of these methods will strengthen the magnetic field generated by the solenoid.