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While faraday's law tells us the magnitude of the emf produced, lenz's law tells us the direction that current will flow Let's solve some problems to better understand how to calculate the average induced emf in a coil exposed to a changing flux. The induced emf generates a current in the loop

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That current produces its own magnetic field around the conductor, some of which cuts through the loop. Sal determines the current and emf induced in a wire pulled through a magnetic field When the magnetic flux through a conducting loop changes, current is induced in the loop

This current produces it's own magnetic field

Lenz's law tells us that the current flows in the direction that produces a magnetic field in the loop that opposes the change in magnetic flux. An emf induced by motion relative to a magnetic field is called a motional emf This is represented by the equation emf = lvb, where l is length of the object moving at speed v relative to the strength of the magnetic field b. Uh oh, it looks like we ran into an error

If this problem persists, tell us. When changing current in one coil induces an emf in the other, the phenomenon is called mutual induction The strength of the emf induced depends on the mutual inductance of the pair of coils

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