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Exercise:
A bicycle dynamo consists of a permanent magnet next to an induction coil. When in operation the permanent magnet is rotating thereby inducing an emf in the induction coil. The induction coil has NO turns and an area of AO. When the magnet rotates with a frequency of fO the induced emf has an amplitude of VO. Calculate the strength of the magnetic field creating the flux through the induction coil.

Solution:
The amplitude of the generator voltage is given by mathcalE_ N A B omega N A B pi f Solving for the strength of the magnetic field leads to B BF fracVpitimes ftimes Ntimes A B approx resultBP
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Exercise:
A bicycle dynamo consists of a permanent magnet next to an induction coil. When in operation the permanent magnet is rotating thereby inducing an emf in the induction coil. The induction coil has NO turns and an area of AO. When the magnet rotates with a frequency of fO the induced emf has an amplitude of VO. Calculate the strength of the magnetic field creating the flux through the induction coil.

Solution:
The amplitude of the generator voltage is given by mathcalE_ N A B omega N A B pi f Solving for the strength of the magnetic field leads to B BF fracVpitimes ftimes Ntimes A B approx resultBP
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Attributes & Decorations
Branches
Magnetism
Tags
dynamo, generator, induced emf
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Difficulty
(2, default)
Points
0 (default)
Language
ENG (English)
Type
Calculative / Quantity
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