In Fig. 30-33, a circular loop of wire 10 cm in diameter (seen edge-on) is placed with its normal at an angle u ! 30 with the direction of a uniform magnetic field of magnitude 0.50 T. The loop is then rotated such that rotates in a cone about the field direction at the rate 100 rev/min; angle u remains unchanged during the process. What is the emf induced in the loop?
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Question
The inductance of a closely wound coil is such that an emf of 3.00 mV is induced when the current changes at the rate of 5.00 A/s. A steady current of 8.00 A produces a magnetic flux of 40.0 mWb through each turn. (a) Calculate the inductance of the coil. (b) How many turns does the coil have?
Solution
The first step in solving 30 problem number 98 trying to solve the problem we have to refer to the textbook question: The inductance of a closely wound coil is such that an emf of 3.00 mV is induced when the current changes at the rate of 5.00 A/s. A steady current of 8.00 A produces a magnetic flux of 40.0 mWb through each turn. (a) Calculate the inductance of the coil. (b) How many turns does the coil have?
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