A V = 30 mV battery is connected to a single turn loop of dimensions a = 13 cm by b = 12.5 cm has a resistance of R = 15.5 Ω. The loop is placed in a uniform magnetic field which is perpendicular to the plane of the loop. If the magnetic field is increasing at a rate of 1.4 T/sec, what is the magnitude and direction of the current in the circuit?
A V = 30 mV battery is connected to a single turn loop of dimensions a = 13 cm by b = 12.5 cm has a resistance of R = 15.5 Ω. The loop is placed in a uniform magnetic field which is perpendicular to the plane of the loop. If the magnetic field is increasing at a rate of 1.4 T/sec, what is the magnitude and direction of the current in the circuit?
Chapter13: Electromagnetic Induction
Section: Chapter Questions
Problem 26P: A square loop whose sides are 6.0-cm long is made with copper wire of radius 1.0 mm. If a magnetic...
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A V = 30 mV battery is connected to a single turn loop of dimensions a = 13 cm by b = 12.5 cm has a resistance of R = 15.5 Ω. The loop is placed in a uniform magnetic field which is perpendicular to the plane of the loop. If the magnetic field is increasing at a rate of 1.4 T/sec, what is the magnitude and direction of the current in the circuit?
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