A wire loop of radius 14 cm and resistance 12 is located in a uniform magnetic field that changes in magnitude as given in the figure. The loop's plane is perpendicular to the magnetic field. What is the magnitude of the emf in volts induced in the loop during the time intervals (a) t = 0 to 2.0 s; (b) 2.0 s to 4.0 s; and (c) 4.0 s to t = 6.0 s? B (T) 0.5 0 2.0 4.0 6.0 t(s)
A wire loop of radius 14 cm and resistance 12 is located in a uniform magnetic field that changes in magnitude as given in the figure. The loop's plane is perpendicular to the magnetic field. What is the magnitude of the emf in volts induced in the loop during the time intervals (a) t = 0 to 2.0 s; (b) 2.0 s to 4.0 s; and (c) 4.0 s to t = 6.0 s? B (T) 0.5 0 2.0 4.0 6.0 t(s)
College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Is the resistance relevant in this problem?

Transcribed Image Text:A wire loop of radius 14 cm and resistance 12 is located in a uniform magnetic field that changes in magnitude as given
in the figure. The loop's plane is perpendicular to the magnetic field. What is the magnitude of the emf in volts induced in
the loop during the time intervals (a) t = 0 to 2.0 s; (b) 2.0 s to 4.0 s; and (c) 4.0 s to t = 6.0 s?
(a) Number i 0.015
(b) Number
0
(c) Number i 0.015
B (T)
0.5
0
Units
Units V
Units
2.0 4.0 6.0
t(s)
V
V
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