A coil of 15 turns and radius 10.0 cm surrounds a long solenoid of radius 1.80 cm and 1.00 x 103 turns/meter (see figure below). The current in the solenoid changes as I = 7.00 sin 120 t, where I is in amperes and t is in seconds. Find the induced emf (in volts) in the 15-turn coil as a function of time. ε = 15-turn coil

Physics for Scientists and Engineers with Modern Physics
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Chapter31: Inductance
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A coil of 15 turns and radius 10.0 cm surrounds a long solenoid of radius 1.80 cm and 1.00 x 103 turns/meter (see figure below). The current in the solenoid changes as I = 7.00 sin 120 t, where I is in amperes and t is in seconds. Find the induced emf (in volts) in the
15-turn coil as a function of time.
ε =
R
15-turn coil
ww
Transcribed Image Text:A coil of 15 turns and radius 10.0 cm surrounds a long solenoid of radius 1.80 cm and 1.00 x 103 turns/meter (see figure below). The current in the solenoid changes as I = 7.00 sin 120 t, where I is in amperes and t is in seconds. Find the induced emf (in volts) in the 15-turn coil as a function of time. ε = R 15-turn coil ww
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