A 16.0-mH inductor is connected to a North American electrical outlet (AV = 120 V, f = 60.0 Hz). Assuming the energy stored in the rms inductor is zero at t = 0, determine the energy stored at t =. 3.3E-4 1 190 S. The energy stored in the inductor oscillates at the same frequency as the voltage. J

University Physics Volume 2
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Chapter15: Alternating-current Circuits
Section: Chapter Questions
Problem 53AP: A 7.0-mH induct is connected across a 60-Hz ac source whose voltage amplitude is 50 V. (a) What is...
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A 16.0-mH inductor is connected to a North American electrical outlet (AV
120 V, f = 60.0 Hz). Assuming the energy stored in the
rms
inductor is zero att = 0, determine the energy stored at t =
3.3E-4
S.
190
The energy stored in the inductor oscillates at the same frequency as the voltage. J
Transcribed Image Text:A 16.0-mH inductor is connected to a North American electrical outlet (AV 120 V, f = 60.0 Hz). Assuming the energy stored in the rms inductor is zero att = 0, determine the energy stored at t = 3.3E-4 S. 190 The energy stored in the inductor oscillates at the same frequency as the voltage. J
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