Problem 10. A coil consists of a resistance of 100 2 and an inductance of 200 mH. If an alternating voltage, v, given by v=200 sin 500t volts is applied across the coil, calculate (a) the circuit impedance, (b) the current flowing, (c) the p.d. across the resistance, (d) the p.d. across the %3D

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
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Chapter21: Resistive-capacitive Series Circuits
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Problem 10.
A coil consists of a resistance of
100 2 and an inductance of 200 mH. If an
alternating voltage, v, given by v=200 sin 500r
volts is applied across the coil, calculate (a) the
circuit impedance, (b) the current flowing, (c) the
p.d. across the resistance, (d) the p.d. across the
inductance and (e) the phase angle between voltage
and current.
Transcribed Image Text:Problem 10. A coil consists of a resistance of 100 2 and an inductance of 200 mH. If an alternating voltage, v, given by v=200 sin 500r volts is applied across the coil, calculate (a) the circuit impedance, (b) the current flowing, (c) the p.d. across the resistance, (d) the p.d. across the inductance and (e) the phase angle between voltage and current.
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