A resistor of 150 ohms is connected in series with an 0.8 H inductor, across a 230 V, 60 Hz supply. Calculate (() the current flowing (m) the circuit phase angle (iii) the voltage across inductor and resistor (iv) the power dissipated Inductive Reactance, XI = Circuit Impedance, Z Circuit Current, = Angle (Theta) = Voltage across resistor, VR = Voltage across Inductor, VL = Power dissipated, Pd =

Delmar's Standard Textbook Of Electricity
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ISBN:9781337900348
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Chapter21: Resistive-capacitive Series Circuits
Section: Chapter Questions
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A resistor of 150 ohms is connected in series with an 0.8 H inductor,
across a 230 V, 60 Hz supply. Calculate (i) the current flowing (i) the
circuit phase angle (iii) the voltage across inductor and resistor (iv)
the power dissipated
Inductive Reactance, XI =
Circuit Impedance, Z =
Circuit Current, | =
Angle (Theta) =
Voltage across resistor, VR =
Voltage across Inductor, VL =
Power dissipated, Pd :
Transcribed Image Text:A resistor of 150 ohms is connected in series with an 0.8 H inductor, across a 230 V, 60 Hz supply. Calculate (i) the current flowing (i) the circuit phase angle (iii) the voltage across inductor and resistor (iv) the power dissipated Inductive Reactance, XI = Circuit Impedance, Z = Circuit Current, | = Angle (Theta) = Voltage across resistor, VR = Voltage across Inductor, VL = Power dissipated, Pd :
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