7. An ideal inductor, capacitor and resistor are connected in parallel across a 40 V a.c. supply. The circuit arrangement is shown in F, the currents flowing through the inductor is 1.273 A. Calculate (a) the frequency of the supply, (b) the currents through the resistor and capacitor, (c) the current drawn from the supply, and (d) the circuit power factor. and R. 502 1.273 A 25 H 10pF 40V fHz

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter21: Resistive-capacitive Series Circuits
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7. An ideal inductor, capacitor and resistor are connected in parallel
across a 40 V a.c. supply. The circuit arrangement is shown in F,
the currents flowing through the inductor is 1.273 A. Calculate (a) the
frequency of the supply, (b) the currents through the resistor and
capacitor, (c) the current drawn from the supply, and (d) the circuit
power factor.
and
R.
502
1.273 A 25 mH
10pF
40 V
fHz
Transcribed Image Text:7. An ideal inductor, capacitor and resistor are connected in parallel across a 40 V a.c. supply. The circuit arrangement is shown in F, the currents flowing through the inductor is 1.273 A. Calculate (a) the frequency of the supply, (b) the currents through the resistor and capacitor, (c) the current drawn from the supply, and (d) the circuit power factor. and R. 502 1.273 A 25 mH 10pF 40 V fHz
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