As shown in Figure: Q3, a coil of resistance 80 2 and inductance 228.5 mH is connected in parallel with a 25 µF capacitor across a 220 V, 60 Hz supply. Calculate: 80 o 228.5 mH 25μF 220 V, 60 Hz Figure: Q3 а. the current in the coil and its phase angle. b. the current in the capacitor C. the supply current and its phase angle d. the circuit impedance е. the power consumed f. the apparent power and the reactive power

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3. As shown in Figure: Q3, a coil of
resistance 80 n and inductance
228.5 mH is connected in parallel
with a 25 µF capacitor across a 220
V, 60 Hz supply. Calculate:
80 Q
228.5 mH
25µF
220 V, 60 Hz
Figure: Q3
a.
the current in the coil and its phase angle.
b.
the current in the capacitor
the supply current and its phase angle
d.
the circuit impedance
е.
the power consumed
f.
the apparent power and the reactive power
C.
Transcribed Image Text:3. As shown in Figure: Q3, a coil of resistance 80 n and inductance 228.5 mH is connected in parallel with a 25 µF capacitor across a 220 V, 60 Hz supply. Calculate: 80 Q 228.5 mH 25µF 220 V, 60 Hz Figure: Q3 a. the current in the coil and its phase angle. b. the current in the capacitor the supply current and its phase angle d. the circuit impedance е. the power consumed f. the apparent power and the reactive power C.
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