a) The network shown in Figure 1 has a total active power of 2253 W. Determine: i) the total impedance, ii) the supply current, iii) the apparent power, iv) the reactive power, v) the circuit power factor, vi) the capacitance of the capacitor to be connected in parallel with the network to improve the power factor to 0.90 lagging, if the supply frequency is 50 Hz. I O 492 3 Ω ΠΩ 1592

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Mechanical Engineering Course, Electrical Subject!

a) The network shown in Figure 1 has a total active power of 2253 W. Determine:
i) the total impedance,
ii) the supply current,
iii) the apparent power,
iv) the reactive power,
v) the circuit power factor,
vi) the capacitance of the capacitor to be connected in parallel with the network to improve the
power factor to 0.90 lagging, if the supply frequency is 50 Hz.
I
O
TIETO
40
502
praedias
a
30
Pa
ana
ΠΩ
Transcribed Image Text:a) The network shown in Figure 1 has a total active power of 2253 W. Determine: i) the total impedance, ii) the supply current, iii) the apparent power, iv) the reactive power, v) the circuit power factor, vi) the capacitance of the capacitor to be connected in parallel with the network to improve the power factor to 0.90 lagging, if the supply frequency is 50 Hz. I O TIETO 40 502 praedias a 30 Pa ana ΠΩ
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