41. For the network of Fig. 15.148: a. Calculate E, IR, and Iz in phasor form. b. Calculate the total power factor, and indicate whether it is leading or lagging. c. Calculate the average power delivered to the circuit.

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41. For the network of Fig. 15.148:
a. Calculate E, IR, and Iz in phasor form.
b. Calculate the total power factor, and indicate whether
it is leading or lagging.
c. Calculate the average power delivered to the circuit.
d. Draw the admittance diagram.
e. Draw the phasor diagram of the currents I,. IR, and Iz,
and the voltage E.
f. Find the current Ic for each capacitor using only
Kirchhoff's current law.
g. Find the series circuit of one resistive and reactive
element that will have the same impedance as the
original circuit.
i; = V2 sin 27 1000r
220 N
L = 10 mH
R
µF
1 µF
Transcribed Image Text:41. For the network of Fig. 15.148: a. Calculate E, IR, and Iz in phasor form. b. Calculate the total power factor, and indicate whether it is leading or lagging. c. Calculate the average power delivered to the circuit. d. Draw the admittance diagram. e. Draw the phasor diagram of the currents I,. IR, and Iz, and the voltage E. f. Find the current Ic for each capacitor using only Kirchhoff's current law. g. Find the series circuit of one resistive and reactive element that will have the same impedance as the original circuit. i; = V2 sin 27 1000r 220 N L = 10 mH R µF 1 µF
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