Q) For the circuit of Fig. 1: a. Find the total impedance Zy in polar form. h. Draw the impedance diagram. c. Find the value of C in microfarads and L in Hz. d. Find the current I and the voltages Va. V. and Vc in phasor form. e. Draw the phasor diagram. r. Verify Kirchhoff's voltage law around the closed lo g. Find the average power delivered to the circuit. h. Find the power factor of the circuit, and indicate whether it is leading or lagging. L. Find the sinusoidal expressions for the voltages and current. J. Plot the waveforms for the voltages and current on the same set of axes. loop. R- 40 X -10n Xe-?0 e= 113.14 sin(wt+30) V w=500 rad/sec Fig.1.

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Q) For the circuit of Fig. 1: . Find the total impedance Z in polar form. b. Draw the impedance. . Find the value of C in microfurads and L in Hz. . Find the current 1 and the voltages Ve, V.. and Ve in phasor form, . Draw the phasor diagram. £ Verify Kirchhof1s voltage law around the closed loop. 2. Find the average power delivered 10 the crcuit. h. Find the power factor of the circuil, asd indicate whether it is leading or lagging . Find the simssoidal expressions for the vollages and current. . Plotthe waveforms for the voltages and currenton the same sct of axcs X, e=113.14 sin(wt+30) V. W=500 rad/sec
Q) For the circuit of Fig. 1:
a. Find the total impedance Zr in polar form.
h. Draw the impedance diagram.
c. Find the value of Cin microfarads and L in Hz.
d. Find the current I and the voltages Va. V, and Ve in phasor form.
e. Draw the phasor diagram.
r. Verify Kirchhoffs voltage law around the closed loop.
g. Find the average power delivered to the circuit.
h. Find the power factor of the circuit, and indicate whether it is leading or lagging.
1. Find the sinusoidal expressions for the voltages and current.
J. Plot the waveforms for the voltages and current on the same set of axes.
X -10n Xe-70
ll
R- 40
e= 113.14 sin(wt+30) V
w=500 rad/sec
Fig.1.
Transcribed Image Text:Q) For the circuit of Fig. 1: a. Find the total impedance Zr in polar form. h. Draw the impedance diagram. c. Find the value of Cin microfarads and L in Hz. d. Find the current I and the voltages Va. V, and Ve in phasor form. e. Draw the phasor diagram. r. Verify Kirchhoffs voltage law around the closed loop. g. Find the average power delivered to the circuit. h. Find the power factor of the circuit, and indicate whether it is leading or lagging. 1. Find the sinusoidal expressions for the voltages and current. J. Plot the waveforms for the voltages and current on the same set of axes. X -10n Xe-70 ll R- 40 e= 113.14 sin(wt+30) V w=500 rad/sec Fig.1.
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