3. In the AC circuit shown in the Figure the AC voltage is given by E 20VZ-35° in the phasor form. The AC frequency is 60 Hz (a) Find the Impedance seen by the AC power source. (b) Find the current flowing through the circuit in the form /,(t) Asin(t+). + 0°). (c) Find the voltage across the capacitor. Report it in the form v(t) Asin(at = (d) Find the voltage across the inductor. Report it in the phasor form. VL Ve Report box: + HH (a)Ziot Ω X102 R =2Q 0 sin( (b)s , A t+ 20VZ-35 ( (c)Vc sin( ), V 0 V 2 (d)VL

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.27P: An industrial load consisting of a bank of induction motors consumes 50 kW at a power factor of 0.8...
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3. In the AC circuit shown in the Figure the AC voltage is given by E 20VZ-35° in the phasor
form. The AC frequency is 60 Hz
(a) Find the Impedance seen by the AC power source.
(b) Find the current flowing through the circuit in the form /,(t) Asin(t+).
+ 0°).
(c) Find the voltage across the capacitor. Report it in the form v(t) Asin(at
=
(d) Find the voltage across the inductor. Report it in the phasor form.
VL
Ve
Report box:
+
HH
(a)Ziot
Ω
X102
R =2Q
0
sin(
(b)s
, A
t+
20VZ-35 (
(c)Vc
sin(
), V
0
V 2
(d)VL
Transcribed Image Text:3. In the AC circuit shown in the Figure the AC voltage is given by E 20VZ-35° in the phasor form. The AC frequency is 60 Hz (a) Find the Impedance seen by the AC power source. (b) Find the current flowing through the circuit in the form /,(t) Asin(t+). + 0°). (c) Find the voltage across the capacitor. Report it in the form v(t) Asin(at = (d) Find the voltage across the inductor. Report it in the phasor form. VL Ve Report box: + HH (a)Ziot Ω X102 R =2Q 0 sin( (b)s , A t+ 20VZ-35 ( (c)Vc sin( ), V 0 V 2 (d)VL
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