1. For the circuit below: a. Write the node voltage equations for V1 and V2. b. Assume the 15mF capacitor is the load. Find the Thevenin equivalent impedance seen by the capacitor. C. Assume the 15mF capacitor is the load. Find the Thevenin equivalent voltage seen by the capacitor. d. Using any of your work above, write the equation for Vd(t). Copyright © McGraw-Hill Education. Permission required for reproduction or display. VC 15 mF 5 sin (20t + 12°) V( ~ 100 mH 150 mH 2 sin (201 +45°) A 主

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 2.17MCQ: Consider the load convention that is used for the RLC elements shown in Figure 2.2 of the text. A....
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Worksheet Week 09
1. For the circuit below:
a. Write the node voltage equations for V1 and V2.
b. Assume the 15mF capacitor is the load. Find the Thevenin equivalent
impedance seen by the capacitor.
C. Assume the 15mF capacitor is the load. Find the Thevenin equivalent
voltage seen by the capacitor.
d. Using any of your work above, write the equation for V(t).
Copyright © McGraw-Hill Education. Permission required for reproduction or display.
+
1Ω
1
VC
15 mF
5 sin (201 + 12°) V
100 mH
2Ω
150 mH
2 sin (201 + 45°) A
主
Transcribed Image Text:1 / 1 100% + Worksheet Week 09 1. For the circuit below: a. Write the node voltage equations for V1 and V2. b. Assume the 15mF capacitor is the load. Find the Thevenin equivalent impedance seen by the capacitor. C. Assume the 15mF capacitor is the load. Find the Thevenin equivalent voltage seen by the capacitor. d. Using any of your work above, write the equation for V(t). Copyright © McGraw-Hill Education. Permission required for reproduction or display. + 1Ω 1 VC 15 mF 5 sin (201 + 12°) V 100 mH 2Ω 150 mH 2 sin (201 + 45°) A 主
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