1. a) For the circuit shown, find the steady-state expression for vo when vg=10 cos 50,000t V. 2. b) Replace the 50 k2 resistor with a variable resistor and compute the value of resistance necessary to cause vo to lead vg by 120°. 10 kN 10 k. +15 V 400 pF +. -15 V §50 kM 13.7-13 Full Alternative Text

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Know how to use a circuit’s transfer function to calculate
the circuit’s impulse response, unit step response, and steady-state
response to sinusoidal input

1. a) For the circuit shown, find the steady-state expression for vo
when vg=10 cos 50,000t V.
2. b) Replace the 50 k2 resistor with a variable resistor and compute
the value of resistance necessary to cause vo to lead vg by 120°.
10 kN
10 k.
+15 V
400 pF
+.
-15 V
§50 kM
13.7-13 Full Alternative Text
Transcribed Image Text:1. a) For the circuit shown, find the steady-state expression for vo when vg=10 cos 50,000t V. 2. b) Replace the 50 k2 resistor with a variable resistor and compute the value of resistance necessary to cause vo to lead vg by 120°. 10 kN 10 k. +15 V 400 pF +. -15 V §50 kM 13.7-13 Full Alternative Text
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