3 Problem For circuit C in the appendix: • Derive the transfer function Vout(s) Gy→Voutput V(s) from input voltage V(s) to output voltage Vout(s) (across the parallel RC connection) • State the natural frequency and damping ratio of the circuit in terms of R, C, and L. • Given C = 10E-6 Farads and L = 1E-3 Henries select R (units of ohms) so the circuit is critically damped and state the natural frequency of the circuit in Hz.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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3 Problem
For circuit C in the appendix:
• Derive the transfer function
Vout(s)
Gv→Voutput
=
V(s)
from input voltage V(s) to output voltage Vout(s) (across the parallel RC connection)
• State the natural frequency and damping ratio of the circuit in terms of R, C, and L.
• Given C = 10E-6 Farads and L = 1E-3 Henries select R (units of ohms) so the circuit is
critically damped and state the natural frequency of the circuit in Hz.
Transcribed Image Text:3 Problem For circuit C in the appendix: • Derive the transfer function Vout(s) Gv→Voutput = V(s) from input voltage V(s) to output voltage Vout(s) (across the parallel RC connection) • State the natural frequency and damping ratio of the circuit in terms of R, C, and L. • Given C = 10E-6 Farads and L = 1E-3 Henries select R (units of ohms) so the circuit is critically damped and state the natural frequency of the circuit in Hz.
L
m
C
г)
ми
Vout (t)
Transcribed Image Text:L m C г) ми Vout (t)
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