in(t) mm + vi (t) (a) Find the driving-point impedance, Z(s) = V₁(s)/I₁(s) (b) Find the transfer function, H(s) = V₂(s)/V₁(s). i www v₂ (t)
in(t) mm + vi (t) (a) Find the driving-point impedance, Z(s) = V₁(s)/I₁(s) (b) Find the transfer function, H(s) = V₂(s)/V₁(s). i www v₂ (t)
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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Hi please help.
Thank you so much.

Transcribed Image Text:i₁(t)
+
vi (t)
L
(a) Find the driving-point impedance, Z(s) = V₁(s)/I1(s)
(b) Find the transfer function, H(s) = V₂(s)/V₁(s).
C
ww
v₂ (t)

Transcribed Image Text:in(t)
+
v₁ (t)
mm
R
ww
+
v₂ (t)
(c) Let L = 1 H. Choose R and C such that the circuit's undamped natural frequency is 100 rad/ sec and its half-power
bandwidth is 20 rad/ sec.
(d) Make labelled sketches of H(jw) and of ZH(jw) versus frequency on a linear scale over the range 0 ≤ w ≤
200 rad s ¹.
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