Additional problem AP2: (a) An ideal differentiator is placed in series with an ideal lowpass filter with a gain of 10 and a cutoff frequency of 25 Hz. Find the overall frequency response and plot its magnitude. x(t) H₁(w) H₂(w) y(t) (b) If x(t) 10 cos(10t+30°) +20 cos(20t) + 10 cos(30t - 45°), find y(t).
Additional problem AP2: (a) An ideal differentiator is placed in series with an ideal lowpass filter with a gain of 10 and a cutoff frequency of 25 Hz. Find the overall frequency response and plot its magnitude. x(t) H₁(w) H₂(w) y(t) (b) If x(t) 10 cos(10t+30°) +20 cos(20t) + 10 cos(30t - 45°), find y(t).
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![Additional problem AP2: (a) An ideal differentiator is placed in series with an ideal lowpass
filter with a gain of 10 and a cutoff frequency of 25 Hz. Find the overall frequency response and
plot its magnitude.
x(t)
H₁(w)
H₂(w)
y(t)
(b) If r(t) = 10 cos(10t +30°) +20 cos(20t) + 10 cos(30t – 45°), find y(t).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc231fac6-f61a-45b2-b174-05bc9b27b74a%2F34e80983-0702-4c8b-b68f-b907b17cf886%2Ffo392d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Additional problem AP2: (a) An ideal differentiator is placed in series with an ideal lowpass
filter with a gain of 10 and a cutoff frequency of 25 Hz. Find the overall frequency response and
plot its magnitude.
x(t)
H₁(w)
H₂(w)
y(t)
(b) If r(t) = 10 cos(10t +30°) +20 cos(20t) + 10 cos(30t – 45°), find y(t).
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