3) Consider the signal. xo(-t) -1 0 (a) Using only the Fourier Transform of xo(t) and Fourier Transform properties, determine the Fourier Transform of each signal shown in the Figure below. X₁ (t) xo(t) X3(t) Xo(t +1) N -1 0 x(t) 1 xo(t) 1 = t 0, t " 0≤t≤1 elsewhere -1 -Xo(-t) x2(t) (b) X4(t) 0 Xo(t) 1 txo(t) 1 t (1) t
3) Consider the signal. xo(-t) -1 0 (a) Using only the Fourier Transform of xo(t) and Fourier Transform properties, determine the Fourier Transform of each signal shown in the Figure below. X₁ (t) xo(t) X3(t) Xo(t +1) N -1 0 x(t) 1 xo(t) 1 = t 0, t " 0≤t≤1 elsewhere -1 -Xo(-t) x2(t) (b) X4(t) 0 Xo(t) 1 txo(t) 1 t (1) 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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Transcribed Image Text:3) Consider the signal.
Xo(-t)
-1
Xo(t +1)
-1
0
Using only the Fourier Transform of xo(t) and Fourier Transform properties, determine the Fourier
Transform of each signal shown in the Figure below.
x₁ (t)
X₂(t)
(a)
X3(t)
0
(c)
x (t)
xo(t)
1
xo(t)
1
=
t
e
0,
t
"
0 ≤t≤1
elsewhere
-1
-Xo(-t).
(b)
xo(t)
(d)
1
X4(t)
txo(t)
La
0
1
t
(1)
t
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