2. The continuous-time Fourier transform of the triangular signal x(t) shown below left is X()=4 sin² (7) N22 Using the properties of linearity, time shifting, and time scaling, find the Fourier transform of the signal z(t) shown below right x(t) -1 1 2 z(t) t 2 3 5 6 Hint: Note that the shape of z(t) may be represented in several ways, two of which are shown below: or 10
2. The continuous-time Fourier transform of the triangular signal x(t) shown below left is X()=4 sin² (7) N22 Using the properties of linearity, time shifting, and time scaling, find the Fourier transform of the signal z(t) shown below right x(t) -1 1 2 z(t) t 2 3 5 6 Hint: Note that the shape of z(t) may be represented in several ways, two of which are shown below: or 10
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:2. The continuous-time Fourier transform of the triangular signal x(t) shown below left is
X()=4
sin² (7)
N22
Using the properties of linearity, time shifting, and time scaling, find the Fourier
transform of the signal z(t) shown below right
x(t)
-1
1
2
z(t)
t
2
3
5 6
Hint: Note that the shape of z(t) may be represented in several ways, two of which are shown below:
or
10
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