x(t) ... t(10-5 1 o 1 1 -2 3 3 2 2 Figure Q7(a) |H(f)| 6. f (kHz) -150 150 Figure Q7(b) ZH(f) f (kHz) Figure Q7(c) m IN nIN

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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SIGNALS AND SYSTEMS

x(t)
...
t(10-5)
1 o 1 1
-2
3
3 2
2
Figure Q7(a)
|H(f)|
6.
f (kHz)
-150
150
Figure Q7(b)
ZH(f)
f (kHz)
Figure Q7(c)
m IN
nIN
Transcribed Image Text:x(t) ... t(10-5) 1 o 1 1 -2 3 3 2 2 Figure Q7(a) |H(f)| 6. f (kHz) -150 150 Figure Q7(b) ZH(f) f (kHz) Figure Q7(c) m IN nIN
Q7
A signal x(t) with period To = 2 x 10-5 s in Figure Q7(a) is passed through a low pass
filter with the frequency response as per illustrated in Figure 07(b) and Figure Q7(c). The
input x(t) is given as:
an cos (ant)
+
n=1
(a)
Find the value of x(t) for 0 <n < 5 given that
2
sin
and
an
bn = 0.
(b)
Determine the output of the filter y(t).
Transcribed Image Text:Q7 A signal x(t) with period To = 2 x 10-5 s in Figure Q7(a) is passed through a low pass filter with the frequency response as per illustrated in Figure 07(b) and Figure Q7(c). The input x(t) is given as: an cos (ant) + n=1 (a) Find the value of x(t) for 0 <n < 5 given that 2 sin and an bn = 0. (b) Determine the output of the filter y(t).
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