For the discrete time function f[n] (0.92180°)" (u[n+3]-u[n-5]) b.) = Make a table of the values of f[n] for values of n ≤ 5. Hand sketch the following signals that are manipulations of f[n] and label all nonzero values of the resulting signals. In cases where the argument of f[] is not an integer, use the value of zero for the signal. a.) x[n] = f[1.5n] g[n] = f[n/4]
For the discrete time function f[n] (0.92180°)" (u[n+3]-u[n-5]) b.) = Make a table of the values of f[n] for values of n ≤ 5. Hand sketch the following signals that are manipulations of f[n] and label all nonzero values of the resulting signals. In cases where the argument of f[] is not an integer, use the value of zero for the signal. a.) x[n] = f[1.5n] g[n] = f[n/4]
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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![For the discrete time function
b.)
f[n] (0.9/180°)" (u[n+3] - u[n- 5])
Make a table of the values of f[n] for values of n ≤ 5.
Hand sketch the following signals that are manipulations
of f[n] and label all nonzero values of the resulting signals.
In cases where the argument of f[] is not an integer, use
the value of zero for the signal.
a.)
c.)
=
d.)
x[n] = f[1.5n]
g[n] = f[n/4]
a[n] = f[1-2n]
Y[n] = f[2¹-³]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffb989860-4d1c-4fb5-9e6b-42a4528dce9c%2F6ec3afa8-de1a-476d-a3f4-33392a008379%2Fiuya2fm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the discrete time function
b.)
f[n] (0.9/180°)" (u[n+3] - u[n- 5])
Make a table of the values of f[n] for values of n ≤ 5.
Hand sketch the following signals that are manipulations
of f[n] and label all nonzero values of the resulting signals.
In cases where the argument of f[] is not an integer, use
the value of zero for the signal.
a.)
c.)
=
d.)
x[n] = f[1.5n]
g[n] = f[n/4]
a[n] = f[1-2n]
Y[n] = f[2¹-³]
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