6. The first-order difference equation,20y[n] – 18y[n – 1] = 20x[n]. describes a discrete- time system initially at rest. a. Determine its impulse response h[n] b. With the calculated h[n], evaluate and sketch the output y[n] of the system when subjected to an input signal c. Perform the convolution x(t) * h(t) and sketch the output. Note that h(t) and x(t) are shown in Fig 2. x[n] = u[n] – u[n – 10] ,at xlt) hlt) Fig 2
6. The first-order difference equation,20y[n] – 18y[n – 1] = 20x[n]. describes a discrete- time system initially at rest. a. Determine its impulse response h[n] b. With the calculated h[n], evaluate and sketch the output y[n] of the system when subjected to an input signal c. Perform the convolution x(t) * h(t) and sketch the output. Note that h(t) and x(t) are shown in Fig 2. x[n] = u[n] – u[n – 10] ,at xlt) hlt) Fig 2
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![6. The first-order difference equation,20y[n] – 18y[n – 1] = 20x[n]. describes a discrete-
time system initially at rest.
a. Determine its impulse response h[n]
b. With the calculated h[n], evaluate and sketch the output y[n] of the system when
subjected to an input signal
c. Perform the convolution x(t) * h(t) and sketch the output. Note that h(t) and
x(t) are shown in Fig 2.
x[n] = u[n] – u[n – 10]
nt xlt)
大
Fig 2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F668d9b65-fe54-4e72-b805-4b42707332d4%2F9fbc1fce-02c6-4329-aab6-7a9d0a910187%2Fd8o1p7c_processed.jpeg&w=3840&q=75)
Transcribed Image Text:6. The first-order difference equation,20y[n] – 18y[n – 1] = 20x[n]. describes a discrete-
time system initially at rest.
a. Determine its impulse response h[n]
b. With the calculated h[n], evaluate and sketch the output y[n] of the system when
subjected to an input signal
c. Perform the convolution x(t) * h(t) and sketch the output. Note that h(t) and
x(t) are shown in Fig 2.
x[n] = u[n] – u[n – 10]
nt xlt)
大
Fig 2
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