A- Consider the interconnection of the Linear Time-Invariant (LTI) systems shown in the Fig.1: ha[n] x[n] yln] hy[n] h, [n] i) Express the overall impulse response h[n] in terms of h [n], h2[n], h3[n] and h4[n]. ii) Determine h[n] when h, [n] = [0.5 0.25 0,5], h2[n] = h3[n] = (n+ 1)u[n] and h4 [n] = 8[n- 2] ii) Determine the response of the system in the figure to the :nput x[n] = 8[n+ 2] +38[n-1]-48[n-31:
A- Consider the interconnection of the Linear Time-Invariant (LTI) systems shown in the Fig.1: ha[n] x[n] yln] hy[n] h, [n] i) Express the overall impulse response h[n] in terms of h [n], h2[n], h3[n] and h4[n]. ii) Determine h[n] when h, [n] = [0.5 0.25 0,5], h2[n] = h3[n] = (n+ 1)u[n] and h4 [n] = 8[n- 2] ii) Determine the response of the system in the figure to the :nput x[n] = 8[n+ 2] +38[n-1]-48[n-31:
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![A- Consider the interconnection of the Linear Time-Invariant (LTI) systems shown
in the Fig.1:
ha[n]
x[n]
yln]
h, [n]
i) Express the overall impulse response h[n] in terms of h [n], h2[n], h3[n] and
h4[n].
ii) Determine h[n] when h, [n] = [0.5 0.25 0,5], h2[n] = h3[n] = (n+ 1)u[n]
and h4 [n] = 8[n- 2]
ii)
Determine the response of the system in the figure to the :nput
x[n] = 8[n+ 2] + 38[n- 1]-48[n-3]:](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8c00b530-cfb8-469a-b072-5bd3dd1d7200%2F7a268874-c863-4b77-9205-9abce0810f36%2Fb1od4xb_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A- Consider the interconnection of the Linear Time-Invariant (LTI) systems shown
in the Fig.1:
ha[n]
x[n]
yln]
h, [n]
i) Express the overall impulse response h[n] in terms of h [n], h2[n], h3[n] and
h4[n].
ii) Determine h[n] when h, [n] = [0.5 0.25 0,5], h2[n] = h3[n] = (n+ 1)u[n]
and h4 [n] = 8[n- 2]
ii)
Determine the response of the system in the figure to the :nput
x[n] = 8[n+ 2] + 38[n- 1]-48[n-3]:
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