For the discrete-time signals x[n] and v[n] given in each of the following parts, compute the convolution x[n] * v[n] for n ≥ 0 [compute x[n] * v[n] for n ≥ −2 in part (b)]. 1, x[3] = -1, x[n] = 0 for all other integers n; v[0] 1, v[1] = -2, = −4, v[n] = 0 for all other integers n. (a) x[0] = 4, x[1] = v[2] = 3, v[3] (b) x[n] = 1 for −1≤ n ≤ 2 and x[n] = 0 for all other integers n; v[-1] = -1; v[0] = 0, v[1] = 8, v[2] = 2, v[3] = 3 and v[n] = 0 for all other integers n.
For the discrete-time signals x[n] and v[n] given in each of the following parts, compute the convolution x[n] * v[n] for n ≥ 0 [compute x[n] * v[n] for n ≥ −2 in part (b)]. 1, x[3] = -1, x[n] = 0 for all other integers n; v[0] 1, v[1] = -2, = −4, v[n] = 0 for all other integers n. (a) x[0] = 4, x[1] = v[2] = 3, v[3] (b) x[n] = 1 for −1≤ n ≤ 2 and x[n] = 0 for all other integers n; v[-1] = -1; v[0] = 0, v[1] = 8, v[2] = 2, v[3] = 3 and v[n] = 0 for all other integers n.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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![For the discrete-time signals x[n] and v[n] given in each of the following parts, compute
the convolution x[n] * v[n] for n ≥ 0 [compute x[n] * v[n] for n ≥ −2 in part (b)].
(a) x[0] = 4, x[1] = 1, x[3] = −1, x[n] = 0 for all other integers n; v[0] = 1, v[1] = −2,
v[2] = 3, v[3] = −4, v[n] = 0 for all other integers n.
(b) x[n] = 1 for −1≤n ≤ 2 and x[n] = 0 for all other integers n; v[-1] = -1;
v[0] = 0, v[1] = 8, v[2] = 2, v[3] = 3 and v[n] = 0 for all other integers n.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F54af091d-7592-418d-bef8-3b07bbf58b2f%2F0a9dec60-f84e-4661-8e6d-530f38288850%2Fwag476d_processed.png&w=3840&q=75)
Transcribed Image Text:For the discrete-time signals x[n] and v[n] given in each of the following parts, compute
the convolution x[n] * v[n] for n ≥ 0 [compute x[n] * v[n] for n ≥ −2 in part (b)].
(a) x[0] = 4, x[1] = 1, x[3] = −1, x[n] = 0 for all other integers n; v[0] = 1, v[1] = −2,
v[2] = 3, v[3] = −4, v[n] = 0 for all other integers n.
(b) x[n] = 1 for −1≤n ≤ 2 and x[n] = 0 for all other integers n; v[-1] = -1;
v[0] = 0, v[1] = 8, v[2] = 2, v[3] = 3 and v[n] = 0 for all other integers n.
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