10.8. For the LTI system, the input signal is x[n], the output signal is y[n], and the impulse response is h[n]. For each of the cases that follow, find the output y[n]. The referenced signals are given in Figure P10.8. (a) x[n] in (a), h[n] in (b) (b) x[n] in (a), h[n] in (c) (c) x[n] in (a), h[n] in (d) (d) in (b), in (c) (e) x[n] in (b), h[n] in (f) x[n] h[n] ... -1 0 1 2 3 (b) 10 1 2 3 4 5 n (a) 1.5 10.5 -10 1 2 3 ... -10 (d) (e) ... ... -1 0 2 (e) (f) Figure P10.8

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10.8. For the LTI system, the input signal is x[n], the output signal is y[n],
and the impulse response is h[n]. For each of the cases that follow, find the
output y[n]. The referenced signals are given in Figure P10.8.
(a) x[n] in (a), h[n] in (b)
(b) x[n] in (a), h[n] in (e)
(c) x[n] in (a), h[n] in (d)
(d) in (b), in (c)
(e) x[n] in (b), h[n] in (f)
x[n] h[n]
10 1 2 3 4 5 n
-1 0 1 2 3
(a)
(b)
1.5
10.5
-1 0 1 2 3
...
-1 0
(d)
(e)
...
...
...
-1 0
2
(e)
(f)
Figure P10.8
Transcribed Image Text:10.8. For the LTI system, the input signal is x[n], the output signal is y[n], and the impulse response is h[n]. For each of the cases that follow, find the output y[n]. The referenced signals are given in Figure P10.8. (a) x[n] in (a), h[n] in (b) (b) x[n] in (a), h[n] in (e) (c) x[n] in (a), h[n] in (d) (d) in (b), in (c) (e) x[n] in (b), h[n] in (f) x[n] h[n] 10 1 2 3 4 5 n -1 0 1 2 3 (a) (b) 1.5 10.5 -1 0 1 2 3 ... -1 0 (d) (e) ... ... ... -1 0 2 (e) (f) Figure P10.8
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