Suppose that when x(t) u(t + 3) is the input to an LTI system with impulse response h(t), the output is y(t) (drawn below). What is h(t) ? = -3 -2 -1 (a) 8(t-1) + 8(t - 2) - 28(t - 5) (b) 8(t + 2) + 8(t+1) — 28(t − 2) (c) 8(t+5) + 8(t + 4) − 28(t + 1) 2 1 y(t) 0 1 2 t

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Suppose that when x(t)
u(t + 3) is the input to an LTI system with impulse response h(t),
the output is y(t) (drawn below). What is h(t)?
=
-3
-2 -1
(a) 8(t− 1) + 8(t – 2) — 28(t — 5)
(b) 8(t + 2) + 8(t + 1) − 28(t − 2)
(c) 8(t+5) + 8(t + 4) — 28(t + 1)
2
1
y(t)
0
1
2
t
Transcribed Image Text:Suppose that when x(t) u(t + 3) is the input to an LTI system with impulse response h(t), the output is y(t) (drawn below). What is h(t)? = -3 -2 -1 (a) 8(t− 1) + 8(t – 2) — 28(t — 5) (b) 8(t + 2) + 8(t + 1) − 28(t − 2) (c) 8(t+5) + 8(t + 4) — 28(t + 1) 2 1 y(t) 0 1 2 t
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