9. An LTI system has input an] = 8[n- 2] which gives the output y n] = u[n -- 3]. The impulse response is %3D %3D a. h[n] = u[n- 1] b h[n] = u[n- 3] - u[n - 2] c. h[n] =u[n- 3] - uln - 1] d. h[n] = u[n- 2] %3D %3D e. h[n] = u[n] %3D
9. An LTI system has input an] = 8[n- 2] which gives the output y n] = u[n -- 3]. The impulse response is %3D %3D a. h[n] = u[n- 1] b h[n] = u[n- 3] - u[n - 2] c. h[n] =u[n- 3] - uln - 1] d. h[n] = u[n- 2] %3D %3D e. h[n] = u[n] %3D
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![9. An LTI system has input a[n] = 8[n – 2] which gives the output y(n] = u[n -- 3]. The impulse response is
%3D
%3D
a. h[n] = u[n- 1]
b h[n] = u[n -- 3] – u[n – 2)
c. hin] = u[n - 3] - u[n – 1]
d. h[n] = u[n– 2]
e. h[n] = un]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa936b18e-20fb-4c55-9164-a34fa27f17dd%2F717dd77e-f8af-4f6b-bed7-c28d37aa1adf%2F4kkls3e_processed.jpeg&w=3840&q=75)
Transcribed Image Text:9. An LTI system has input a[n] = 8[n – 2] which gives the output y(n] = u[n -- 3]. The impulse response is
%3D
%3D
a. h[n] = u[n- 1]
b h[n] = u[n -- 3] – u[n – 2)
c. hin] = u[n - 3] - u[n – 1]
d. h[n] = u[n– 2]
e. h[n] = un]
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