A DT LTI system has an impulse response h(n)=0.25"[u(n)-u(n-2)]. The response of the system to the input x(n) = u(n)-u(n-2) is O A. [1 1.5 0.5] O B. [1 1.5 2.5] OC. [1 1.25 0.25] O D. [1 1.25 1.5]
A DT LTI system has an impulse response h(n)=0.25"[u(n)-u(n-2)]. The response of the system to the input x(n) = u(n)-u(n-2) is O A. [1 1.5 0.5] O B. [1 1.5 2.5] OC. [1 1.25 0.25] O D. [1 1.25 1.5]
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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![A DT LTI system has an impulse response h(n)= 0.25 [u(n)-u(n-2)]. The response of the system to the
input x(n)= u(n)-u(n-2) is
O A. [1 1.5 0.5]
O B. [1 1.5 2.5]
OC. [1 1.25 0.25]
O D. [1 1.25 1.5]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faf1a01e1-5b35-4cbb-a954-a4ae65e1b2f6%2Fe0646759-5984-4b74-9446-9b0bff1c253e%2Fssk3vrw_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A DT LTI system has an impulse response h(n)= 0.25 [u(n)-u(n-2)]. The response of the system to the
input x(n)= u(n)-u(n-2) is
O A. [1 1.5 0.5]
O B. [1 1.5 2.5]
OC. [1 1.25 0.25]
O D. [1 1.25 1.5]
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