7. Find the impulse response h[n] for each of the causal LTI discrete-time systems satisfying the following difference equations and indicate whether each system is a FIR or an IIR system. (a) y[n] = x[n] - 2x[n – 2] + x[n – 3]: %3! (b) y[n] + 2y[n – 1] = x[n] + x[n – 1].
7. Find the impulse response h[n] for each of the causal LTI discrete-time systems satisfying the following difference equations and indicate whether each system is a FIR or an IIR system. (a) y[n] = x[n] - 2x[n – 2] + x[n – 3]: %3! (b) y[n] + 2y[n – 1] = x[n] + x[n – 1].
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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![7. Find the impulse response h[n] for each of the causal LTI discrete-time systems satisfying
the following difference equations and indicate whether each system is a FIR or an lIR
system.
(a) y[n] = x[n] – 2x[n - 2] + x[n – 3]:
(b) y[n] + 2y[n - 1] = x[n] + x[n – 1].](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F82f61487-4507-4bce-a8d6-9bcbe0441843%2F6edc0391-cd69-4d71-9a24-a00d29a61c72%2Fg6a2mdp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:7. Find the impulse response h[n] for each of the causal LTI discrete-time systems satisfying
the following difference equations and indicate whether each system is a FIR or an lIR
system.
(a) y[n] = x[n] – 2x[n - 2] + x[n – 3]:
(b) y[n] + 2y[n - 1] = x[n] + x[n – 1].
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