2. The z-transform of the system impulse response is described below. n-1 24 h(n) = (-)¹-¹ u(n-1) - (3)¹u(n − 2)+(2)¹-4u(n-3) - 36 Determine the followings. The Transfer Function of the system, H(z). ROC of the Transfer Function, H(z). Zero-pole location of the system.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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2. The z-transform of the system impulse response is described below.
n-1
h(n) = (-)¹-¹ u(n − 1) -
-
Determine the followings.
i)
iv)
v)
24
— ²4 (3)¹u(n − 2) + (2)¹–4u(n-3)
-
36
The Transfer Function of the system, H(z).
ROC of the Transfer Function, H(z).
Zero-pole location of the system.
System stability.
Frequency response of the system, H(w).
Verify iii), iv) and v) using MATLAB.
Transcribed Image Text:2. The z-transform of the system impulse response is described below. n-1 h(n) = (-)¹-¹ u(n − 1) - - Determine the followings. i) iv) v) 24 — ²4 (3)¹u(n − 2) + (2)¹–4u(n-3) - 36 The Transfer Function of the system, H(z). ROC of the Transfer Function, H(z). Zero-pole location of the system. System stability. Frequency response of the system, H(w). Verify iii), iv) and v) using MATLAB.
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