The following difference equation shows the input-output relationship of a filter: y[n] = 0.5 · y[n – 1] + 0.5 · x[n] а) b) Is this an FIR or IIR filter? Please explain why. Is this a causal filter? Please explain why. ) Find its frequency response H(ejw) = lel®) x(ejw) c) using DTFT.
The following difference equation shows the input-output relationship of a filter: y[n] = 0.5 · y[n – 1] + 0.5 · x[n] а) b) Is this an FIR or IIR filter? Please explain why. Is this a causal filter? Please explain why. ) Find its frequency response H(ejw) = lel®) x(ejw) c) using DTFT.
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Question
![The following difference equation shows the input-output relationship
of a filter:
y[n] = 0.5 · y[n – 1] + 0.5 · x[n]
a)
b)
Is this an FIR or IIR filter? Please explain why.
Is this a causal filter? Please explain why.
Y(ejw)
) Find its frequency response H(ej@) =
x(ejw)
c)
using DTFT.
) Determine the magnitude response H(ej") of the filter.
) Sketch H(ejw)| for w =
d)
e)
0~m to determine the type of the filter. Is it a low-
pass or high-pass filter?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9cf16aff-f8a7-46d1-99fe-e02276a7ec1f%2F056a74d4-c215-45b9-99a2-a226cbde4629%2Fe7pwqy6_processed.png&w=3840&q=75)
Transcribed Image Text:The following difference equation shows the input-output relationship
of a filter:
y[n] = 0.5 · y[n – 1] + 0.5 · x[n]
a)
b)
Is this an FIR or IIR filter? Please explain why.
Is this a causal filter? Please explain why.
Y(ejw)
) Find its frequency response H(ej@) =
x(ejw)
c)
using DTFT.
) Determine the magnitude response H(ej") of the filter.
) Sketch H(ejw)| for w =
d)
e)
0~m to determine the type of the filter. Is it a low-
pass or high-pass filter?
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