Consider a filter with a constant term of 0.01, a zero at 2 rad/s, a pole at 10 rad/s, and a pole at 100 rad/s. What is the corresponding transfer function? a. O b. O d. 0.1 s 0.002 8² 110s + 1000 0.01 s - 0.02 s²110s +1000 s - 0.2 $2 110s + 1000 s - 0.002 s² 110s + 1000
Consider a filter with a constant term of 0.01, a zero at 2 rad/s, a pole at 10 rad/s, and a pole at 100 rad/s. What is the corresponding transfer function? a. O b. O d. 0.1 s 0.002 8² 110s + 1000 0.01 s - 0.02 s²110s +1000 s - 0.2 $2 110s + 1000 s - 0.002 s² 110s + 1000
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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- Fourier analysis of discrete and continuous time signals and systems
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![Consider a filter with a constant term of 0.01, a zero at 2 rad/s, a pole at
10 rad/s, and a pole at 100 rad/s. What is the corresponding transfer
function?
a.
O b.
O d.
0.1 s 0.002
8² 110s + 1000
0.01 s - 0.02
s²110s +1000
s - 0.2
$2
110s + 1000
s - 0.002
s² 110s + 1000](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7c199501-ed17-492e-8d59-cdcdd63d934c%2F4ba11772-683f-440c-9d63-84d3f2aa956d%2Frcbvpul_processed.png&w=3840&q=75)
Transcribed Image Text:Consider a filter with a constant term of 0.01, a zero at 2 rad/s, a pole at
10 rad/s, and a pole at 100 rad/s. What is the corresponding transfer
function?
a.
O b.
O d.
0.1 s 0.002
8² 110s + 1000
0.01 s - 0.02
s²110s +1000
s - 0.2
$2
110s + 1000
s - 0.002
s² 110s + 1000
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