The low frequency behavior of an amplifier is represented by the following Laplace transform: s+50). (+100 S+500) · (+6000) 5) H(s) = (3 The phase angle for increasing frequencies above 10 kilo radians/sec approaches the asymptotic value: -pi/2 radians pi radians zero radians pi/2 radians
The low frequency behavior of an amplifier is represented by the following Laplace transform: s+50). (+100 S+500) · (+6000) 5) H(s) = (3 The phase angle for increasing frequencies above 10 kilo radians/sec approaches the asymptotic value: -pi/2 radians pi radians zero radians pi/2 radians
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 low frequency behavior of an amplifier is represented by the following Laplace
transform:
H(s) = (3
8+50). (
s+100).
S+500) · (+6000)
5)
The phase angle for increasing frequencies above 10 kilo radians/sec approaches the
asymptotic value:
-pi/2 radians
pi radians
zero radians
pi/2 radians](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8b5d3f26-cda5-43e5-8223-bfa02258241c%2Fc53b9e80-aad2-4ee9-ab2e-fbe7c3cf88ec%2Figg3x0m_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The low frequency behavior of an amplifier is represented by the following Laplace
transform:
H(s) = (3
8+50). (
s+100).
S+500) · (+6000)
5)
The phase angle for increasing frequencies above 10 kilo radians/sec approaches the
asymptotic value:
-pi/2 radians
pi radians
zero radians
pi/2 radians
Expert Solution
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Step 1: We need to determine phase angle for increasing frequencies above 10kilo radians/sec
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