Part A The operational amplifier in the circuit in (Figure 1) is ideal. Derive the numerical expression of the transfer function H (s) = Vo/Vg for the circuit. Express your answer in terms of s, where s is in radians per second. Figure 1 of 1 a ΑΣφ ve . ? 200 nF HE H(s) = 5 kn Submit Request Answer 1 kn 200 nF Vcc -Vcc Part B Complete previous part(s) Part C Complete previous part(s) Dext D Complete

Introductory Circuit Analysis (13th Edition)
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• Part A
The operational amplifier in the circuit in (Figure 1) is ideal.
Derive the numerical expression of the transfer function H (s) = Vo/Vg for the circuit.
Express your answer in terms of s, where s is in radians per second.
Figure
1 of 1
VO| A£¢ | !f_vec
?
200 nF
HE
H(s) =
5 kN
Submit
Request Answer
1 kn
200 nF
Vcc
-Vcc
Part B Complete previous part(s)
Part C Complete previous part(s)
Dart D Complote provious partic)
Transcribed Image Text:• Part A The operational amplifier in the circuit in (Figure 1) is ideal. Derive the numerical expression of the transfer function H (s) = Vo/Vg for the circuit. Express your answer in terms of s, where s is in radians per second. Figure 1 of 1 VO| A£¢ | !f_vec ? 200 nF HE H(s) = 5 kN Submit Request Answer 1 kn 200 nF Vcc -Vcc Part B Complete previous part(s) Part C Complete previous part(s) Dart D Complote provious partic)
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