9. Consider the op-amp circuit shown in the figure. Using impedance methods, find E.(s) E(s) the transfer function C R2 R1 eo ei R3

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9. Consider the op-amp circuit shown in the figure. Using impedance methods, find
E.(s)
the transfer function
E;(s)
C
R2
R1
eo
R3
Electric Circuits
252
The values of the system constants are provided.
C = 20 µF
R1 = 100 S2
R2 = 100 2
R3 = 100 2
Using a script file in MATLAB" and the command step, find and plot the unit step
response e.(t). Apply the final value theorem and initial value theorem to the
solution in the Laplace domain and show that the results agree with your plot.
Transcribed Image Text:9. Consider the op-amp circuit shown in the figure. Using impedance methods, find E.(s) the transfer function E;(s) C R2 R1 eo R3 Electric Circuits 252 The values of the system constants are provided. C = 20 µF R1 = 100 S2 R2 = 100 2 R3 = 100 2 Using a script file in MATLAB" and the command step, find and plot the unit step response e.(t). Apply the final value theorem and initial value theorem to the solution in the Laplace domain and show that the results agree with your plot.
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