1. For the circuit shown, a) Find the transfer function analytically and derive formulas for the magnitude and phase as
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1. For the circuit shown, a) Find the transfer function analytically and derive formulas for the magnitude and phase as
a) Find the transfer function analytically and derive
formulas
for the magnitude and phase as functions of frequency.
b) Validate the TF of part-a using Simscape and the “linmod”
command.
c) Plot the magnitude and phase versus frequency, and
determine the cutoff frequency.
d) Test the circuit in Simscape with sinusoidal inputs to
determine what type of a filter it may represent.
e) Find V0 for a DC input voltage of 2 V.
f) Validate part-b using Simscape.
Please make all plots in matlab
1. For the circuit shown, a) Find the transfer function analytically and derive formulas for the magnitude and phase as functions of frequency. b) Validate the TF of part-a using Simscape and the “linmod” command. c) Plot the magnitude and phase versus frequency, and determine the cutoff frequency. d) Test the circuit in Simscape with sinusoidal inputs to determine what type of a filter it may represent. e) Find Vo for a DC input voltage of 2 V. f) Validate part-b using Simscape. a
5 ΚΩ www 2 ΚΩ 20 uF 10uF HE - Vi + Vo