Consider the following circuit. In the circuit R1=20,L%31H, C=D0.25F, and R=2 R1 L. R V. Vo R K V. (s) V, (s) a) The transfer function H(s) is H (s) %3D %3D s2 + as + b I Determine K , a and b b) The poles are complex conjugates. What is the value of the real part of the poles and the imaginary part of the poles (enter the negative value)

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Consider the following circuit. In the circuit R1=20, L%31H, C=0.25F, and R=2
R1
V.
C
Vo
K
V. (s)
V, (s)
a) The transfer function H(s) is H (s)
s2 + as + b
Determine K
, a
and b
b) The poles are complex conjugates. What is the value of the real part of the poles
and the imaginary part of the poles (enter the negative value)
Transcribed Image Text:Consider the following circuit. In the circuit R1=20, L%31H, C=0.25F, and R=2 R1 V. C Vo K V. (s) V, (s) a) The transfer function H(s) is H (s) s2 + as + b Determine K , a and b b) The poles are complex conjugates. What is the value of the real part of the poles and the imaginary part of the poles (enter the negative value)
a) The transfer function H(s) is H (s) =
V. (s)
K
V, (s)
s2 + as + b
Determine K
a
and b
b) The poles are complex conjugates. What is the value of the real part of the poles
and the imaginary part of the poles (enter the negative value)
c) If the input is 4u(t) V. what is the steady-state value of Vo
d) If the input is 4cos(2t+30°) V, determine the magnitude
and phase
angle
of the steady-state response.
Transcribed Image Text:a) The transfer function H(s) is H (s) = V. (s) K V, (s) s2 + as + b Determine K a and b b) The poles are complex conjugates. What is the value of the real part of the poles and the imaginary part of the poles (enter the negative value) c) If the input is 4u(t) V. what is the steady-state value of Vo d) If the input is 4cos(2t+30°) V, determine the magnitude and phase angle of the steady-state response.
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