5000 1000 0 160 nF 100 mH R = 500 N, R2 = 1000 N, L = 100 mH,C = 160 nF, i,(t) = 4 cos 5000t mA %3D %3D %3D i(t) = 4 cos 5000t mA Vg(t) Vc(t) iç(t) V(t) i,(t) VR, (t) VR,(t) %3D s2 + 10 s + 10 s + 625. 105 Ic(s) H(s) = find the mathematical expression of the current Ic(T) in the steady (continuous) state.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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5000
1000 N
160 nF
100 mH
= 500 N, R2
= 1000 N,
L = 100 mH,C = 160 nF, i, (t) = 4 cos 5000t mA
%3D
II
%3D
i,(t) = 4 cos 5000t mA
Vg(t)
Vc(t)
ic(t)
V(t)
i, (t)
VR, (t)
Ic(s)
s2 + 10 s
H(s) =
1,(s)
s2 + 104 s + 625. 105
find the mathematical expression of the
current Ic(T) in the steady (continuous)
state.
R2
Transcribed Image Text:5000 1000 N 160 nF 100 mH = 500 N, R2 = 1000 N, L = 100 mH,C = 160 nF, i, (t) = 4 cos 5000t mA %3D II %3D i,(t) = 4 cos 5000t mA Vg(t) Vc(t) ic(t) V(t) i, (t) VR, (t) Ic(s) s2 + 10 s H(s) = 1,(s) s2 + 104 s + 625. 105 find the mathematical expression of the current Ic(T) in the steady (continuous) state. R2
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