160 t = 0 4 V 0.5 H Vo 312.5 µF 3 s a) Ic(s) = A s2 + 200 s + 6400 Vs(t)=4 V Vc(t)=Va(t) Constant voltage source voltage across capacitor -0,1875 s- 6 b) Ic(s) = s2 + 200 s+6400 current through the capacitor V(t) Voltage from inductance Inductance current 0,25 s? + 56s+ 1600 c) Ic(s) = VR (t) ig(t) V(0) 3V Voltage across the resistor s(s2 + 200 s+ 6400) Current flowing through the resistor Capacitor voltage at time t-0 0,0625 s? + 50 s +1600 A s (s2 + 200 s+ 6400 ) d) Ic(s) = After the switch has been open long enough, it is closed at t= 0. f(t) stream What is the Laplace transform? s2 + 800 s +25600 e) Ic(s) = %3D s(s? + 200 s+ 6400)
160 t = 0 4 V 0.5 H Vo 312.5 µF 3 s a) Ic(s) = A s2 + 200 s + 6400 Vs(t)=4 V Vc(t)=Va(t) Constant voltage source voltage across capacitor -0,1875 s- 6 b) Ic(s) = s2 + 200 s+6400 current through the capacitor V(t) Voltage from inductance Inductance current 0,25 s? + 56s+ 1600 c) Ic(s) = VR (t) ig(t) V(0) 3V Voltage across the resistor s(s2 + 200 s+ 6400) Current flowing through the resistor Capacitor voltage at time t-0 0,0625 s? + 50 s +1600 A s (s2 + 200 s+ 6400 ) d) Ic(s) = After the switch has been open long enough, it is closed at t= 0. f(t) stream What is the Laplace transform? s2 + 800 s +25600 e) Ic(s) = %3D s(s? + 200 s+ 6400)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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