2. The equation of electric charge on the capacitor is related to the equation of current strength with the equation i=dq/dt. So, the equation forms a second-order differential d²q dq 1 +R+ dt c9 = E(t) dt equation. Determine the special charge equation with the equation q(t) on the capacitor in the RLC circuit when the value of L= 0.25 Henry,R=10 ohms,C=0.001 Farads, E(t)=0,q(0)=q0 coulombs(C) and i(0)=0 Ampere.
2. The equation of electric charge on the capacitor is related to the equation of current strength with the equation i=dq/dt. So, the equation forms a second-order differential d²q dq 1 +R+ dt c9 = E(t) dt equation. Determine the special charge equation with the equation q(t) on the capacitor in the RLC circuit when the value of L= 0.25 Henry,R=10 ohms,C=0.001 Farads, E(t)=0,q(0)=q0 coulombs(C) and i(0)=0 Ampere.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Transcribed Image Text:2. The equation of electric charge on the capacitor is related to the equation of current
strength with the equation i=dq/dt. So, the equation forms a second-order differential
d²q
dq
1
L
dt
+ R,+79 = E(t)
dt
equation. Determine the special charge equation with the equation q(t) on the capacitor in
the RLC circuit when the value of L= 0.25 Henry,R=10 ohms,C=0.001 Farads,E(t)=0,q(0)=q0
coulombs(C) and i(0)=0 Ampere.
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