b) Recall that the differential equation for the instantaneous charge q(t) on the capacitor in an LRC-series circuit is (d²q` L +R+79 = E(t). dq 1 dt2 Use Laplace transform to Solve for q(t) and i(t), if L = 1h, R E(t) = 150 V, t > 0, q(0) = 0, and i(0) = 0. = 20 N, C = 0.005 f,
b) Recall that the differential equation for the instantaneous charge q(t) on the capacitor in an LRC-series circuit is (d²q` L +R+79 = E(t). dq 1 dt2 Use Laplace transform to Solve for q(t) and i(t), if L = 1h, R E(t) = 150 V, t > 0, q(0) = 0, and i(0) = 0. = 20 N, C = 0.005 f,
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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![b) Recall that the differential equation for the instantaneous charge q(t) on the
capacitor in an LRC-series circuit is
(d²q`
L
+R+79 = E(t).
dq 1
dt2
Use Laplace transform to Solve for q(t) and i(t), if L = 1h, R
E(t) = 150 V, t > 0, q(0) = 0, and i(0) = 0.
= 20 N, C = 0.005 f,](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F121eb62c-617d-46c5-b533-d161daab80b2%2Fef0777cc-99f8-45aa-83c2-6d03304c3243%2F0g20lbvw_processed.png&w=3840&q=75)
Transcribed Image Text:b) Recall that the differential equation for the instantaneous charge q(t) on the
capacitor in an LRC-series circuit is
(d²q`
L
+R+79 = E(t).
dq 1
dt2
Use Laplace transform to Solve for q(t) and i(t), if L = 1h, R
E(t) = 150 V, t > 0, q(0) = 0, and i(0) = 0.
= 20 N, C = 0.005 f,
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