Given the following differential equation d²q + Rdq dt² (a) Define the type of series circuit. L dq 1 + q=E(t) dt C (b) With L=1 h, R= 20 , C = 0.005 f, E(t)=150 V, t>0, q(0) = 0 dan i(0) = 0, use Laplace transform to find q(t). (c) Using the result in part (b), find the current i(t)?
Given the following differential equation d²q + Rdq dt² (a) Define the type of series circuit. L dq 1 + q=E(t) dt C (b) With L=1 h, R= 20 , C = 0.005 f, E(t)=150 V, t>0, q(0) = 0 dan i(0) = 0, use Laplace transform to find q(t). (c) Using the result in part (b), find the current i(t)?
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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![Given the following differential equation
+R. + ;q=E(t)
dq 1
C
(a) Define the type of series circuit.
Ld²q
dt² dt
(b) With L=1 h, R=202, C = 0.005 f, E(t)=150 V, t>0, q(0) = 0 dan i(0) = 0,
use Laplace transform to find q(t).
(c) Using the result in part (b), find the current i(t)?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe010ddd2-60d6-4bc0-9575-404e6416d721%2F8c80ac3c-29ef-48aa-a024-b458f115f798%2Fcs4b84_processed.png&w=3840&q=75)
Transcribed Image Text:Given the following differential equation
+R. + ;q=E(t)
dq 1
C
(a) Define the type of series circuit.
Ld²q
dt² dt
(b) With L=1 h, R=202, C = 0.005 f, E(t)=150 V, t>0, q(0) = 0 dan i(0) = 0,
use Laplace transform to find q(t).
(c) Using the result in part (b), find the current i(t)?
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