If the current source, is(t) = e−²tu(t), obtain i,(t) using Laplace Transform. the circuit. the output current, , determine the transfer function of [hint: 1. Convert the circuit into Laplace Transform circuit 2. Use either KVL, KCL, Voltage Divider, Current Divider or Ohm laws to calculate output current. 3. Calculate the transfer function, H(s) = [ (s)I 1,(s) 7. Question 2 i (f) www 1H io(t) 20 0.5 F ww
If the current source, is(t) = e−²tu(t), obtain i,(t) using Laplace Transform. the circuit. the output current, , determine the transfer function of [hint: 1. Convert the circuit into Laplace Transform circuit 2. Use either KVL, KCL, Voltage Divider, Current Divider or Ohm laws to calculate output current. 3. Calculate the transfer function, H(s) = [ (s)I 1,(s) 7. Question 2 i (f) www 1H io(t) 20 0.5 F ww
Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.6P: (a) Transform v(t)=75cos(377t15) to phasor form. Comment on whether =377 appears in your answer. (b)...
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Transcribed Image Text:If the
current
source,
is(t) = e−²tu(t),
obtain
i,(t) using Laplace Transform.
the circuit.
the output
current,
, determine the transfer function of
[hint: 1. Convert the circuit into Laplace Transform circuit 2. Use either KVL, KCL, Voltage
Divider, Current Divider or Ohm laws to calculate output current. 3. Calculate the transfer
function, H(s) = [
(s)I
1,(s)
7.
Question 2
i (f)
www
1H
io(t)
20
0.5 F
ww
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