(c) An RL circuit is shown in Figure Q.5(c). The switch is close at t = Os. Note that there is no initial energy stored in the circuit. 10 t = 0 R1 L 1H i (t) iz (t), Figure Q.5(c) (i) Sketch the Laplace equivalent eircuit att = 0s TEKNOLOGAL. on the calculation, discuss the inductor's behavior after the switch is closed (ii) Based on the circuit in (i), determine the currents i, (t) and (iii) Find the output voltage across the R2 resistor the switch is elosed. (iv) Calculate the initial and final values of the currents i, (t) and i,(t). Based for a long time. SIA O" all A(1)n00

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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(c) An RL circuit is shown in Figure Q.5(c). The switch is close at t = Os. Note that
there is no initial energy stored in the circuit.
10
t = 0
R1
L
1H
i (t)
iz (t),
Figure Q.5(c)
(i)
Sketch the Laplace equivalent eircuit att = 0s
TEKNOLOGAL.
on the calculation, discuss the inductor's behavior after the switch is closed
(ii) Based on the circuit in (i), determine the currents i, (t) and
(iii) Find the output voltage across the R2 resistor
the switch is elosed.
(iv) Calculate the initial and final values of the currents i, (t) and i,(t). Based
for a long time.
SIA O"
all
A(1)n00
Transcribed Image Text:(c) An RL circuit is shown in Figure Q.5(c). The switch is close at t = Os. Note that there is no initial energy stored in the circuit. 10 t = 0 R1 L 1H i (t) iz (t), Figure Q.5(c) (i) Sketch the Laplace equivalent eircuit att = 0s TEKNOLOGAL. on the calculation, discuss the inductor's behavior after the switch is closed (ii) Based on the circuit in (i), determine the currents i, (t) and (iii) Find the output voltage across the R2 resistor the switch is elosed. (iv) Calculate the initial and final values of the currents i, (t) and i,(t). Based for a long time. SIA O" all A(1)n00
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