5. For the following circuit. V, = 40V, R1 = 18N, R2 = 182, R3 = 182, R4 = 9N, R; = 9N, R6 = 3N, L = 5mH and C = 10µF. %3D Switch R6 ww R4 R2 www a + R1 R3 R5 L Vs wwww www

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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1.111 is incorrect

5. For the following circuit. V, = 40V, Rị = 182, R, = 182, R3 = 18N, R4 = 92, R5 = 9N, R6 = 3N, L = 5mH
and C = 10µF.
Switch
R2
www
R4
www
R6
ww
b
a
R
R3
R5
Vs
L
C
If the switch is at position a for a long time, calculate the R-L time constant for the inductor.
Please enter your values in MILLISECOND in the box below without units. Also, please wound of the decimal to
three places if necessary.
0.278
www
wwww
wwww
Transcribed Image Text:5. For the following circuit. V, = 40V, Rị = 182, R, = 182, R3 = 18N, R4 = 92, R5 = 9N, R6 = 3N, L = 5mH and C = 10µF. Switch R2 www R4 www R6 ww b a R R3 R5 Vs L C If the switch is at position a for a long time, calculate the R-L time constant for the inductor. Please enter your values in MILLISECOND in the box below without units. Also, please wound of the decimal to three places if necessary. 0.278 www wwww wwww
6. For the circuit in Problem 5, calculate the current flowing through the inductor L for DC steady state.
Put your values in Amps in the box below without units. Also, round off the decimal to three decimal places if
needed.
1.111
Transcribed Image Text:6. For the circuit in Problem 5, calculate the current flowing through the inductor L for DC steady state. Put your values in Amps in the box below without units. Also, round off the decimal to three decimal places if needed. 1.111
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