Q.2 The switch in Figure Q.2 has been in position 'A’ for a long time. At t = 0 s, the switch moves to UTM position 'B'. (а) Find current, OA UTM Determine the initial energy stored at the 20 mH inductor. UTM UTM UTM & UTM TM & Find the expression for iL(t) for t>0 s. (c) 5 UT UTM UTM UTM & UTM 5 UTM 5 UTM UTM UTM 5 UTM 10 mH UTM 5 UTM At=0s 10 Ωξ UTMAUTM/ 5 V 10 2 UTM SM 5 UTM 20 mH

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q.2
The switch in Figure Q.2 has been in position 'A’ for a long time. At t = (
5 UTM
position 'B'.
Determine the initial energy
UTM 6) UTM
ITM
(c) Find the expression for iL(t) for t> 0 s.
at the 20 mH inductor.
3 UT
TM &UTM ord.
5 UTM O UTM
UTM & UTM 5 UTM
UTM
UTM UTM UTM
UTM UTM
At=0s
10 Ω
TUTAUTM/
5 V
10 Ω
UTM E
CM UTM
20 mH
Figure Q.2
Transcribed Image Text:Q.2 The switch in Figure Q.2 has been in position 'A’ for a long time. At t = ( 5 UTM position 'B'. Determine the initial energy UTM 6) UTM ITM (c) Find the expression for iL(t) for t> 0 s. at the 20 mH inductor. 3 UT TM &UTM ord. 5 UTM O UTM UTM & UTM 5 UTM UTM UTM UTM UTM UTM UTM At=0s 10 Ω TUTAUTM/ 5 V 10 Ω UTM E CM UTM 20 mH Figure Q.2
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