For the network shown in Figure (Q5), the switch (1) has been closed and switch (2) has been opened for a long time. At t=0, switch (1) is open then 20msec later switch (2) is closed. Using the Frequency domain analysis method to determine an expression for iz(t) in the following intervals: 1. Ostso.02sec. II. 120.02sec. t=0 60KΩ 40KN 25 ka3 32H 100 Κ 10 mA

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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For the network shown in Figure (Q5), the switch (1) has been closed and switch (2) has been
opened for a long time. At t=0, switch (1) is open then 20msec later switch (2) is closed. Using the
Frequency domain analysis method to determine an expression for iz(t) in the following intervals:
I. Ostso.02sec.
II. 120.02sec.
t=0
60KΩ
40KN
2Η 100 ΚΩξ
10 mA
25 ka
Transcribed Image Text:For the network shown in Figure (Q5), the switch (1) has been closed and switch (2) has been opened for a long time. At t=0, switch (1) is open then 20msec later switch (2) is closed. Using the Frequency domain analysis method to determine an expression for iz(t) in the following intervals: I. Ostso.02sec. II. 120.02sec. t=0 60KΩ 40KN 2Η 100 ΚΩξ 10 mA 25 ka
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