Ia = 2.5mA, Ib = 5mA, Vc = 18V, Vd = 15V. C1 = 12µF, C2 = 18µF, C3 = 10µF, C4 = 2µF. L1 = 12mH, L2 = 18mH, L3 = 10mH. R1 = 12kΩ, R2 = 20kΩ, R3 = 30kΩ, R4 = 8kΩ, R5 = 5kΩ, R6 = 12kΩ. The circuit is in dc steady state. Determine V2. Enter your answer in V rounded to two decimal places. If the sign is negative, please be sure to include the negative sign.
Ia = 2.5mA, Ib = 5mA, Vc = 18V, Vd = 15V. C1 = 12µF, C2 = 18µF, C3 = 10µF, C4 = 2µF. L1 = 12mH, L2 = 18mH, L3 = 10mH. R1 = 12kΩ, R2 = 20kΩ, R3 = 30kΩ, R4 = 8kΩ, R5 = 5kΩ, R6 = 12kΩ. The circuit is in dc steady state. Determine V2. Enter your answer in V rounded to two decimal places. If the sign is negative, please be sure to include the negative sign.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Ia = 2.5mA, Ib = 5mA, Vc = 18V, Vd = 15V.
C1 = 12µF, C2 = 18µF, C3 = 10µF, C4 = 2µF.
L1 = 12mH, L2 = 18mH, L3 = 10mH.
R1 = 12kΩ, R2 = 20kΩ, R3 = 30kΩ, R4 = 8kΩ, R5 = 5kΩ, R6 = 12kΩ.
The circuit is in dc steady state.
Determine V2. Enter your answer in V rounded to two decimal places. If the sign is negative, please be sure to include the negative sign.
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