* From the figure, the voltage Vc for t> 0 is equal to Vc (t) = 10 - 6e¯ V ○ Vc (t) = 10 (1 - e¯) v V Vc (t) = 10 10e-211 V 10e V O Vc (t) = None of the given option Vs 10V R₁ 322 + Vc Ic 7F R₂ 2.02 Isw t=0 Sw ww

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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From the figure, the voltage Vc for t> 0 is equal to
Vc (t) = 10 - 6e¯ V
○ Vc (t) = 10 (1 - e¯) v
V
Vc (t) = 10 10e-211 V
10e V
O Vc (t) =
None of the given option
Vs
10V
R₁
322
+
Vc
Ic
7F
R₂
2.02
Isw
t=0
Sw
ww
Transcribed Image Text:* From the figure, the voltage Vc for t> 0 is equal to Vc (t) = 10 - 6e¯ V ○ Vc (t) = 10 (1 - e¯) v V Vc (t) = 10 10e-211 V 10e V O Vc (t) = None of the given option Vs 10V R₁ 322 + Vc Ic 7F R₂ 2.02 Isw t=0 Sw ww
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