Assume the capacitor to be fully discharged before the switch closes to position 1 at t=0: D. Determine equations for Ic(t) and Vc(t) in position 1. After a long time (i.e. >5 T, capacitor fully charged) the switch is moved to position 2: E. Determine equations for Ic(t) and Vc(t) in position 2. F. Provide a sketch of Ic(t) and Vc(t) for both cycles. Please label accordingly.

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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48 V
+
#F
68 ΚΩ
www Ic
+
20
www.
0 0000 1
22 ΚΩ
= 10 nF
12 V
Assume the capacitor to be fully discharged before the switch closes to position 1 at t=0:
D. Determine equations for Ic(t) and Vc(t) in position 1.
After a long time (i.e. >5 T, capacitor fully charged) the switch is moved to position 2:
E. Determine equations for Ic(t) and Vc(t) in position 2.
F. Provide a sketch of Ic(t) and Vc(t) for both cycles. Please label accordingly.
F
Vc
Transcribed Image Text:48 V + #F 68 ΚΩ www Ic + 20 www. 0 0000 1 22 ΚΩ = 10 nF 12 V Assume the capacitor to be fully discharged before the switch closes to position 1 at t=0: D. Determine equations for Ic(t) and Vc(t) in position 1. After a long time (i.e. >5 T, capacitor fully charged) the switch is moved to position 2: E. Determine equations for Ic(t) and Vc(t) in position 2. F. Provide a sketch of Ic(t) and Vc(t) for both cycles. Please label accordingly. F Vc
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