5 kN 20 k2 i(1) + VR - t = 0 5 µF v2 100 V 20 μ

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter9: Measuring Instruments
Section: Chapter Questions
Problem 5PP: 5. A digital voltmeter indicates a voltage of 2.5 V when 10 of current flow through a resistor....
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The switch in Fig. 8.73 is moved from A to B at t = 0 after being at A for a

long time. This places the two capacitors in series, thus allowing equal and

opposite de voltages to be trapped on the capacitors

 

(d) Find vr(t), t > 0. (e) Find i(t). (f) Find vi(t) and

v2(t) from i(t) and the initial values. (g) Show that the stored energy at i = 0

plus the total energy dissipated in the 20 kS2 resistor is equal to the energy

stored in the capacitors at t = 0

5 kN
20 k2
i(1)
+ VR
-
t = 0
5 µF
v2
100 V
20 μ
Transcribed Image Text:5 kN 20 k2 i(1) + VR - t = 0 5 µF v2 100 V 20 μ
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