In the circuit shown above, the switch moves to position 2 at t=0. Write the numerical expression for v(t) when R₂=3,551N and Is=1mA. Use that equation to calculate the value of v (0.2) (or in other words plug in t=0.2sec into the v equation) Calculate v (0.2)= V (write answer to the 4th decimal place or X.XXXX)

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter19: Capacitors
Section: Chapter Questions
Problem 1PP: Fill in all the missing values. Refer to the formulas that follow. Resistance Capacitance Time...
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Is t
●
20
t = 0
V
50 μF
R₂
3 ΚΩ
In the circuit shown above, the switch moves to position 2 at t=0.
Write the numerical expression for v(t) when R₂=3,551 and Is=1mA. Use that
equation to calculate the value of v (0.2) (or in other words plug in t=0.2sec into the v
equation)
Calculate v (0.2)=
V (write answer to the 4th decimal place or X.XXXX)
Transcribed Image Text:Is t ● 20 t = 0 V 50 μF R₂ 3 ΚΩ In the circuit shown above, the switch moves to position 2 at t=0. Write the numerical expression for v(t) when R₂=3,551 and Is=1mA. Use that equation to calculate the value of v (0.2) (or in other words plug in t=0.2sec into the v equation) Calculate v (0.2)= V (write answer to the 4th decimal place or X.XXXX)
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