= Consider the circuit below for all questions in this HW. Let Is C = 1μF, and vc(0¯) = 3V. The switch changes position at t = 0. Is IS (₁) Find: R i t = 0 + UC - 1mA, R = 1.2KN, a) circuit's time constant for t>0? express in ms. b) value of Vc(infinity) and V(c) at t = 0.0013 c) How much time will have to elapse after the switching event for V(c) to get to within 1% of its final value? Express your answer in terms of the number of time constants. Round up your answer to the nearest integer. n

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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=
Consider the circuit below for all questions in this HW. Let Is
C = 1μF, and vc(0¯) = 3V. The switch changes position at t = 0.
Is (1
Find:
R
i
t = 0
+
UC
-
a) circuit's time constant for t>0? express in ms.
b) value of Vc(infinity) and V(c) at t = 0.0013
c) How much time will have to elapse after the switching event for V(c) to get to within 1%
of its final value? Express your answer in terms of the number of time constants. Round
1mA, R = 1.2KN,
up your answer to the nearest integer.
d) What should be the new value for the capacitance such that the voltage vc reaches its
final value in half the original time? Express your answer in uF.
Transcribed Image Text:= Consider the circuit below for all questions in this HW. Let Is C = 1μF, and vc(0¯) = 3V. The switch changes position at t = 0. Is (1 Find: R i t = 0 + UC - a) circuit's time constant for t>0? express in ms. b) value of Vc(infinity) and V(c) at t = 0.0013 c) How much time will have to elapse after the switching event for V(c) to get to within 1% of its final value? Express your answer in terms of the number of time constants. Round 1mA, R = 1.2KN, up your answer to the nearest integer. d) What should be the new value for the capacitance such that the voltage vc reaches its final value in half the original time? Express your answer in uF.
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