R2 R1 ww ww I2 R3 bat ww +

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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R1=32 ohms, R2=21 ohms, R3=74 ohms, R4=87 ohms, C=46 microF,

t open= 640 microseconds, batttery is 20 V

R1
ww
R2
ww
12
+
R3
Vbat
C
R4
ww
Transcribed Image Text:R1 ww R2 ww 12 + R3 Vbat C R4 ww
RC Circuit: Dis-Charging
We now continue the problem when the switch has been closed for a very long time, and the capacitor is now fully
charged. At time t =
0, the switch is re-opened. Begin the problem by re-drawing the circuit for t → o.
T =
ms
4. Determine the time constant, t, of the discharging circuit in milliseconds [ms].
5. Determine Q(topen), the charge on the capacitor at the time topen us (in
microseconds) after the switch was re-opened, in microcoulombs.
e(topen) =
6. Determine I2
switch has been opened) in milliamperes [mA].
A positive value for the current is defined to be in the direction of the arrow shown
the maximum current that flows through resistor R2 (after the
max
12, max
mA
Transcribed Image Text:RC Circuit: Dis-Charging We now continue the problem when the switch has been closed for a very long time, and the capacitor is now fully charged. At time t = 0, the switch is re-opened. Begin the problem by re-drawing the circuit for t → o. T = ms 4. Determine the time constant, t, of the discharging circuit in milliseconds [ms]. 5. Determine Q(topen), the charge on the capacitor at the time topen us (in microseconds) after the switch was re-opened, in microcoulombs. e(topen) = 6. Determine I2 switch has been opened) in milliamperes [mA]. A positive value for the current is defined to be in the direction of the arrow shown the maximum current that flows through resistor R2 (after the max 12, max mA
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