12. 10x = 6.3x 10 the figure shows a simple RC circuit consisting of a 100-V battery in series with a 10-μF capacitor and a resistor. Initially, the switch S is open and the capacitor is uncharged. Two seconds after the switch is closed, the voltage across the resistor is 37 V. How much charge is on the capacitor 2.0 s after the switch is closed? Ve=vo (1-e 6.3 = 100 (1-c=2²²) PRC) a. a. 1.1 x 10-³ C b. 2.9 x 10-3 C 3.7 x 10-4 C d. 6.3 x 10-4 C C. e. 5.2 x 10-4 Che R -2x105 b. C. 63 = 1-e -2x105 R -2x105 R =In.37 =-.994 100 V S Causes it to rotate about an axis prallel to the Z-axis. is zero Causes it to rotate about an axis prallel to the x-axis. d. none of these. e Causes it to rotate about an axis prallel to the y-axis. R=2011 56.1908 The figure shows a rectangular coil carrying a steady current (1). There is a separate, external magnetic field pointing toward the right and parallel to the x-axis. Notice that thet he z-axis is out of the page. The torque on the coil: F=0 374 R ww O 10.0 μC 63V 13 T-NIA
12. 10x = 6.3x 10 the figure shows a simple RC circuit consisting of a 100-V battery in series with a 10-μF capacitor and a resistor. Initially, the switch S is open and the capacitor is uncharged. Two seconds after the switch is closed, the voltage across the resistor is 37 V. How much charge is on the capacitor 2.0 s after the switch is closed? Ve=vo (1-e 6.3 = 100 (1-c=2²²) PRC) a. a. 1.1 x 10-³ C b. 2.9 x 10-3 C 3.7 x 10-4 C d. 6.3 x 10-4 C C. e. 5.2 x 10-4 Che R -2x105 b. C. 63 = 1-e -2x105 R -2x105 R =In.37 =-.994 100 V S Causes it to rotate about an axis prallel to the Z-axis. is zero Causes it to rotate about an axis prallel to the x-axis. d. none of these. e Causes it to rotate about an axis prallel to the y-axis. R=2011 56.1908 The figure shows a rectangular coil carrying a steady current (1). There is a separate, external magnetic field pointing toward the right and parallel to the x-axis. Notice that thet he z-axis is out of the page. The torque on the coil: F=0 374 R ww O 10.0 μC 63V 13 T-NIA
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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Question

Transcribed Image Text:(2= 6.3x10
12. the figure shows a simple RC circuit consisting of a 100-V battery in series
with a 10-μF capacitor and a resistor. Initially, the switch S is open and the
capacitor is uncharged. Two seconds after the switch is closed, the voltage
across the resistor is 37 V. How much charge is on the capacitor 2.0 s after
Ve=V₂ (1-e / RC)
6-3 = 1010 (1-c = ²2²)
the switch is closed?
-2x105
a.
1.1 x 10-³ C
b. 2.9 x 10-3 C
C.
3.7 x 10-4 C
d. 6.3 x 10-4C
e.
a.
63 = 1- e
b.
b.
C.
1-e-R
5.2 x 10-4 Chex100 = 1n 37
R
-20
-2x105
R
=-.994
100 V
Causes it to rotate about an axis prallel to the
Z-axis.
is zero
Causes it to rotate about an axis prallel to the
x-axis.
d.
none of these.
e Causes it to rotate about an axis prallel to the
y-axis.
374
R
R=2011 56.1908
The figure shows a rectangular coil carrying a steady current (1). There is
a separate, external magnetic field pointing toward the right and parallel
to the x-axis. Notice that thet he z-axis is out of the page. The torque on
the coil:
www
T10,0 μC 63V
F=0
zx
B
T-NIA
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