Question a. What is the initial voltage, Ve, in the сарacitor? b. What is the equivalent resistance seen by the capacitor at t> 0? What is the time constant, t. d. Write the expression for the capacitor voltage, vt), for t>= 0. e. Write the expression for the current through the 3.6 ka resistor, ilt), for t>= 0'. Write the expression for the power dissipated f. in the 3.6 ka resistor. g. Find the total energy dissipated in the 3.6 kn resistor

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
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2.4 k2
40 mA (2.7 kn
0.5 µF
2 kn3
3 kn
$3.6 k2
Figure 4: Figure for Question 4
, Consider Figure 3.
Question
a. What is the initial voltage, Va, in the
capacitor?
b. What is the equivalent resistance seen by the
capacitor at t>= 0?
C. What is the time constant, t.
d. Write the expression for the capacitor
voltage, v/t), for t >= 0.
e. Write the expression for the current through
the 3.6 ka resistor, ilt), for t>= 0'.
f. Write the expression for the power dissipated
in the 3.6 ka resistor.
g. Find the total energy dissipated in the 3.6 kn
resistor.
Transcribed Image Text:2.4 k2 40 mA (2.7 kn 0.5 µF 2 kn3 3 kn $3.6 k2 Figure 4: Figure for Question 4 , Consider Figure 3. Question a. What is the initial voltage, Va, in the capacitor? b. What is the equivalent resistance seen by the capacitor at t>= 0? C. What is the time constant, t. d. Write the expression for the capacitor voltage, v/t), for t >= 0. e. Write the expression for the current through the 3.6 ka resistor, ilt), for t>= 0'. f. Write the expression for the power dissipated in the 3.6 ka resistor. g. Find the total energy dissipated in the 3.6 kn resistor.
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