Power and Voltage for an Inductor The current in a 5-mH inductor of Fig. 3-3a is the periodic triangular wave shown in Fig. 3-3b. Determine the voltage, instantaneous power, and average power for the inductor. 4 A 1 ms 2 ms 3 ms 4 ms (b) t(t) 5 mH v(t) v(1) 20 V (a) -20 vE (c) p(1) 80 w E Figure 2.3 (a) Circuit for example 2-2; (b) inductor current; (c) inductor voltage; (d) inductor instantaneous power. -80 w E (2)

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Power and Voltage for an Inductor
The current in a 5-mH inductor of Fig. 3-3a is the periodic triangular wave shown
in Fig. 3-3b. Determine the voltage, instantaneous power, and average power for
the inductor.
2(1)
4 A
1 ms
2 ms
3 ms
4 ms
(b)
5 mH
v(t)
20 V
(a)
-20 V
(c)
p(1)
80 W
Figure 2.3
(a) Circuit for example 2-2;
(b) inductor current;
(c) inductor voltage;
(d) inductor instantaneous power.
-80 W
Transcribed Image Text:Power and Voltage for an Inductor The current in a 5-mH inductor of Fig. 3-3a is the periodic triangular wave shown in Fig. 3-3b. Determine the voltage, instantaneous power, and average power for the inductor. 2(1) 4 A 1 ms 2 ms 3 ms 4 ms (b) 5 mH v(t) 20 V (a) -20 V (c) p(1) 80 W Figure 2.3 (a) Circuit for example 2-2; (b) inductor current; (c) inductor voltage; (d) inductor instantaneous power. -80 W
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