12. Six components, labeled A, B, C, D, E, and F, are connected as shown in the circuit diagram given in Figure 1. Some voltages and currents are defined in the equations below. The currents in this circuit are made up of the flow of electrons. a. Find the direction that the electrons are moving through component D at t= 1[ms]. Your answer should be either left to right, or right to left. Explain how you got your answer. b. Find the power delivered by component C at t = 2[ms]. c. Find the energy absorbed by component B during the time period from t= 1[ms] to t = 4[ms]. d. Find the energy delivered by component B during the third [(millisecond), counting [milliseconds] starting at t = 2[ms].

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Publisher:Robert L. Boylestad
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12. Six components, labeled A, B, C, D, E, and F, are connected as shown in the circuit diagram given in
Figure 1. Some voltages and currents are defined in the equations below. The currents in this
circuit are made up of the flow of electrons.
a. Find the direction that the electrons are moving through component D at t = 1[ms]. Your
answer should be either left to right, or right to left. Explain how you got your answer.
b. Find the power delivered by component C at t = 2[ms].
c. Find the energy absorbed by component B during the time period from
t = 1[ms] to t = 4[ms].
d. Find the energy delivered by component B during the third [millisecond], counting
[milliseconds] starting at t = 2[ms].
[kV
v3 (1) = 3.5|
+53[V]
A
[kV
(t) = 4.6
t- 6.4[V]
E
iz (t) =-5.7
|kA]
-7.
B
kA
i, (t)= -6.8
+8.6[A]
F
vg
S
ig
D
Figure 1
Transcribed Image Text:12. Six components, labeled A, B, C, D, E, and F, are connected as shown in the circuit diagram given in Figure 1. Some voltages and currents are defined in the equations below. The currents in this circuit are made up of the flow of electrons. a. Find the direction that the electrons are moving through component D at t = 1[ms]. Your answer should be either left to right, or right to left. Explain how you got your answer. b. Find the power delivered by component C at t = 2[ms]. c. Find the energy absorbed by component B during the time period from t = 1[ms] to t = 4[ms]. d. Find the energy delivered by component B during the third [millisecond], counting [milliseconds] starting at t = 2[ms]. [kV v3 (1) = 3.5| +53[V] A [kV (t) = 4.6 t- 6.4[V] E iz (t) =-5.7 |kA] -7. B kA i, (t)= -6.8 +8.6[A] F vg S ig D Figure 1
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