33. The system of differential equations for the currents i(t) and i2(t) in the electrical network shown in Figure 8.3.2 is R2/L,\ (-(R, + R2)/L2 R2/L, (*) d + -R:/L / \iz) dt Use variation of parameters to solve the system R2 = 3 N, E(t) = 100 sin t V, i¡(0) = 0, and i2(0) = 0. if R = 8 N, L = 1 h, L2 = 1 h, %3D %3D %3D R1 iz L R2 E

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Hi, i have this question, the problem is that i need to use laplace to solve it

33. The system of differential equations for the currents i(t)
and i2(t) in the electrical network shown in Figure 8.3.2 is
(R, + R2)/L2
R2/L,
R2/Li
-R2/L, )
d
-(R|
+
dt \i,
Use variation of parameters to solve the system
R = 8 N,
E(t) = 100 sin t V, i¡(0) = 0, and iz(0) = 0.
if
R2 = 3 N,
L = 1 h,
L2 = 1 h,
%3D
%3D
iz
R1
i,
E
R2
L2
FIGURE 8.3.2 Network in Problem 33
Transcribed Image Text:33. The system of differential equations for the currents i(t) and i2(t) in the electrical network shown in Figure 8.3.2 is (R, + R2)/L2 R2/L, R2/Li -R2/L, ) d -(R| + dt \i, Use variation of parameters to solve the system R = 8 N, E(t) = 100 sin t V, i¡(0) = 0, and iz(0) = 0. if R2 = 3 N, L = 1 h, L2 = 1 h, %3D %3D iz R1 i, E R2 L2 FIGURE 8.3.2 Network in Problem 33
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