Linear Differential Equation A simple electrical circuit shown in Figure 5.1 below is designed with the following ratings of components: resistance (R) is 12 N and the inductance (L) is 4 H. The circuit battery (E) has a constant voltage of 80 V and the circuit is designed with a switch that closes when t = 0. However, the flow of current in the circuit starts with I(0) = 0. switch Figure 5.1 Question 5 By applying linear differential equations, compute the: а. Current at any time t given as I(t) b. Current after 1 second С. Limiting value of the current

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Linear Differential Equation
A simple electrical circuit shown in Figure 5.1 below is designed with the following ratings of
components: resistance (R) is 12 N and the inductance (L) is 4 H. The circuit battery (E) has a constant
voltage of 80 V and the circuit is designed with a switch that closes when t = 0. However, the flow of
current in the circuit starts with I(0) = 0.
switch
Figure 5.1
Question 5
By applying linear differential equations, compute the:
а.
Current at any time t given as I(t)
b.
Current after 1 second
С.
Limiting value of the current
Transcribed Image Text:Linear Differential Equation A simple electrical circuit shown in Figure 5.1 below is designed with the following ratings of components: resistance (R) is 12 N and the inductance (L) is 4 H. The circuit battery (E) has a constant voltage of 80 V and the circuit is designed with a switch that closes when t = 0. However, the flow of current in the circuit starts with I(0) = 0. switch Figure 5.1 Question 5 By applying linear differential equations, compute the: а. Current at any time t given as I(t) b. Current after 1 second С. Limiting value of the current
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