Consider the electrical system in the figure below, derive a differential equation that expresses the behaviour of its components (Hint: use Kirchhoff voltage law). Where L=2 H, R=4 ohm, and when t=0, i(0)= 2 ampere. RE (i) Formulate a differential equation to express the previous system. (ii) Solve this first order differential equation (iii) Find the particular solution of this equation.

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Task 2:
Consider the electrical system in the figure below, derive a differential equation that expresses the
behaviour of its components (Hint: use Kirchhoff voltage law).
Where L=2 H, R=4 ohm, and when t=0, i(0)= 2 ampere.
(i)
Formulate a differential equation to express the previous system.
(ii)
Solve this first order differential equation
(iii)
Find the particular solution of this equation.
Transcribed Image Text:Task 2: Consider the electrical system in the figure below, derive a differential equation that expresses the behaviour of its components (Hint: use Kirchhoff voltage law). Where L=2 H, R=4 ohm, and when t=0, i(0)= 2 ampere. (i) Formulate a differential equation to express the previous system. (ii) Solve this first order differential equation (iii) Find the particular solution of this equation.
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