(b) Figure 2.b shows an electrical circuit for a household appliance. It consists of two inductors L, and L2, two resistors R, and R2, one capacitor C and one voltage source, V,. i) Re-draw the circuit and state all the impedances and resistances for each component in the circuit. ii) Generate Laplace transformation equation for each Loop1, Loop2 and Loop3. iii) Represent the Laplace transformation equations in ii) in a matrix form. Consider the value of all constants L1, L2, R1, R2 and C are equal to 1.

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(b) Figure 2.b shows an electrical circuit for a household appliance. It consists of two inductors
L, and L2, two resistors R, and R2, one capacitor C and one voltage source, V,.
i)
Re-draw the circuit and state all the impedances and resistances for each
component in the circuit.
ii)
Generate Laplace transformation equation for each L0op1, Loop2 and Loop3.
iii) Represent the Laplace transformation equations in ii) in a matrix form. Consider
the value of all constants L1, L2, R1, R2 and C are equal to 1.
Transcribed Image Text:(b) Figure 2.b shows an electrical circuit for a household appliance. It consists of two inductors L, and L2, two resistors R, and R2, one capacitor C and one voltage source, V,. i) Re-draw the circuit and state all the impedances and resistances for each component in the circuit. ii) Generate Laplace transformation equation for each L0op1, Loop2 and Loop3. iii) Represent the Laplace transformation equations in ii) in a matrix form. Consider the value of all constants L1, L2, R1, R2 and C are equal to 1.
Loop 3
13
R2
L1
Vs
12
L2
R1
Loop 1
Loop 2
Figure 2.b: Electrical circuit for a household appliance.
Transcribed Image Text:Loop 3 13 R2 L1 Vs 12 L2 R1 Loop 1 Loop 2 Figure 2.b: Electrical circuit for a household appliance.
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