The signal below is the waveform of the input voltage to the circuit on the right. v(t) 10 20 v(t) 0.5H 60 + 1 2 3 4 5 6 -5- For a very long time before t = 0, the input voltage is zero. Provide the: а. xpression of the input voltage, v(t), represented using unit step functions b. Laplace transform of v(t), symbol V(s) с. Sketch of the Laplace equivalent circuit.

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The signal below is the waveform of the input voltage to the circuit on the right.
v(t)
10
20
5
v(t)
0.5H
60
+
1
2
3
4
5
6
-5+
For a very long time before t = 0, the input voltage is zero. Provide the:
a. Expression of the input voltage, v(t), represented using unit step functions
b. Laplace transform of v(t), symbol V(s)
C.
Sketch of the Laplace equivalent circuit.
d. Equivalent Thevenin impedance in the s-domain seen by the 60 resistor, symbol ZTh(s)
e. Thevenin voltage seen by the 60 resistor in the s-domain, VTh(S). Simplify.
f. Expression of the current through the 60 resistor, Ir2(s), using the Thevenin equivalent circuit in
the s-domain.
Transcribed Image Text:The signal below is the waveform of the input voltage to the circuit on the right. v(t) 10 20 5 v(t) 0.5H 60 + 1 2 3 4 5 6 -5+ For a very long time before t = 0, the input voltage is zero. Provide the: a. Expression of the input voltage, v(t), represented using unit step functions b. Laplace transform of v(t), symbol V(s) C. Sketch of the Laplace equivalent circuit. d. Equivalent Thevenin impedance in the s-domain seen by the 60 resistor, symbol ZTh(s) e. Thevenin voltage seen by the 60 resistor in the s-domain, VTh(S). Simplify. f. Expression of the current through the 60 resistor, Ir2(s), using the Thevenin equivalent circuit in the s-domain.
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