The current source in the circuit in (Figure 1) generates the current pulse shown in (Figure 2). There is no energy stored at t = 0. Derive the numerical expression for vo(t) for t<0. Calculate vo(75−μs). Calculate vo(75+μs). Calculate io(75−μs). Calculate io(75+μs).

Electricity for Refrigeration, Heating, and Air Conditioning (MindTap Course List)
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Chapter7: Alternating Current, Power Distribution, And Voltage Systems
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The current source in the circuit in (Figure 1) generates the current pulse shown in (Figure 2). There is no energy stored at t = 0.
Derive the numerical expression for vo(t) for t<0.

Calculate vo(75−μs).
Calculate vo(75+μs).
Calculate io(75−μs).
Calculate io(75+μs).

is (mA)
25
0
75 t (µs)
Transcribed Image Text:is (mA) 25 0 75 t (µs)
is
2 ΚΩ
+
θα
250 mH
Transcribed Image Text:is 2 ΚΩ + θα 250 mH
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