16.28 The periodic square-wave voltage seen in Fig. P16.28(a) is applied to the circuit shown in Fig. P16.28(b). Derive the first three nonzero terms in the Fourier series that represents the steady-state voltage v, if Vm = 15m V and the period of the in- put voltage is 4r ms.

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16.28 The periodic square-wave voltage seen
Fig. P16.28(a) is applied to the circuit shown in
Fig. P16.28(b). Derive the first three nonzero terms
in the Fourier series that represents the steady-state
voltage v, if Vm = 157 V and the period of the in-
put voltage is 4T ms.
in
Figure P16.28
10 Ω
+
10 mH v
T/2
T
-Vm
(a)
(b)
Transcribed Image Text:16.28 The periodic square-wave voltage seen Fig. P16.28(a) is applied to the circuit shown in Fig. P16.28(b). Derive the first three nonzero terms in the Fourier series that represents the steady-state voltage v, if Vm = 157 V and the period of the in- put voltage is 4T ms. in Figure P16.28 10 Ω + 10 mH v T/2 T -Vm (a) (b)
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