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MCS,PHD
Argosy University/ Phoniex University/
Nov-2005 - Oct-2011
Professor
Phoniex University
Oct-2001 - Nov-2016
Repeat Problem 13.18 for the circuit given in Problem 13.13. Assume ∆t = 0.03333 ms.
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Problem 13.13
As shown in Figure 13.32, a single-phase two-wire lossless line with Zc = 400 Ω

 Figure 13.32
short-circuited. (a) Show that for an incident voltage wave arriving at the center of the line from either line section, the voltage reflection and refraction coe‰cients are given by

Problem 13.18
For the circuit given in Problem 13.3, replace the circuit elements by their discretetime equivalent circuits and write nodal equations in a form suitable for computer solution of the sending-end and receiving-end voltages. Give equations for all dependent
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Problem 13.3
Referring to the single-phase two-wire lossless line shown in Figure 13.3, the receiving end is terminated by an inductor with LR henries. The source voltage at the sending end is a step,
 Both the line and inductor are initially unenergized. Determine and plot the voltage at the center of the line v(l/2, t) versus time t.

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