response to a step voltage, the voltage waveform shown in Fig. 1 below was observed at the 24/3 position of a lossless transmission line with e length. If the impedance of the transmission line is 75 2 and up (a) the length of the line, { (b) Load impedance, RL (c) Generator resistance, Rg (d) Generator voltage, Vg (e) Equivalent circuit of the transmission line. (f) Voltage and current values at infinity. (g) Draw V (z, 12 ns) and I(z, 4 ns). In = 1.5 x 108 m/s. Determine: V(2€/3,t) 5 V 1 V +t (ns) 4 8 16 20 Fig.1

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In response to a step voltage, the voltage waveform shown in Fig. 1 below was observed at
the 28/3 position of a lossless transmission line with e length. If the impedance of the
transmission line is 75 2 and up
(a) the length of the line, l
(b) Load impedance, R1
(c) Generator resistance, Rg
(d) Generator voltage, V,
(e) Equivalent circuit of the transmission line.
(f) Voltage and current values at infinity.
(g) Draw V (z, 12 ns) and I(z, 4 ns).
= 1.5 x 108 m/s. Determine:
V(2{/3,t)
5 V
1 V
+t (ns)
4
8
16
20
Fig.1
Transcribed Image Text:In response to a step voltage, the voltage waveform shown in Fig. 1 below was observed at the 28/3 position of a lossless transmission line with e length. If the impedance of the transmission line is 75 2 and up (a) the length of the line, l (b) Load impedance, R1 (c) Generator resistance, Rg (d) Generator voltage, V, (e) Equivalent circuit of the transmission line. (f) Voltage and current values at infinity. (g) Draw V (z, 12 ns) and I(z, 4 ns). = 1.5 x 108 m/s. Determine: V(2{/3,t) 5 V 1 V +t (ns) 4 8 16 20 Fig.1
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