1) Measurements are made at 5 kHz on a 0.5-km-long transmission line. The results show that the characteristic impedance is 94 23.2° Q, the total attenuation is 0.06 Np, and the phase shift between input (generator voltage) and output (load voltage) is 8°. Find the R, L, G, and C per meter for the line; the phase velocity on the line; and the power lost on the line when the sending-end power is 3 W and the load is matched.
1) Measurements are made at 5 kHz on a 0.5-km-long transmission line. The results show that the characteristic impedance is 94 23.2° Q, the total attenuation is 0.06 Np, and the phase shift between input (generator voltage) and output (load voltage) is 8°. Find the R, L, G, and C per meter for the line; the phase velocity on the line; and the power lost on the line when the sending-end power is 3 W and the load is matched.
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
Transcribed Image Text:1) Measurements are made at 5 kHz on a 0.5-km-long transmission line. The results show
that the characteristic impedance is 94 23.2° Q, the total attenuation is 0.06 Np, and the
phase shift between input (generator voltage) and output (load voltage) is 8°. Find the R, L,
G, and C per meter for the line; the phase velocity on the line; and the power lost on the line
when the sending-end power is 3 W and the load is matched.
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