will P6.10. Time-domain analysis of a transmission-line system for a rectangular pulse excitation. For the system of Problem P6.8, assume that the voltage source is of 0.3 us duration instead of being of infinite duration. Find and sketch the line voltage and line current versus z for t = 1.2 μs and t = 3.5 μs. S t=0 90 Ω Vg(t) FIGURE From problem 6.8 For Problem 6.10 z= 0 Z₁ = 6002 T= 1 μs 180 Ω z=1
will P6.10. Time-domain analysis of a transmission-line system for a rectangular pulse excitation. For the system of Problem P6.8, assume that the voltage source is of 0.3 us duration instead of being of infinite duration. Find and sketch the line voltage and line current versus z for t = 1.2 μs and t = 3.5 μs. S t=0 90 Ω Vg(t) FIGURE From problem 6.8 For Problem 6.10 z= 0 Z₁ = 6002 T= 1 μs 180 Ω z=1
Introductory Circuit Analysis (13th Edition)
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Publisher:Robert L. Boylestad
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
Transcribed Image Text:will
P6.10. Time-domain analysis of a transmission-line system for a rectangular pulse
excitation. For the system of Problem P6.8, assume that the voltage source is
of 0.3
us duration instead of being of infinite duration. Find and sketch the
line voltage and line current versus z for t = 1.2 μs and t = 3.5 μs.
S
t=0
90 Ω
Vg(t)
FIGURE
From problem 6.8
For Problem 6.10
z= 0
Z₁ = 6002
T= 1 μs
180 Ω
z=1
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