A one hundred (100) kilometer (km) long high voltage transmission line that uses an unknown material has a diameter of 0.03 meters and a potential difference of 220V is maintained across the ends. The average time between collision = 2.7 x 10-14 s free-electron density = 8.5 x 1026 /m³. Determine the: a. Drift velocity in m/s. b. Current c. Current density in ma/m² d. Resistivity of the unknown material in micro-ohmmeter. e. Time taken by the electrons to travel the full length of the cable in mega-seconds.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter4: Transmission Line Parameters
Section: Chapter Questions
Problem 4.4P: One thousand circular mils or 1 kcmil is sometimes designated by the abbreviation MCM75C. Data for...
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A one hundred (100) kilometer (km) long high voltage transmission line that uses an unknown
material has a diameter of 0.03 meters and a potential difference of 220V is maintained across
the ends.
The average time between collision = 2.7 x 10-14 s
free-electron density = 8.5 x 1026 /m³.
Determine the:
a. Drift velocity in m/s.
b. Current
c. Current density in ma/m2
d. Resistivity of the unknown material in micro-ohmmeter.
e. Time taken by the electrons to travel the full length of the cable in mega-seconds.
Transcribed Image Text:A one hundred (100) kilometer (km) long high voltage transmission line that uses an unknown material has a diameter of 0.03 meters and a potential difference of 220V is maintained across the ends. The average time between collision = 2.7 x 10-14 s free-electron density = 8.5 x 1026 /m³. Determine the: a. Drift velocity in m/s. b. Current c. Current density in ma/m2 d. Resistivity of the unknown material in micro-ohmmeter. e. Time taken by the electrons to travel the full length of the cable in mega-seconds.
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