The Ratio of resistance at T °C to resistance at zero °C is 1.8. If the temperature coefficient of the material used is 0.008 then calculate the corresponding temperature T in °C.

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
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Voltage regulation of a short transmission line is found to be zero, If resistance and reactance of the line are 8
Ohms and 10 Ohms respectively, the power factor of the load side is . .
The Ratio of resistance at T °C to resistance at zero °C is 1.8. If the temperature coefficient of the material used
is 0.008 then calculate the corresponding temperature T in °C.
In an over head transmission line the conductor weight with ice loading is 2.35 kg. The total weight of the
conductor is 3.45 kg. Calculate Weight due to wind per unit length. (All weights given are for unit length)
hp
Transcribed Image Text:X MIDTER moodle.nct.edu.om/mod/quiz/ arning Portal Reports e-Services - Academic Departments - ETC - CIMS - Courses O 256.34V O 444.00V Voltage regulation of a short transmission line is found to be zero, If resistance and reactance of the line are 8 Ohms and 10 Ohms respectively, the power factor of the load side is . . The Ratio of resistance at T °C to resistance at zero °C is 1.8. If the temperature coefficient of the material used is 0.008 then calculate the corresponding temperature T in °C. In an over head transmission line the conductor weight with ice loading is 2.35 kg. The total weight of the conductor is 3.45 kg. Calculate Weight due to wind per unit length. (All weights given are for unit length) hp
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