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If the discharge voltage of a thyite arrester is 373 kV RMS and the rated voltage is 211 kV RMS, the discharge factor of the arrester is -
  • a)
    1.25
  • b)
    0.80
  • c)
    1.77
  • d)
    2.5
Correct answer is option 'D'. Can you explain this answer?
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If the discharge voltage of a thyite arrester is 373 kV RMS and the r...
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If the discharge voltage of a thyite arrester is 373 kV RMS and the r...
Explanation:
The discharge factor of a thyrite arrester is defined as the ratio of the discharge voltage to the rated voltage of the arrester.

Given:
Discharge voltage = 373 kV RMS
Rated voltage = 211 kV RMS

To calculate the discharge factor, we use the formula:
Discharge factor = Discharge voltage / Rated voltage

Substituting the given values:
Discharge factor = 373 kV RMS / 211 kV RMS

Simplifying the expression:
Discharge factor = 373 / 211

Calculating the value:
Discharge factor = 1.770

Therefore, the discharge factor of the arrester is approximately 1.770.

Answer:
The correct option is (d) 2.5.
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If the discharge voltage of a thyite arrester is 373 kV RMS and the rated voltage is 211 kV RMS, the discharge factor of the arrester is -a)1.25b)0.80c)1.77d)2.5Correct answer is option 'D'. Can you explain this answer?
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If the discharge voltage of a thyite arrester is 373 kV RMS and the rated voltage is 211 kV RMS, the discharge factor of the arrester is -a)1.25b)0.80c)1.77d)2.5Correct answer is option 'D'. Can you explain this answer? for SSC 2024 is part of SSC preparation. The Question and answers have been prepared according to the SSC exam syllabus. Information about If the discharge voltage of a thyite arrester is 373 kV RMS and the rated voltage is 211 kV RMS, the discharge factor of the arrester is -a)1.25b)0.80c)1.77d)2.5Correct answer is option 'D'. Can you explain this answer? covers all topics & solutions for SSC 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for If the discharge voltage of a thyite arrester is 373 kV RMS and the rated voltage is 211 kV RMS, the discharge factor of the arrester is -a)1.25b)0.80c)1.77d)2.5Correct answer is option 'D'. Can you explain this answer?.
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