A test specimen needs to be tested at 450 kV at 50 Hz using a series resonance circuit. The specimen capacitance is 1.5 nF and the dielectric loss is negligible. The test circuit consists of a supply connected to a100 kVA 100 V/350 kV feed transformer which has resistance and reactance of 2.6% and 4.9% respectively. Assume 1.1 % resistance of the inductor. Answer the following questions: Determine the series inductance required. Oa. 6563.7 H Ob. 6588.7 H Oc. 6638.7 H Od. 6613.7 H Find the inductor quality factor. Oa. 151.027 Ob. 149.027 Oc. 153.027 Od. 147.027 لجنة -

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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A test specimen needs to be tested at 450 kV at 50 Hz using a series resonance circuit. The
specimen capacitance is 1.5 nF and the dielectric loss is negligible. The test circuit consists of a
supply connected to a100 kVA 100 V/350 kV feed transformer which has resistance and
reactance of 2.6% and 4.9% respectively. Assume 1.1 % resistance of the inductor. Answer the
following questions:
Determine the series inductance required.
Oa. 6563.7 H
Ob. 6588.7 H
Oc. 6638.7 H
Od. 6613.7 H
Find the inductor quality factor.
Oa. 151.027
Ob. 149.027
Oc. 153.027
Od. 147.027
لجنة
Transcribed Image Text:A test specimen needs to be tested at 450 kV at 50 Hz using a series resonance circuit. The specimen capacitance is 1.5 nF and the dielectric loss is negligible. The test circuit consists of a supply connected to a100 kVA 100 V/350 kV feed transformer which has resistance and reactance of 2.6% and 4.9% respectively. Assume 1.1 % resistance of the inductor. Answer the following questions: Determine the series inductance required. Oa. 6563.7 H Ob. 6588.7 H Oc. 6638.7 H Od. 6613.7 H Find the inductor quality factor. Oa. 151.027 Ob. 149.027 Oc. 153.027 Od. 147.027 لجنة
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