A single-phase full-wave converter in the figure below is supplied with a 120-V, 60-Hz source. The load is highly inductive and the load current is continuous and free of ripples. The electromotive force is neglected (E = 0) and the resistance has a value of R = 10 Q. The delay angle is equal to 31.8°. The average output current is 9.18A and the nth harmonic component is expressed as below. The harmonic factor (known as THD) would be equal to: 本T R 2. V2.1 Im = n. = I, Select one: O a. 78.3% O b. 68.3% O c. 48.3% O d. 58.3%

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A single-phase full-wave converter in the figure below is supplied with a 120-V, 60-Hz source. The load is
highly inductive and the load current is continuous and free of ripples. The electromotive force is neglected (E
= 0) and the resistance has a value of R = 10 Q. The delay angle is equal to 31.8°. The average output current is
9.18A and the nth harmonic component is expressed as below. The harmonic factor (known as THD) would be
equal to:
on
2. V2.1a
%3D
7n. 7
Ti, = I,
Select one:
O a. 78.3%
O b. 68.3%
O c. 48.3%
O d. 58.3%
Transcribed Image Text:A single-phase full-wave converter in the figure below is supplied with a 120-V, 60-Hz source. The load is highly inductive and the load current is continuous and free of ripples. The electromotive force is neglected (E = 0) and the resistance has a value of R = 10 Q. The delay angle is equal to 31.8°. The average output current is 9.18A and the nth harmonic component is expressed as below. The harmonic factor (known as THD) would be equal to: on 2. V2.1a %3D 7n. 7 Ti, = I, Select one: O a. 78.3% O b. 68.3% O c. 48.3% O d. 58.3%
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