QuestionJuly 24, 2025

In an inductor, when the voltage waveform is at 270 degrees, the current waveform will be at __ a. maximum positive b. zero c. maximum negative d. rms value

In an inductor, when the voltage waveform is at 270 degrees, the current waveform will be at __ a. maximum positive b. zero c. maximum negative d. rms value
In an inductor, when the voltage waveform is at 270 degrees, the current waveform will be at
__
a. maximum positive
b. zero
c. maximum negative
d. rms value

Solution
4.2(173 votes)

Answer

c. maximum negative Explanation 1. Understand phase relationship In an inductor, the current lags the voltage by 90 degrees. 2. Calculate current phase Voltage at 270 degrees means current is at 270 - 90 = 180 degrees. 3. Determine waveform position At 180 degrees, the sine wave reaches its maximum negative value.

Explanation

1. Understand phase relationship<br /> In an inductor, the current lags the voltage by 90 degrees.<br /><br />2. Calculate current phase<br /> Voltage at 270 degrees means current is at $270 - 90 = 180$ degrees.<br /><br />3. Determine waveform position<br /> At 180 degrees, the sine wave reaches its maximum negative value.
Click to rate:

Similar Questions