AC Fundamentals | Interview MCQ | AC Power Fundamentals Module
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Alternating Current, Circuits, AC: Certain circuits include sources of alternating electromotive forces of the sinusoidal form V = V0 cos(ωt). alternating current (AC), how it works, basic AC source and AC generators, difference between AC.
- to amplify certain frequencies
- to reject a small band of frequencies
- both (a) and (b)
- as a high impedance
Question 1: A parallel resonant circuit can be used?
Answers: both (a) and (b)
- narrower its pass band
- sharper its resonance
- broader its resonance curve
- greater its bandwidth
Question 2: Higher the Q of a series circuit?
Answers: narrower its pass band
- decrease of capacitance and decrease of resistance
- decrease of capacitance and increase of resistance
- increase of capacitance and decrease of resistance
- increase of capacitance and increase of resistance
Question 3: Time constant of a capacitive circuit increases with the?
Answers: increase of capacitance and increase of resistance
- 1.414 Imax
- 0.707 Imax
- 0.5 Imax
- 0.9 Imax
Question 4: For a sine wave with peak value Imax the RMS value is?
Answers: 0.707 Imax
- average value to RMS value
- none of the above
- RMS value to average value
- peak value to RMS value
Question 5: The form factor is the ratio of?
Answers: RMS value to average value
- high
- very low
- low
- very high
Question 6: At ...... frequencies the parallel R-L circuit behaves as purely resistive?
Answers: very high
- replaced by source resistance
- open-circuited
- replaced by capacitance
- short-circuited
Question 7: To neglect a current source, the terminals across the source are?
Answers: open-circuited
- the current can lead or lag by 90º
- the current is in phase with the voltage
- the current lags behind the voltage by 90º
- the current leads the voltage by 90º
Question 8: In a pure inductive circuit?
Answers: the current lags behind the voltage by 90º
- will increase the selectivity of the circuit
- will change the maximum value of current at resonance
- will change the impedance at resonance frequency
- will change the resonance frequency
Question 9: In series resonant circuit, increasing inductance to its twice value and reducing capacitance to its half value ?
Answers: will increase the selectivity of the circuit
- none of the above
- either (c) or (d)
- series
- parallel
Question 10: Power factor of an inductive circuit is usually improved by connecting capacitor to it in?
Answers: parallel
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