Question

For a sharp resonance, bandwidth is ______________

a.

low

b.

high

c.

zero

d.

infinity

Answer: (a).low

Interact with the Community - Share Your Thoughts

Uncertain About the Answer? Seek Clarification Here.

Understand the Explanation? Include it Here.

Q. For a sharp resonance, bandwidth is ______________

Similar Questions

Explore Relevant Multiple Choice Questions (MCQs)

Q. Current is maximum at __________ frequency of bandwidth.

Q. Shape of the resonance curve depends upon the?

Q. A circuit is said to be selective if it has a _____ peak and ____ bandwidth.

Q. What is the Q factor of a selective circuit?

Q. In selective circuits, higher the Q factor _________ the peak.

Q. Q is a measure of _________

Q. In selective circuits, the resonant frequency lies in the ________ of the bandwidth frequency range.

Q. In order for high selectivity, the resistance must be?

Q. In a series RLC circuit, the phase difference between the voltage across the capacitor and the voltage across the resistor is?

Q. In a series RLC circuit, the phase difference between the voltage across the inductor and the voltage across the resistor is?

Q. In a series RLC circuit, the phase difference between the voltage across the capacitor and the voltage across the inductor is?

Q. In a series RLC circuit, the phase difference between the voltage across the resistor and the current in the circuit is?

Q. In a series RLC circuit, the phase difference between the voltage across the capacitor and the current in the circuit is?

Q. In a series RLC circuit, the phase difference between the voltage across the inductor and the current in the circuit is?

Q. The current in the inductor lags the voltage in a series RLC circuit ___________ resonant frequency.

Q. The current in the capacitor leads the voltage in a series RLC circuit ___________ resonant frequency.

Q. The current in the inductor ___________ the voltage in a series RLC circuit above the resonant frequency.

Q. The current in the capacitor ___________ the voltage in a series RLC circuit below the resonant frequency.

Q. In a series RLC circuit, the phase difference between the current in the capacitor and the current in the resistor is?

Q. In a series RLC circuit, the phase difference between the current in the inductor and the current in the resistor is?

Recommended Subjects

Are you eager to expand your knowledge beyond Basic Electrical Engineering? We've handpicked a range of related categories that you might find intriguing.

Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!