Advertisements
Advertisements
प्रश्न
Which of the following statements about a series LCR circuit connected to an ac source is correct?
पर्याय
If the frequency of the source is increased, the impedance of the circuit first decreases and then increases.
If the net reactance (XL - XC) of the circuit becomes equal to its resistance, then the current leads the voltage by 45°.
At resonance, the voltage drop across the inductor is more than that across the capacitor.
At resonance, the voltage drop across the capacitor is more than that across the inductor.
Advertisements
उत्तर
If the net reactance (XL - XC) of the circuit becomes equal to its resistance, then the current leads the voltage by 45°.
Explanation:
For an LCR circuit,
`tanphi = (X_L - X_C)/R`
If XL - XC = R
`tanphi = R/R`
`tanphi = 1 ⇒ phi = 45^circ`
APPEARS IN
संबंधित प्रश्न
A series LCR circuit is connected to an ac source. Using the phasor diagram, derive the expression for the impedance of the circuit. Plot a graph to show the variation of current with frequency of the source, explaining the nature of its variation.
In a series, LCR circuit, obtain an expression for the resonant frequency,
Use the expression for Lorentz force acting on the charge carriers of a conductor to obtain the expression for the induced emf across the conductor of length l moving with velocity v through a magnetic field B acting perpendicular to its length.
The selectivity of a series LCR a.c. circuit is large, when ______.
For a series LCR-circuit, the power loss at resonance is ______.
In an LCR series a.c. circuit, the voltage across each of the components, L, C and R is 50V. The voltage across the LC combination will be ______.
In series LCR AC-circuit, the phase angle between current and voltage is
In series LCR circuit, the plot of Imax vs ω is shown in figure. Find the bandwidth and mark in the figure.

A series RL circuit with R = 10 Ω and L = `(100/pi)` mH is connected to an ac source of voltage V = 141 sin (100 πt), where V is in volts and t is in seconds. Calculate
- the impedance of the circuit
- phase angle, and
- the voltage drop across the inductor.
Draw a labelled graph showing variation of impedance (Z) of a series LCR circuit Vs frequency (f) of the ac supply. Mark the resonant frequency as f0·
