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For what frequency the voltage across the resistance R will be maximum?

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Important Questions on AC Circuits

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A resistance of 10 Ω is joined to an inductance of 0.5 H and a capacitance of 20.24×10-6 F. When the circuit is connected to the mains supply of 200 V and frequency 50 cycle per second, maximum current flows in the circuit. The value of current is
MEDIUM

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In the above circuit, C= 3 2 μF, R 2 =20 Ω,L= 3 10 H and R 1 =10 Ω. Current in L-R1 path is I1 and in C-R2 path it is I 2 . The voltage of AC source is given by, V=200 2 sin( 100t ) volts. The phase difference between I1 and I2 is:

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An LCR series circuit has an inductance of 100 mH, connected to a 100 μF capacitor and the resistive load is 120 Ω, which is connected to an A.C. source of 60 Hz. The resonant frequency of the circuit is:
HARD
A 100Ω resistance, a 0.1μF capacitor and an inductor are connected in series across a 250 V supply at variable frequency. Calculate the value of inductance of inductor at which resonance will occur. Given that the resonant frequency is 60 Hz.
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An alternating current is flowing through a series L-C-R circuit. It is found that the current reaches a value of 1 mA at both 200 Hz and 800 Hz frequency. What is the resonance frequency of the circuit?
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A series LCR circuit of R=5 Ω, L=20 mH and C=0.5 μF is connected across an AC supply of 250 V, having variable frequency. The power dissipated at resonance condition is ________×102 W.
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A transmitting station releases waves of wavelength 960 m. A capacitor of 2.56 μF is used in the resonant circuit. The self-inductance of coil necessary for resonance is x×10-8 H. Find x
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A resonant frequency of a circuit is f. If the capacitance is made four times the initial value, then the resonant frequency will become
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A parallel plate capacitor in series with a resistance of 100 Ω, an inductor of 20 mH and an AC voltage source of variable frequency shows resonance at a frequency of 1250πHz. If this capacitor is charged by a DC voltage source to a voltage 25 V, what amount of charge will be stored in each plate of the capacitor?

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Find the peak current and resonant frequency of the following circuit (as shown in figure).

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MEDIUM

Match List-I with List-II.

  List - I   List - II
(a) ωL>1ωC (i) Current is in phase with emf
(b) ωL=1ωC (ii) Current lags behind the applied emf
(c) ωL<1ωC (iii) Maximum current occurs
(d) Resonant frequency (iv) Current leads the emf

Choose the correct answer from the options given below.

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 A resonant AC circuit contains a capacitor of capacitance 10-6 F and an inductor of 10-4 H. The frequency of electrical oscillations will be :- 
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What will be the reading in the voltmeter and ammeter of the circuit shown?

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In an LCR series circuit (of inductance L, capacitance C and resistance R), the impedance is minimum when the angular frequency of the source is given by
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A series LCR circuit driven by 300 V at a frequency of 50 Hz contains a resistance R=3 , an inductor of inductive reactance XL=250π Ω and an unknown capacitor. The value of capacitance to maximise the average power should be:
take π2=10
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In an L-C-R circuit, 10 Ω resistance, 0.5 μF capacitor and 8 H inductor are connected in series. Their angular resonance frequency will be
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In series LCR AC circuit, the capacitance is changes from C to 4 C. For the same resonant frequency, the inductance should be changed from L to
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A series LCR circuit is designed to resonate at an angular frequency ω0=105 rad s-1. The circuit draws 16 W power from 120 V source at resonance. The value of resistance R in the circuit is ________ Ω.
EASY

In the given circuit, the resonant frequency is

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The readings of ammeter and voltmeter in the following circuit are respectively

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