In an electrical circuit R, L, C, and an AC voltage source are all connected in series. When L is removed from the circuit, the phase difference between the voltage and the current in the circuit is π/3. If instead, C is removed from the circuit, the phase difference is again π/3. The power factor of the circuit is

(1) 1/2                                           

(2) 1/2

(3) 1                                             

(4) 3/2

Subtopic:  Different Types of AC Circuits |
 71%
From NCERT
NEET - 2020
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The instantaneous values of alternating

current and voltages in a circuit are given

as 

i=12sin(100πt) ampere
e=12sin(100πt+π/3) volt

The average power in Watts consumed in the

circuit is

(a) 14

(b) 34

(c) 12 

(d) 18

Subtopic:  Different Types of AC Circuits |
 70%
From NCERT
NEET - 2012
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In an AC circuit an alternating voltage e=200 2 sin 100t volt is connected to a capacitor 1 μF. The rms value of the current in the circuit is

(a) 100 mA

(b) 200 mA

(c) 20 mA

(d) 10 mA

Subtopic:  RMS & Average Values | Different Types of AC Circuits |
 76%
NEET - 2011
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The current  in a coil varies with time as shown in the figure. The variation of induced emf with time would be

                                                   

                                                                 

                  (a)                                                                                         (b)

 

                                                                 

                   (c)                                                                                             (d)

Subtopic:  Faraday's Law & Lenz Law |
 62%
From NCERT
NEET - 2011
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An \(AC\) voltage is applied to a resistance \(R\) and an inductor \(L\) in series. If \(R\) and the inductive reactance are both equal to \(3~ \Omega, \) then the phase difference between the applied voltage and the current in the circuit will be:

1. \( \pi / 4\) 2. \( \pi / 2\)
3. zero 4. \( \pi / 6\)
Subtopic:  Different Types of AC Circuits |
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From NCERT
NEET - 2011
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The rms value of potential difference V shown in the figure is

                        

(1) Vo                                                     

(2) Vo2

(3)Vo2                                                     

(4) Vo3   

Subtopic:  RMS & Average Values |
 77%
From NCERT
NEET - 2011
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A coil has resistance 30 Ω and inductive reactance 20 Ω at 50 Hz frequency. If an AC source of 200 V, 100 Hz, is connected across the coil, the current in the coil will be:

 1. 4.0 A                                           

 2. 8.0 A

 3. 2013A                                         

 4. 2.0 A

Subtopic:  Different Types of AC Circuits |
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From NCERT
NEET - 2011
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In the given circuit the reading of voltmeter V1 and V2 are 300V each. The reading to the voltmeter V3 and ammeter A are respectively :

(a) 150V, 2.2A                                             

(b) 220V, 2.2A

(c) 220V, 2.0A                                             

(d) 100V, 2.0A

Subtopic:  Different Types of AC Circuits |
 88%
From NCERT
NEET - 2010
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A 220V input is supplied to a transformer.The output circuit draws a current of 2.0A at 440V. If the efficiency of the transformer is 80%, the current drawn by the primary windings of the transformer is 

1. 3.6A                                        2. 2.8A

3. 2.5A                                        4. 5.0A

Subtopic:  Transformer |
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From NCERT
NEET - 2010
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A condenser of capacity C is charged to a potential difference of V1. The plates of the condenser are then connected to an ideal inductor of inductance L. The current through the inductor when the potential difference across the condenser reduces to V2 is

(1) C(V1-V2)2L12                                     

(2) C(V12-V22)L

(3) C(V12+V22)L                                             

(4) C(V12-V22)L12

Subtopic:  LC Oscillations (OLD NCERT) |
 57%
From NCERT
NEET - 2010
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