In the circuit shown in the figure, neglecting source resistance, the voltmeter and ammeter reading respectively will be:

          

1. \(0~\text{V}, 3~\text{A}\)
2. \(150~\text{V}, 3~\text{A}\)
3. \(150~\text{V}, 6~\text{A}\)
4. \(0~\text{V}, 8~\text{A}\)

Subtopic:  Different Types of AC Circuits |
 86%
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An AC source of variable frequency \(f\) is connected to an \(LCR\) series circuit. Which of the following graphs represents the variation of the current \(I\) in the circuit with frequency \(f\)?

1.   2.
3. 4.
Subtopic:  Different Types of AC Circuits |
 76%
From NCERT
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Which of the following plots may represent the reactance of a series LC combination 

(1) a

(2) b

(3) c

(4) d

Subtopic:  Different Types of AC Circuits |
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In an ac circuit, I = 100 sin 200 πt. The time required for the current to achieve its peak value will be

1. 1100sec

2. 1200sec

3. 1300sec

4. 1400sec

Subtopic:  RMS & Average Values |
 54%
From NCERT
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Subtopic:  RMS & Average Values |
 91%
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Subtopic:  Different Types of AC Circuits |
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An inductor of \(20~\text{mH},\) a capacitor of \(50~ \mu \text{F},\) and a resistor of \(40~ \Omega\) are connected in series across a source of emf \(V= 10\sin340t\). What will be the power loss in the AC circuit?
1. \(0.67~\text{W}\) 2. \(0.78~\text{W}\)
3. \(0.89~\text{W}\) 4. \(0.46~\text{W}\)
Subtopic:  Power factor |
From NCERT
NEET - 2016
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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 |
 80%
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 |
 52%
From NCERT
NEET - 2011
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Power dissipated in an L-C-R series circuit connected to an AC source of emf ε is 

(a) ε2RR2+Lω-1Cω2

(b) ε2R2+Lω-1Cω2R

(c) ε2R2+Lω-1Cω2R

(d) ε2RR2+Lω-1Cω2

Subtopic:  Power factor |
 64%
From NCERT
NEET - 2009
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