The r.m.s. value of the potential difference V shown in the figure is:

1. V0/3

2. V0

3. V0/2

4. V0/2

Subtopic:  RMS & Average Values |
 74%
From NCERT
AIPMT - 2011
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A coil has a resistance of \(30~ \mathrm{ohm}\) and inductive reactance of \(20 ~\mathrm{ohm}\) at a \(50~\mathrm{ Hz}\) frequency. If an \(\mathrm{ac}\) source of \(200 ~\mathrm{volts,}\) \(100~\mathrm{ Hz}\) is connected across the coil, the current in the coil will be:

1. \(2.0~\mathrm{ A}\) 2. \(4.0~\mathrm{ A}\)
3. \(8.0~\mathrm{ A}\) 4. \(20/\sqrt{13}~\mathrm{A}\)
Subtopic:  Different Types of AC Circuits |
 60%
From NCERT
AIPMT - 2011
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The instantaneous values of alternating current and voltages in a circuit are given as,
\(i=\frac{1}{\sqrt{2}}\sin\left ( 100\pi t \right )~\text{Ampere}\)
\(e=\frac{1}{\sqrt{2}}\sin\left ( 100\pi t+\pi /3 \right )~\text{Volt}\)
What is the average power consumed by the circuit in watts?

1. \( \frac{\sqrt{3}}{4} \) 2. \( \frac{1}{2} \)
3. \( \frac{1}{8} \) 4. \( \frac{1}{4}\)
Subtopic:  Power factor |
 75%
From NCERT
AIPMT - 2012
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The primary of a transformer when connected to the DC battery of \(10\) Volt draws a current of \(1~\mathrm{mA}\). The number of turns of the primary and secondary windings are \(50\) and \(100\) respectively. The voltage in the secondary and the current drawn by the circuit in the secondary are respectively:
1. \(20~\mathrm{V}\)  and \(2.0~\mathrm{mA}\)
2. \(10~\mathrm{V}\) and \(0.5~\mathrm{mA}\)
3. zero and therefore no current
4. \(20~\mathrm{V}\) and \(0.5~\mathrm{mA}\)
Subtopic:  Transformer |
From NCERT
NEET - 2013
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A coil of inductive reactance \(31~\Omega\) has a resistance of
\(8~\Omega\). It is placed in series with a condenser of capacitive reactance \(25~\Omega\). The combination is connected to an a.c. source of
\(110~\text{V}\). The power factor of the circuit is:
1. \(0.56\)
2. \(0.64\)
3. \(0.80\)
4. \(0.33\)

Subtopic:  Different Types of AC Circuits |
 78%
From NCERT
AIPMT - 2006
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The core of a transformer is laminated so that:

1. energy losses due to eddy currents may be minimized
2. the weight of the transformer may be reduced
3. rusting of the core may be prevented
4. the ratio of voltage in primary and secondary may be increased

Subtopic:  Transformer |
 84%
From NCERT
AIPMT - 2006
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A transformer is used to light a \(100~\text{W}\) and \(110~\text{V}\) lamp from a \(220~\text{V}\) main. If the main current is \(0.5~\text{A}\), the efficiency of the transformer is approximately:
1. \(30\%\)
2. \(50\%\)
3. \(90\%\)
4. \(10\%\)

Subtopic:  Transformer |
 73%
From NCERT
AIPMT - 2007
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What is the value of inductance L for which the current is maximum in a series LCR circuit with C = 10 μF and ω=1000 s-1?

1. 100 mH

2. 1 mH

3. cannot be calculated unless R is known

4. 10 mH

Subtopic:  Different Types of AC Circuits |
 72%
From NCERT
AIPMT - 2007
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In an AC circuit, the emf (e) and the current (I) at any instant are given respectively by 
e = E0sinω
I = I0sinωt-ϕ 
The average power in the circuit over one cycle of AC is:

1.  EoIo2

2.  EoIo2 sin ϕ

3.  EoIo2 cos ϕ

4.  EoIo

Subtopic:  RMS & Average Values |
 83%
From NCERT
AIPMT - 2008
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The power dissipated in an L-C-R series circuit connected to an AC source of emf E is:

1. \(\frac{\varepsilon^2R}{\Big[R^2+\Big(L\omega-\frac{1}{C\omega}\Big)^2\Big]}\)
2. \(\frac{\varepsilon^2\sqrt{R^2+\Big(L\omega-\frac{1}{C\omega}\Big)^2}}{R}~\)
3. \(\frac{\varepsilon^2\Big[R^2+\Big(L\omega-\frac{1}{C\omega}\Big)^2\Big]}{R}\)
4. \(\frac{\varepsilon^2R}{\sqrt{R^2+\Big(L\omega+\frac{1}{C\omega}\Big)^2}}~\)
Subtopic:  Different Types of AC Circuits |
 72%
From NCERT
AIPMT - 2009
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