In an AC circuit, the current is given by; \(i=5\sin\left(100t-\frac{\pi}{2}\right)\) and the AC potential is \(V =200\sin(100 t)~\text V.\) The power consumption is:
1. \(20~\text W\)
2. \(40~\text W\)
3. \(1000~\text W\)
4. zero

Subtopic:  Power factor |
 86%
Level 1: 80%+

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A \(100~\Omega\) resistor is connected to a \(220~\text{V}\), \(50~\text{Hz}\) \(\text{AC}\) supply. The net power consumed over a full cycle is:
1. \(484~\text{W}\) 2. \(848~\text{W}\)
3. \(400~\text{W}\) 4. \(786~\text{W}\)
Subtopic:  Power factor |
 87%
Level 1: 80%+

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A coil of inductive reactance of \(31~\Omega\) 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 AC source of \(110\) V. The power factor of the circuit is:
1. \(0.56\)
2. \(0.64\)
3. \(0.80\)
4. \(0.33\)

Subtopic:  Power factor |
 87%
Level 1: 80%+
AIPMT - 2006

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The power factor of the given circuit is:
             

1. \(1 \over 2\) 2. \(1 \over \sqrt2\)
3. \(\sqrt3 \over 2\) 4. \(0\)
Subtopic:  Power factor |
 84%
Level 1: 80%+

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The power factor of a series \(LCR\) circuit in resonance condition is:
1. zero 2. \(\dfrac{1}{2}\)
3. \(\dfrac{1}{\sqrt{2}}\) 4. \(1\)
Subtopic:  Power factor |
 82%
Level 1: 80%+

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The potential differences across the resistance, capacitance and inductance are \(80\) V, \(40\) V and \(100\) V respectively in an \(LCR\) circuit. What is the power factor of this circuit?
1. \(0.4\)
2. \(0.5\)
3. \(0.8\)
4. \(1.0\)

Subtopic:  Power factor |
 83%
Level 1: 80%+
NEET - 2016

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An inductor of inductance \(L\) and resistor of resistance \(R\) are joined in series and connected by a source of frequency \(\omega\). The power dissipated in the circuit is:
1. \(\dfrac{\left( R^{2} +\omega^{2} L^{2} \right)}{V}\)

2. \(\dfrac{V^{2} R}{\left(R^{2} + \omega^{2} L^{2} \right)}\)

3. \(\dfrac{V}{\left(R^{2} + \omega^{2} L^{2}\right)}\)

4. \(\dfrac{\sqrt{R^{2} + \omega^{2} L^{2}}}{V^{2}}\)

Subtopic:  Power factor |
 80%
Level 1: 80%+

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In a series \(LCR\) circuit, the current through the AC source is \(2\) A. If resistor \(R\) has a resistance of \(10~\Omega\), the average power dissipated in the circuit is:
1. \(20\) W 2. \(30\) W
3. \(10\) W 4. \(40\) W
Subtopic:  Power factor |
 80%
Level 1: 80%+

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What is the average power dissipated in the AC circuit if current \(i = 100\sin(100t)\) A and \(V = 100\sin\left(100t+\frac{\pi}{3}\right)\) volts?
1. \(2500\) W 2. \(250\) W
3. \(5000\) W 4. \(4000\) W
Subtopic:  Power factor |
 78%
Level 2: 60%+

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A circuit consists of \(3\) ohms of resistance and \(4\) ohms of reactance. The power factor of the circuit is:

1. \(0.4\) 2. \(0.6\)
3. \(0.8\) 4 \(1.0\)
Subtopic:  Power factor |
 77%
Level 2: 60%+

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