An alternating current is given by the equation i=i1cosωt+i2sinωt. The r.m.s. current is given by

(1) 12(i1+i2)

(2) 12(ii+i2)2

(3) 12(i12+i22)1/2

(4) 12(i12+i22)1/2

Subtopic:  RMS & Average Values |
 80%
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A resistance of \(20~ \mathrm{ohms}\) is connected to a source of an alternating potential, \(V=220sin(100 \pi t).\) The time taken by the current to change from its peak value to its r.m.s value will be: 

1. \( 0.2~ \mathrm{sec}\) 2. \( 0.25~ \mathrm{sec}\)
3. \(25 \times10^{-3}~ \mathrm{sec}\) 4. \(2.5 \times10^{-3}~ \mathrm{sec}\)
Subtopic:  RMS & Average Values |
 65%
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Voltage and current in an ac circuit are given by V=5sin100πtπ6 and I=4sin100πt+π6 

(1) Voltage leads the current by 30°

(2) Current leads the voltage by 30°

(3) Current leads the voltage by 60°

(4) Voltage leads the current by 60°

Subtopic:  Different Types of AC Circuits |
 69%
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An alternating current of frequency ‘f’ is flowing in a circuit containing a resistance R and a choke L in series. The impedance of this circuit will be:

1. R + 2πfL

2. R2+4π2f2L2

3. R2+L2

4. R2+2πfL

Subtopic:  Different Types of AC Circuits |
 88%
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A resistance of 300 Ω and an inductance of 1π henry are connected in series to an ac voltage of 20 volts and a 200 Hz frequency. The phase angle between the voltage and current will be:

1. tan143

2. tan134

3. tan132

4. tan125

Subtopic:  Different Types of AC Circuits |
 80%
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In a region of uniform magnetic induction B = 10–2 tesla, a circular coil of radius 30 cm and resistance π2 ohm is rotated about an axis that is perpendicular to the direction of B and which forms a diameter of the coil. If the coil rotates at 200 rpm the amplitude of the alternating current induced in the coil is :

(1) 4π2 mA

(2) 30 mA

(3) 6 mA

(4) 200 mA

Subtopic:  Different Types of AC Circuits |
 56%
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The impedance of a circuit consists of 3 ohm resistance and 4 ohm reactance. The power factor of the circuit is :

(1) 0.4

(2) 0.6

(3) 0.8

(4) 1.0

Subtopic:  Different Types of AC Circuits |
 70%
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The power factor of a good choke coil is:

(1) Nearly zero

(2) Exactly zero

(3) Nearly one

(4) Exactly one

Subtopic:  Different Types of AC Circuits |
 51%
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L, C and R represent physical quantities inductance, capacitance and resistance respectively. The combination representing the dimension of frequency will be:

1. LC

2. (LC)–1/2

3. LC1/2

4. CL

Subtopic:  Different Types of AC Circuits |
 85%
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In an ac circuit, a resistance of R ohm is connected in series with an inductance L. If the phase angle between voltage and current is 45°, the value of inductive reactance will be:

1. \(\frac{R}{4}\)
2. \(\frac{R}{2}\)
3. R
4. Cannot be found with the given data

Subtopic:  Different Types of AC Circuits |
 80%
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