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 Multiple Choice QuestionsMultiple Choice Questions

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61.

In a LCR series circuit, the potential difference between the terminals of the inductance is 60 V between the terminals of the capacitor is 30 V and that across the resistance is 40 V. Then, supply voltage will be equal to

  • 50 V

  • 70 V

  • 130 V

  • 10 V


62.

A choke is preferred to a resistance for limiting current in AC circuit because

  • choke is cheap

  • there is no wastage of power

  • choke is compact in size

  • choke is a good absorber of heat


63.

An electric bulb has a rated power of 50 W at 100 V. If it is used on an AC source 200 V, 50 Hz, a choke has to be used in series with it. This choke should have an inductance of

  • 0.1 mH

  • 1 mH

  • 0.1 H

  • 1.1 H


64.

An inductance of 200π mH, a capacitance of 10-3π F and a resistance of 10 Ω are connected in series with an AC source 220 V, 50 Hz. The phase angle of the circuit is

  • π6

  • π4

  • π2

  • π3


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65.

A step-down transformer reduces the voltage of a transmission line from 2200 V to 220 V. The power delivered by it is 880 W and its efficiency is 88%. The input current is

  • 4.65 mA

  • 0.045 A

  • 0.45 A

  • 4.65 A


66.

The value of alternating emf E in the given circuit will be

     

  • 220 V

  • 140 V

  • 100 V

  • 20 V


67.

A current of 5 A is flowing at 220 V in the primary coil of a transformer. If the voltage produced in the secondary coil is 2200 V and 50% of power is lost, then the current in secondary will be

  • 2.5 A

  • 5 A

  • 0.25 A

  • 0.5 A


68.

For a series LCR circuit at resonance, the statement which is not true is

  • Peak energy stored by a capacitor = peak energy stored by an inductor.

  • Average power = apparent power

  • Wattless current is zero.

  • Power factor is zero.


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69.

An electric heater rated 220 V and 550 W is connected to AC mains. The current drawn by it is

  • 0.8 A

  • 2.5 A

  • 0.4 A

  • 1.25 A


70.

A resistor and a capacitor are connected in series with an AC source. If the potential drop across the capacitor is 5 V and that across resistor is 12 V, then applied voltage is

  • 13 V

  • 17 V

  • 5 V

  • 12 V


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