If VAB=4V in the given figure, then resistance X will be :

(1) 5 Ω

(2) 10 Ω

(3) 15 Ω

(4) 20 Ω

Concept Questions :-

Kirchoff's voltage law
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The number of dry cells, each of e.m.f. 1.5 volt and internal resistance 0.5 ohm that must be joined in series with a resistance of 20 ohm so as to send a current of 0.6 ampere through the circuit is 

(1) 2

(2) 8

(3) 10

(4) 12

Concept Questions :-

Grouping of cells
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For driving a current of 2 A for 6 minutes in a circuit, 1000 J of work is to be done. The e.m.f. of the source in the circuit is 

(1) 1.38 V

(2) 1.68 V

(3) 2.04 V

(4) 3.10 V

Concept Questions :-

Heating effect of current
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Two batteries of e.m.f. 4V and 8 V with internal resistances 1 Ω and 2 Ω are connected in a circuit with a resistance of 9 Ω as shown in figure. The current and potential difference between the points P and Q are 

(1) 13A  and  3V

(2) 16A  and  4V

(3) 19A  and  9V

(4) 12A  and  12V

Concept Questions :-

Grouping of cells
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Four identical cells each having an electromotive force (e.m.f.) of 12V, are connected in parallel. The resultant electromotive force (e.m.f.) of the combination is :

(1) 48 V

(2) 12 V

(3) 4 V

(4) 3 V

Concept Questions :-

Grouping of cells
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The internal resistance of a cell of e.m.f. 12V is 5×102Ω. It is connected across an unknown resistance. The voltage across the cell, when a current of 60 A is drawn from it, is :

(1) 15 V

(2) 12 V

(3) 9 V

(4) 6 V

Concept Questions :-

Emf and terminal voltage
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The current in the given circuit is 

(1) 0.1 A

(2) 0.2 A

(3) 0.3 A

(4) 0.4 A

Concept Questions :-

Kirchoff's voltage law
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Consider four circuits shown in the figure below. In which circuit power dissipated is greatest (Neglect the internal resistance of the power supply)

(1)

(2)

(3)

(4)

Concept Questions :-

Heating effect of current
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In the circuit, the reading of the ammeter is (assume internal resistance of the battery be zero) :

(1) 4029A

(2) 109A

(3) 53A

(4) 2 A

Concept Questions :-

Kirchoff's voltage law
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Eels are able to generate current with biological cells called electroplaques. The electroplaques in an eel are arranged in 100 rows, each row stretching horizontally along the body of the fish containing 5000 electroplaques. The arrangement is suggestively shown below. Each electroplaques has an emf of 0.15 V and internal resistance of 0.25 Ω 

The water surrounding the eel completes a circuit between the head and its tail. If the water surrounding it has a resistance of 500 Ω, the current an eel can produce in water is about

(1) 1.5 A

(2) 3.0 A

(3) 15 A

(4) 30 A

Concept Questions :-

Grouping of cells
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Difficulty Level: