Four resistances of 100 Ω each are connected in the form of square. Then, the effective resistance along the diagonal points is :

1. 200 Ω

2. 400 Ω

3. 100 Ω

4. 150 Ω

Subtopic:  Combination of Resistors |
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Equivalent resistance between the points A and B is (in Ω) 

1. 15

2. 114

3. 213

4. 312

Subtopic:  Combination of Resistors |
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In the circuit shown here, what is the value of the unknown resistor R so that the total resistance of the circuit between points P and Q is also equal to

1. 3 ohms

2. 39ohms

3. 69ohms

4. 10 ohms

Subtopic:  Combination of Resistors | Wheatstone Bridge |
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The resistors of resistances 2 Ω, 4 Ω and 8 Ω are connected in parallel, then the equivalent resistance of the combination will be :

1. 87Ω

2. 78Ω

2. 74Ω

4. 49Ω 

Subtopic:  Combination of Resistors |
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In the circuit, the potential difference across PQ will be nearest to 

1. 9.6 V

2. 6.6 V

3. 4.8 V

4. 3.2 V

Subtopic:  EMF & Terminal Voltage |
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Three resistors are connected to form the sides of a triangle ABC, the resistance of the sides AB, BC and CA are 40 ohms, 60 ohms and 100 ohms respectively. The effective resistance between the points A and B in ohms will be 

1. 32

2. 64

3. 50

4. 200

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Equivalent resistance across terminals \(A\) and \(B\) will be:

1. \(1~\Omega\) 2. \(2~\Omega\)
3. \(3~\Omega\) 4. \(4~\Omega\)
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Two wires of the same dimensions but resistivities ρ1 and ρ2 are connected in series. The equivalent resistivity of the combination is 

1. ρ1 + ρ2

2. ρ1+ρ22

3. ρ1ρ2

4. 2(ρ1+ρ2)

Subtopic:  Combination of Resistors |
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A 3 volt battery with negligible internal resistance is connected in a circuit as shown in the figure. The current I, in the circuit will be 

1. 1/3 A

2. 1 A

3. 1.5 A

4. 2 A

Subtopic:  Combination of Resistors |
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Find the equivalent resistance between the points a and b 

1. 2 Ω

2. 4 Ω

3. 8 Ω

4. 16 Ω

Subtopic:  Combination of Resistors | Wheatstone Bridge |
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