In the circuit shown in the figure below, the current supplied by the battery is:
 
1. \(2~\text A\) 
2. \(1~\text A\) 
3. \(0.5~\text A\) 
4. \(0.4~\text A\) 

Subtopic:  Wheatstone Bridge |
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The value of \(R\) in the given circuit when there is no current in the \(5 ~\Omega\) resistor is:
 
1. \(12~\Omega\) 2. \(9~ \Omega\)
3. \(3~ \Omega\) 4. \(2~ \Omega\)
Subtopic:  Wheatstone Bridge |
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NEET - 2024
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The effective resistance between points \(\mathrm{P}\) and \(\mathrm{Q}\) of the electrical circuit shown in the figure is:
         
1. \(\frac{2Rr}{R+r}\)

2. \(\frac{8R(R+r)}{3R+r}\)

3. \(2r+4R\)

4. \(\frac{5R}{2}+2r\)
Subtopic:  Wheatstone Bridge |
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The resistance of each arm of the Wheatstone’s bridge is \(10~\Omega.\) If a resistance of \(10~\Omega\) is connected in series with a galvanometer, then the equivalent resistance across the battery will be:
1. \(10~\Omega\) 2. \(15~\Omega\)
3. \(20~\Omega\) 4. \(40~\Omega\)
Subtopic:  Wheatstone Bridge |
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