The net resistance of the circuit between \(A\) and \(B\) is:

   

1. \(\frac{8}{3}~\Omega\) 2. \(\frac{14}{3}~\Omega\)
3. \(\frac{16}{3}~\Omega\) 4. \(\frac{22}{3}~\Omega\)
Subtopic:  Wheatstone Bridge |
 89%
From NCERT
AIPMT - 2000
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The resistance of each arm of the wheat stone bridge is \(10~ \Omega.\) A resistance of \(10~ \Omega\) is connected in series with a galvanometer. The equivalent resistance across the battery will be:
1.\(10~ \Omega\)
2.\(15~ \Omega\)
3. \(20~ \Omega\)
4. \(40~ \Omega\)

Subtopic:  Wheatstone Bridge |
 79%
From NCERT
AIPMT - 2001
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In a Wheatstone bridge, all four arms have equal resistance \(R.\) If the resistance of the galvanometer arm is also \(R,\) the equivalent resistance of the combination is:

1. \(R/4\) 2. \(R/2\)
3. \(R\) 4. \(2R\)
Subtopic:  Wheatstone Bridge |
 85%
From NCERT
AIPMT - 2003
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Five equal resistances each of resistance \(R\) are connected as shown in the figure below. A battery of \(V\) volts is connected between \(A\) and \(B\). The current flowing in \(AFCEB\) will be:

   
1. \(\frac{V}{R}\)
2. \(\frac{V}{2R}\)
3. \(\frac{2V}{R}\)
4. \(\frac{3V}{R}\)

Subtopic:  Wheatstone Bridge |
 57%
From NCERT
AIPMT - 2004
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For the network shown in the figure below, the value of the current \(i\) is:

   
1. \(\frac{18V}{5}\)
2. \(\frac{5V}{9}\)
3. \(\frac{9V}{35}\)
4. \(\frac{5V}{18}\)

Subtopic:  Wheatstone Bridge |
 73%
From NCERT
AIPMT - 2005
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