\(\mathrm{A, B}~\text{and}~\mathrm{C}\) are voltmeters of resistance \(R\), \(1.5R\) and \(3R\) respectively as shown in the figure above. When some potential difference is applied between \(\mathrm{X}\) and \(\mathrm{Y}\), the voltmeter readings are \({V}_\mathrm{A}\), \({V}_\mathrm{B}\) and \({V}_\mathrm{C}\) respectively. Then:

       

1. \({V}_\mathrm{A} ={V}_\mathrm{B}={V}_\mathrm{C}\) 2. \({V}_\mathrm{A} \neq{V}_\text{B}={V}_\mathrm{C}\)
3. \({V}_\mathrm{A} ={V}_\mathrm{B}\neq{V}_\mathrm{C}\) 4. \({V}_\mathrm{A} \ne{V}_\mathrm{B}\ne{V}_\mathrm{C}\)

Subtopic:  Kirchoff's Voltage Law |
 64%
From NCERT
NEET - 2015
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In the circuit shown cells, \(A\) and \(B\) have negligible resistance. For \(V_A =12 ~\text{V}\), \(R_1 = 500 ~\Omega \), and \(R = 100 ~\Omega \) the galvanometer \((\text{G}) \) shows no deflection. The value of \(V_B\) is: 
     

1. \(4\) V
2. \(2\) V
3. \(12\) V
4. \(6\) V

Subtopic:  Kirchoff's Voltage Law |
 73%
From NCERT
AIPMT - 2012
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In the circuit shown in the figure below, if the potential at point \(\mathrm{A}\) is taken to be zero, the potential at point \(\mathrm{B}\) will be:

           

1. \(+1\) V
2. \(-1\) V
3. \(+2\) V
4. \(-2\) V

Subtopic:  Kirchoff's Voltage Law |
 62%
From NCERT
AIPMT - 2011
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Given below two statements:

Statement I: Kirchhoff’s junction law follows the conservation of charge. 
Statement II: Kirchhoff’s loop law follows the conservation of energy.

1. Both Statement I and Statement II are wrong.
2. Statement I is correct but Statement II is wrong.
3. Statement I is wrong and Statement II is correct.
4. Both Statement I and Statement II are correct.

Subtopic:  Kirchoff's Voltage Law |
 82%
From NCERT
AIPMT - 2010
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See the electrical circuit shown in this figure. Which of the following is a correct equation for it?
                                  

1. \(\varepsilon_1-(i_1+i_2)R-i_1r_1=0\)
2. \(\varepsilon_2-i_2r_2-\varepsilon_1-i_1r_1=0\)
3. \(-\varepsilon_2-(i_1+i_2)R+i_2r_2=0\)
4. \(\varepsilon_1-(i_1+i_2)R+i_1r_1=0\)

Subtopic:  Kirchoff's Voltage Law |
 71%
From NCERT
AIPMT - 2009
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In the circuit shown below, if a conducting wire is connected between points \(A\) and \(B\), the current in this wire will: (All resistances are given in ohms)
         
1. flow from \(A\) to \(B\)
2. flow in the direction which will be
decided by the value of \(V\)
3. be zero
4. flow from \(B\) to \(A\)
Subtopic:  Kirchoff's Voltage Law |
 53%
From NCERT
AIPMT - 2006
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Kirchhoff’s first and second laws for electrical circuits are consequences of:

1. conservation of energy.
2. conservation of electric charge and energy respectively.
3. conservation of electric charge.
4. conservation of energy and electric charge respectively.

Subtopic:  Kirchoff's Voltage Law | Kirchoff's Current Law |
 74%
From NCERT
AIPMT - 2006
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