Four point charges \(-Q, -q,2q~\text{and}~2Q\)  are placed, one at each corner of the square. The relation between \(Q\) and \(q\) for which the potential at the center of the square is zero, is:

1. \(Q=-q \) 2. \(Q=-\frac{1}{q} \)
3. \(Q=q \) 4. \(\mathrm{Q}=\frac{1}{q}\)

Subtopic:  Electric Potential |
 77%
From NCERT
NEET - 2012
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Three capacitors each of capacitance C and of breakdown voltage V are joined in series. The capacitance and breakdown voltage of the combination will be:

1. C3V3

2. 3CV3

3. C33V

4. 3C3V

Subtopic:  Combination of Capacitors |
 80%
From NCERT
NEET - 2009
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Five identical plates each of area A are joined as shown in the figure. The distance between the plates is d. The plates are connected to a potential difference of V volts. The charge on plates 1 and 4 will be:

1. ε0AVd2ε0AVd

2. ε0AVd2ε0AVd

3.  ε0AVd2ε0AVd

4. ε0AVd2ε0AVd

Subtopic:  Combination of Capacitors |
 64%
From NCERT
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A network of four capacitors of capacity equal to C1=C, C2=2C, C3=3C and C4 = 4C are connected in a battery as shown in the figure. The ratio of the charges on C2 and C4 is:
       
1. 223

2. 322

3. 74

4. 47

Subtopic:  Combination of Capacitors |
 75%
From NCERT
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An electric dipole of moment \(p\) is placed in an electric field of intensity \(E\). The dipole acquires a position such that the axis of the dipole makes an angle \(\theta\) with the direction of the field. Assuming that the potential energy of the dipole to be zero when \(\theta = 90^{\circ},\) the torque and the potential energy of the dipole will respectively be:

1. \(p E \sin \theta,-p E \cos \theta\) 2. \(p E \sin \theta,-2 p E \cos \theta\)
3. \(p E \sin \theta, 2 p E \cos \theta\) 4. \(p E \cos \theta,-p E \sin \theta\)
Subtopic:  Energy of Dipole in an External Field |
 83%
From NCERT
NEET - 2012
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The equivalent capacitance between points a and b in the network shown below is:

                          

1. 5C

2. 4C

3. 3C

4. 2C

Subtopic:  Combination of Capacitors |
 79%
From NCERT
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The equivalent capacitance of the following arrangement is:
               
1. 18 μF
2. 9 μF
3. 6 μF
4. 12 μF

Subtopic:  Combination of Capacitors |
 79%
From NCERT
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Two capacitors of capacitance \(6~\mu\text{F}\) and \(3~\mu\text{F}\) are connected in series with battery of \(30~\text{V}\). The charge on \(3~\mu\text{F}\) capacitor at a steady state is:
        
1. \( 3 ~\mu\text{C}\)
2. \( 1.5 ~\mu\text{C}\)
3. \( 60~\mu\text{C}\)
4. \( 900~\mu\text{C}\)

Subtopic:  Combination of Capacitors |
 86%
From NCERT
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Three charges \(-Q\), \(q\), and \(-2Q\) are placed along a line as shown in the figure. The system of charges will have a positive potential energy configuration when q is placed at midpoint of line joining \(-Q\) and \(-2Q\), if:
      

1. \(q>{Q \over 3}\) 2. \(q<{Q \over 3}\)
3. \(q>{-Q \over 3}\) 4. \(q<{-Q \over 3}\)
Subtopic:  Electric Potential Energy |
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The electric field intensity and the electric potential at a point are E and V respectively. Which of the following is correct?

1. If E  ≠  0, V cannot be zero
2. If V  ≠  0, E cannot be zero
3. If V is constant and non-zero, E must be zero
4. If V=0, E must be zero

Subtopic:  Relation between Field & Potential |
 68%
From NCERT
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