Figures (a) and (b) show the field lines of a positive and negative point charge respectively. The signs of the potential energy difference of a small negative charge between the points Q and P & A and B are respectively:
 

1. +, -
2. +, +
3. -, +
4. -, -

Subtopic:  Electric Potential Energy |
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Figures (a) and (b) show the field lines of a positive and negative point charge respectively. The sign of the work done by the field in moving a small positive charge from Q to P and the sign of the work done by the external agency in moving a small negative charge from B to A, respectively, will be:
 

1. +, -
2. +, +
3. -, +
4. -, -

Subtopic:  Electric Potential Energy |
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Figures (a) and (b) show the field lines of a positive and negative point charge respectively. The kinetic energy of a small negative charge in going from B to A:

1. decreases.

2. increases.

3. remains the same.

4. first increases and then decreases.

Subtopic:  Electric Potential Energy |
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Four charges are arranged at the corners of a square ABCD of side d, as shown in the figure. The work required to put together this arrangement will be:

1. -q24πε0d4-2
2. -q24πε0d2-2
3. -q24πε0d4+2
4. -q24πε0d2+2

Subtopic:  Electric Potential Energy |
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Four charges are arranged at the corners of a square \(ABCD\) of side \(d\), as shown in the figure. A charge \(q_0\) is brought from \(\infty\) to the centre \(E\) of the square, the four charges being held fixed at its corners. How much work is needed to do this?


1. \(\frac{-q^2}{4\pi\varepsilon_0 d}(4-\sqrt{2})\)

2. zero
3. \(\frac{-q^2}{4\pi\varepsilon_0 d}(4+\sqrt{2})\)
4. \(\frac{-q^2}{4\pi\varepsilon_0 d}(2+\sqrt{2})\)

Subtopic:  Electric Potential Energy |
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The electrostatic potential energy of a system consisting of two charges 7 µC and –2 µC (and with no external field) placed at (–9 cm, 0, 0) and (9 cm, 0, 0) respectively is:

1. 0.2 J

2. -0.7 J

3. -0.2 J

4. 0.7 J

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How much work is required to separate two charges  7 µC and –2 µC (and with no external field) placed at (–9 cm, 0, 0) and (9 cm, 0, 0) infinitely away from each other?

1. 0.2 J

2. -0.7 J

3. -0.2 J

4. 0.7 J

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The electrostatic potential energy of a system consisting of two charges 7 µC and –2 µC (in an external electric field E A(1/r2); A = 9 × 105 C m–2) placed at (–9 cm, 0, 0) and (9 cm, 0, 0) respectively is:

1. 34 J

2. 49.3 J

3. 47 J

4. 43 J

Subtopic:  Electric Potential Energy |
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