हिंदी

Three point charges + Q + 2Q and q are placed at the vertices of an equilateral triangle. The value of charge q in terms of Q so that electrical potential energy of the system is zero, is given by

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प्रश्न

Three point charges + Q + 2Q and q are placed at the vertices of an equilateral triangle. The value of charge q in terms of Q so that electrical potential energy of the system is zero, is given by ______.

विकल्प

  • q = \[\frac {1}{3}\]Q

  • q = \[\frac {2}{3}\]Q

  • q = -\[\frac {2}{3}\]Q

  • q = -\[\frac {3}{2}\]Q

MCQ
रिक्त स्थान भरें
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उत्तर

Three point charges + Q + 2Q and q are placed at the vertices of an equilateral triangle. The value of charge q in terms of Q so that electrical potential energy of the system is zero, is given by q = -\[\frac {2}{3}\]Q.

Explanation:

Potential energy due to +q and +2q,

U1 = \[\frac {Kq(2q)}{r}\]

\[\therefore\] Potential energy due to +q and +Q,

U2 = \[\frac {KqQ}{r}\]

\[\therefore\] Potential energy due to +Q and +2q,

U3 = \[\frac {KQ(2q)}{r}\]

Given Potential energy of systems = 0

\[\therefore\] U1 + U2 + U3 = 0

\[\frac{\mathrm{Kq}(2\mathrm{q})}{\mathrm{r}}+\frac{\mathrm{KqQ}}{\mathrm{r}}+\frac{\mathrm{KQ}(2\mathrm{q})}{\mathrm{r}}\] = 0

2q + Q + 2Q = 0

3Q = -2q

Q = \[\frac {-2}{3}\]q

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