Charges \(\ -\mathrm{q} \) and \(\ +\mathrm{q} \) located at \(\ \mathrm{A} \) and \(\ \mathrm{B.... VIDEO
Charges \(\ -\mathrm{q} \) and \(\ +\mathrm{q} \) located at \(\ \mathrm{A} \) and \(\ \mathrm{B} \), respectively, constitute an electric dipole. Distance \(\ A B=2 a, O \) is the mid point of the dipole and \(\ \mathrm{OP} \) is perpendicular to \(\ \mathrm{AB} \). A charge \(\ Q \) is placed at \(\ P \) where \(\ O P=y \) and \(\ y>2 a \). The charge \(\ \mathrm{Q} \) experiences and electrostatic force \(\ F \). If \(\ Q \) is now moved along the equatorial line to \(\ \mathrm{P}^{\prime} \) such that \(\ \mathrm{OP}^{\prime}=\left(\frac{\mathrm{y}}{3}\right) \), the force on \(\ \mathrm{Q} \) will be close to : \(\ \left(\frac{\mathrm{y}}{3}>2 \mathrm{a}\right) \)
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