A small particle of mass \( m \) and charge \( -\mathrm{q} \) is placed at point \( \mathrm{P} \...
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A small particle of mass \( m \) and charge \( -\mathrm{q} \) is placed at point \( \mathrm{P} \) on the axis of uniformly charged ring and released. If \( R \ggx \), the particle will undergo oscillations along the axis of symmetry with an angular
\( \mathrm{P} \) frequency that is equal to
W.
(A) \( \sqrt{\frac{\mathrm{qQ}}{4 \pi \varepsilon_{0} \mathrm{mR}^{3}}} \)
(B) \( \sqrt{\frac{\mathrm{qQx}}{4 \pi \varepsilon_{0} \mathrm{mR}^{4}}} \)
(C) \( \frac{\mathrm{qQ}}{4 \pi \varepsilon_{0} \mathrm{mR}^{3}} \)
(D) \( \frac{\mathrm{qQx}}{4 \pi \varepsilon_{0} \mathrm{mR}^{4}} \)
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