An isolated and charged spherical soap bubble has a radius \( \math...
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An isolated and charged spherical soap bubble has a radius \( \mathrm{r} \) and the pressure inside is atmospheric. If \( \mathrm{T} \) is the surface tension of soap solution, then charge on drop is \( \mathrm{X} \pi \mathrm{r} \sqrt{2 \mathrm{rT} \varepsilon_{0}} \) then find the value of \( X \).
(a) 8
(b) 9
(c) 7
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