If the air bubble of radius \( r \) is formed at a depth \( h \) inside the container of soap so...
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If the air bubble of radius \( r \) is formed at a depth \( h \) inside the container of soap solution of density \( \rho \), the total pressure inside the bubble is (here, \( p_{0} \) denotes the atmospheric pressure and \( \sigma \) denotes surface tension)
(a) \( \frac{2 \sigma}{r}+h \rho g \)
(b) \( \frac{2 \sigma}{r}-h \rho g \)
(c) \( \frac{2 \sigma}{r}+p_{o}+h \rho g \)
(d) \( \frac{2 \sigma}{r}+p_{o}-h \rho g \)
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