A hemispherical portion of radius \( R \) is removed from the bottom of a cylinder of radius \( ...

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A hemispherical portion of radius \( R \) is removed from the bottom of a cylinder of radius \( R \). The volume of the remaining cylinder is \( V \) and mass \( M \). It is suspended by a string in a liquid of density \( \rho \) where it stays vertical. The upper surface of the cylinder is at a depth \( h \) below the liquid surface. The force on the bottom of the cylinder by the liquid is
(A) \( M g \)
(B) \( M g-V \rho g \)
(C) \( M g+\pi R^{2} h \rho g \)
(D) \( \rho g\left(V+\pi R^{2} h\right) \)
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