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A body having volume V and density rho i...

A body having volume V and density `rho` is attached to the bottom of a container as shown. Density of the liquid is `d(gtrho)`. Container has a constant upward acceleration a. Tension in the string is

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The liquid inside the container has density rho . Choose the correct option.

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Figure shows a closed container completely filled with an ideal liquid of density rho . In the liquid there is a spherical body of volume V and density sigma attached to a string whose other end is attached to the roof of the container. The container is accelerating with an acceleration 'a' towards right. The force exerted by the liquid on the spherical body when it is in equillibrium with respect to the liquid, will be :

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A cylinderical container of length L is full to the brim with a liquid which has mass density rho . It is placed on a weight scale, the scale reading is w. A light wall ball which would float on the liquid if allowed to do so, of volume V and mass m is pushed gently down and held beneath the surface of the liquid with a rigid rod of negligible volume as shown on the left Q. if instead of being pushed down by a rod, the ball is held in place by a thin string attached to the bottom of the container as shown on the right what is the tension T is the string? (a). (rhoV-m)g (b). rhoVg (c). mg (d). none of these

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