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HYDRAULICS AND FLUID MECHANICS IN ME

Hydraulics and Fluid Mechanics in ME
Centre of buoyancy always

remains below the centre of gravity
remains above the centre of gravity
coincides with the centre of gravity
coincides with the centroid of the volume of fluid displaced

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Hydraulics and Fluid Mechanics in ME
Center of buoyancy is the

e.g. of floating body
does not exist
center of pressure of displaced volume
centroid of the displaced volume of fluid

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Hydraulics and Fluid Mechanics in ME
Equation of continuity is based on the principle of conservation of

energy
mass
momentum
None of these

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Hydraulics and Fluid Mechanics in ME
Bernoulli equation deals with the law of conservation of

mass
energy
momentum
work

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Hydraulics and Fluid Mechanics in ME
Metacentre is the point of intersection of

All of these
mid point between e.g. and center of buoyancy
buoyant force and the center line of body
vertical upward force through e.g. of body and center line of body

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