In Figure below if a metlic cube of a 12 inch side length weighing 46 kg, floats at a two layer fluids mercury and sea water. Determine the position of the block at mercury- water interface when it has reached equilibrium. (mass density of sea water = 63.92623 Ib/ft) and for mercury = 845 lb/ft'). Sea water 12 in, Menury

Engineering Fundamentals: An Introduction to Engineering (MindTap Course List)
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Author:Saeed Moaveni
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Chapter13: Energy And Power
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HOME WORK1:
In Figure below if a metlic cube of a 12 inch side length weighing 46 kg, floats at a two
layer fluids mercury and sea water. Determine the position of the block at mercury-
water interface when it has reached equilibrium. (mass density of sea water = 63.92623
Ib/ft) and for mercury = 845 Ib/ft').
Sea water RP
12
Cube
Mercury
II
>
Transcribed Image Text:photo_2021-02-15_.. HOME WORK1: In Figure below if a metlic cube of a 12 inch side length weighing 46 kg, floats at a two layer fluids mercury and sea water. Determine the position of the block at mercury- water interface when it has reached equilibrium. (mass density of sea water = 63.92623 Ib/ft) and for mercury = 845 Ib/ft'). Sea water RP 12 Cube Mercury II >
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