balance D and is submerged in a liquid C contained in beaker B. The mass of the beaker is 1.20 kgkg; the mass of the liquid is 1.70 kgkg. Balance D reads 3.40 kgkg and balance E reads 7.50 kgkg. The volume of block A is 4.05×10−3 m3m3. Figure 1 of 1 Part A What is the density of the liquid? Express your answer in kilograms per cubic meter. ρliquidρliquid = nothing kg/m3kg/m3 SubmitRequest Answer Part B What will the balance D read if block A is pulled up out of the liquid? Express your answer in kilogra
Fluid Pressure
The term fluid pressure is coined as, the measurement of the force per unit area of a given surface of a closed container. It is a branch of physics that helps to study the properties of fluid under various conditions of force.
Gauge Pressure
Pressure is the physical force acting per unit area on a body; the applied force is perpendicular to the surface of the object per unit area. The air around us at sea level exerts a pressure (atmospheric pressure) of about 14.7 psi but this doesn’t seem to bother anyone as the bodily fluids are constantly pushing outwards with the same force but if one swims down into the ocean a few feet below the surface one can notice the difference, there is increased pressure on the eardrum, this is due to an increase in hydrostatic pressure.
Block A in (Figure 1) hangs by a cord from spring balance D and is submerged in a liquid C contained in beaker B. The mass of the beaker is 1.20 kgkg; the mass of the liquid is 1.70 kgkg. Balance D reads 3.40 kgkg and balance E reads 7.50 kgkg. The volume of block A is 4.05×10−3 m3m3.
Figure
1 of 1
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Part AWhat is the density of the liquid?
Express your answer in kilograms per cubic meter.
SubmitRequest Answer
Part BWhat will the balance D read if block A is pulled up out of the liquid?
Express your answer in kilograms.
SubmitRequest Answer
Part CWhat will the balance E read if block A is pulled up out of the liquid?
Express your answer in kilograms.
SubmitRequest Answer
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