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Mercury is added to a cylindrical container to a depth d and then the rest of the cylinder is filled with water. If the
Mercury is added to a cylindrical container to a depth d and then the rest of the cylinder is filled with water. If the cylinder is 0.4 m tall and the absolute (or total) pressure at the bottom is 1.3 atmospheres, determine the depth of the mercury. (Assume the density of mercury to be 1.36 x 104 kg/m, and the ambient atmospheric pressure to be 1.013e5 Pa) 1.081 See if you can write an expression that shows how the pressure due to a column of two fluids depends on the weight of the fluids in the column and the cross-sectional area of the column. How is the pressure at the bottom of the container related to the pressure due to the weight of the fluids and atmospheric pressure? m
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