A U-tube manometer shown in Figure Q2(b) contains two different liquids at equilibrium. One of the liquid is water with a density of 998 kg/m3 in the right arm. The other liquid is oil in the left arm. The heights of the columns are l = 50 mm and d = 15 mm. Determine the density of the oil

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Chapter9: Fluids And Solids
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A U-tube manometer shown in Figure Q2(b) contains two different
liquids at equilibrium. One of the liquid is water with a density of
998 kg/m3
in the right arm. The other liquid is oil in the left arm. The
heights of the columns are l = 50 mm and d = 15 mm. Determine
the density of the oil.

(b) A U-tube manometer shown in Figure Q2(b) contains two different
liquids at equilibrium. One of the liquid is water with a density of
998 kg/m3 in the right arm. The other liquid is oil in the left arm. The
heights of the columns are 1 = 50 mm and d = 15 mm. Determine
the density of the oil.
d= 15 ma
Oil
= 50 m
Interface
Water
Transcribed Image Text:(b) A U-tube manometer shown in Figure Q2(b) contains two different liquids at equilibrium. One of the liquid is water with a density of 998 kg/m3 in the right arm. The other liquid is oil in the left arm. The heights of the columns are 1 = 50 mm and d = 15 mm. Determine the density of the oil. d= 15 ma Oil = 50 m Interface Water
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