A cylindrical tank contains water at a height of 55 mm, as shown. Inside is a small open cylindrical tank containing cleaning fluid (SG=0.80) at a height h. The pressure PB=13.4 kPa gage and Pc = 13.42 kPa gage. Assume the cleaning fluid is prevented from moving to the top of the tank. Use unit weight of water = 9.79 kN/m^3. (a) Determine the pressure Pa in kPa

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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A cylindrical tank contains water at a
height of 55 mm, as shown. Inside is a
small open cylindrical tank containing
cleaning fluid (SG=0.80) at a height h.
The pressure PB=13.4 kPa gage and Pc
= 13.42 kPa gage. Assume the cleaning
%3D
fluid is prevented from moving to the top
of the tank. Use unit weight of water =
%3D
9.79 kN/m^3.
(a) Determine the pressure Pa in kPa
PA
Air
Water
55 mm
Kerosene
D
y
O P:
PB
Mercury
(s.g. = 13.6)
Transcribed Image Text:A cylindrical tank contains water at a height of 55 mm, as shown. Inside is a small open cylindrical tank containing cleaning fluid (SG=0.80) at a height h. The pressure PB=13.4 kPa gage and Pc = 13.42 kPa gage. Assume the cleaning %3D fluid is prevented from moving to the top of the tank. Use unit weight of water = %3D 9.79 kN/m^3. (a) Determine the pressure Pa in kPa PA Air Water 55 mm Kerosene D y O P: PB Mercury (s.g. = 13.6)
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