A tank contains three different fluids, a manometer is attached to a tank at the lower side. The weight density of water at that pressure condition is 9.79 kN/m³. Weight density of mercury is 13.6 kN/m³. 3m off. 2m ZEE Im AIR PRESSURE 30 kPq OIL (S6=0.82) WATER ป Calculate the pressure at the oil and water interface a. 24 m c. 131 m b. 54 m d. 128 m -MERCURY (S6= 13.6) Calculate the pressure at water and mercury interface a. 19.6 m b. 29.37 m Calculate the pressure rise y of the mercury. a. 4.9 kPa b. 0.712 psi c. 83.37 m d. 9.79 m c. 0.627 m d. All of the above

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Fluid Mechanics! ty!!!!
A tank contains three different fluids, a manometer is attached to a tank at the lower
side. The weight density of water at that pressure condition is 9.79 kN/m³. Weight
density of mercury is 13.6 kN/m³.
3m
off.
2m
ZEE
Im
AIR PRESSURE 30 kPq
OIL (S6=0.82)
WATER
ป
Calculate the pressure at the oil and water interface
a. 24 m
c.
131 m
b. 54 m
d. 128 m
-MERCURY (S6= 13.6)
Calculate the pressure at water and mercury interface
a. 19.6 m
b. 29.37 m
Calculate the pressure rise y of the mercury.
a. 4.9 kPa
b. 0.712 psi
c. 83.37 m
d.
9.79 m
c.
0.627 m
d. All of the above
Transcribed Image Text:A tank contains three different fluids, a manometer is attached to a tank at the lower side. The weight density of water at that pressure condition is 9.79 kN/m³. Weight density of mercury is 13.6 kN/m³. 3m off. 2m ZEE Im AIR PRESSURE 30 kPq OIL (S6=0.82) WATER ป Calculate the pressure at the oil and water interface a. 24 m c. 131 m b. 54 m d. 128 m -MERCURY (S6= 13.6) Calculate the pressure at water and mercury interface a. 19.6 m b. 29.37 m Calculate the pressure rise y of the mercury. a. 4.9 kPa b. 0.712 psi c. 83.37 m d. 9.79 m c. 0.627 m d. All of the above
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