QUESTIONS AND PROBLEMS: 1. If 5.6 mm3 of oil weighs 46,800 N. Calculate its density and its specific gravity. 2. Determine the pressure at A in bar gage due to the deflection of the mercury (sp. gr. = 13.6) in the U-tube gage shown in the figure. %3D Water 0.3 m A 0.6 m Mercury 3. For a gage pressure at A of 11,000 Pa vacuum, find the specific gravity of the gage liquid Y in the figure. Air- Liquid X Sp. gr. 1.6 0.4 m 0.50 m 0.3 m Liquid Y

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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QUESTIONS AND PROBLEMS:
1. If 5.6 mm3 of oil weighs 46,800 N. Calculate its density and its specific gravity.
2. Determine the pressure at A in bar gage due to the deflection of the mercury (sp. gr. =
13.6) in the U-tube gage shown in the figure.
%3D
Water
0.3 m
A
0.6 m
Mercury
3. For a gage pressure at A of 11,000 Pa vacuum, find the specific gravity of the gage liquid
Y in the figure.
Air-
Liquid X
Sp. gr. 1.6
0.4 m
0.50 m
0.3 m
Liquid Y
4. a.) convert a pressure head of 15 m of water to meters of oil (sp. gr. =0.75).
b.) Convert a pressure head of 600 mm of mercury to meters of oil (sp. gr.= 0.75)
Transcribed Image Text:QUESTIONS AND PROBLEMS: 1. If 5.6 mm3 of oil weighs 46,800 N. Calculate its density and its specific gravity. 2. Determine the pressure at A in bar gage due to the deflection of the mercury (sp. gr. = 13.6) in the U-tube gage shown in the figure. %3D Water 0.3 m A 0.6 m Mercury 3. For a gage pressure at A of 11,000 Pa vacuum, find the specific gravity of the gage liquid Y in the figure. Air- Liquid X Sp. gr. 1.6 0.4 m 0.50 m 0.3 m Liquid Y 4. a.) convert a pressure head of 15 m of water to meters of oil (sp. gr. =0.75). b.) Convert a pressure head of 600 mm of mercury to meters of oil (sp. gr.= 0.75)
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