A float to be used as a level indicator is being designed to float in oil, which has a specific gravity of 0.90. It is to be a cube 100 mm on a side, and is to have 75 mm submerged in the oil. Calculate the required specific weight of the float material.
A float to be used as a level indicator is being designed to float in oil, which has a specific gravity of 0.90. It is to be a cube 100 mm on a side, and is to have 75 mm submerged in the oil. Calculate the required specific weight of the float material.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
A float to be used as a level indicator is being designed to float in oil, which has a specific gravity of 0.90. It is to be a cube 100 mm on a side, and is to have 75 mm submerged in the oil. Calculate the required specific weight of the float material.

Transcribed Image Text:450 mm
Water surface
ht of 23.6 kN/m, will the two
ak in water?
pige has an outside diamcter
ngth of the pipe weighs 277 N.
sink in glycerin (ag=126) if its
Q. Search
10-in diameter and is 12 in lone
D
CHAPTER FIVE Buoyancy and
600 mm
.
*******
******
300-
FR
Cable
Sea bottom
of 1.15. What is the volume of the concrete b
tension in the rope is 2.67 kN?
5. Figure 5.19 shows a pump partially submerg
(ag = 0.90) and supported by springs. If t
weight of the pump is 14.6 lb and the submergec
springs.
is 40 in calculate the suppozung force exerted
el
30
we 100 on a side weighs 80 N. We v
●
14
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