A solid cylindrical buoy is made up of pine (Sg = 0.5) and lead (Sg = 11.3) weights attached as shown in the diagram below. Determine the depth of immersion (m) of the buoy in seawater (Sg = 1.03). Show all necessary calculations, steps, and state whether the buoy is stable. Where: Sg denotes Specific gravity D = 0.61m Y = Spec. weight of fresh water x' Pine 4.88m d Lead 0.15m x' 64 Activa Go to Se
A solid cylindrical buoy is made up of pine (Sg = 0.5) and lead (Sg = 11.3) weights attached as shown in the diagram below. Determine the depth of immersion (m) of the buoy in seawater (Sg = 1.03). Show all necessary calculations, steps, and state whether the buoy is stable. Where: Sg denotes Specific gravity D = 0.61m Y = Spec. weight of fresh water x' Pine 4.88m d Lead 0.15m x' 64 Activa Go to Se
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A solid cylindrical buoy is made up of pine (Sg = 0.5) and lead (Sg = 11.3) weights attached as
shown in the diagram below. Determine the depth of immersion (m) of the buoy in seawater
(Sg = 1.03). Show all necessary calculations, steps, and state whether the buoy is stable.
Where: Sg denotes Specific gravity
![A solid cylindrical buoy is made up of pine (Sg = 0.5) and lead (Sg = 11.3) weights attached as
shown in the diagram below. Determine the depth of immersion (m) of the buoy in seawater
(Sg = 1.03). Show all necessary calculations, steps, and state whether the buoy is stable.
Where: Sg denotes Specific gravity
D = 0.61m
Y = Spec. weight of
fresh water
x'
Pine
4.88m
d
Lead
0.15m
x'
-
%3D
64
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Transcribed Image Text:A solid cylindrical buoy is made up of pine (Sg = 0.5) and lead (Sg = 11.3) weights attached as
shown in the diagram below. Determine the depth of immersion (m) of the buoy in seawater
(Sg = 1.03). Show all necessary calculations, steps, and state whether the buoy is stable.
Where: Sg denotes Specific gravity
D = 0.61m
Y = Spec. weight of
fresh water
x'
Pine
4.88m
d
Lead
0.15m
x'
-
%3D
64
Activate Windows
Go to Settings to activate Windows.
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