Use g = 9.81m/s2 and specific weight of water 9.81kN/m3. A solid %3D cylindrical pine (SG=0.5) spar buoy has a cylindrical lead (SG=11.3) weight attached as shown. Determine the following: D = 0.61m %3D Y = Spec. weight of fresh water X x' Pine 4.88m Lead 0.15m x' R D' 64 draft of the buoy in seawater (SG = 1.03) in m; location of the centroid of the buoy (G) from the bottom of the buoy in m; and the metacentric height in m.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Use g = 9.81m/s² and specific weight of water 9.81kN/m3. A solid
cylindrical pine (SG=0.5) spar buoy has a cylindrical lead (SG=11.3)
weight attached as shown. Determine the following:
%3D
D = 0.61m
%3D
Y = Spec. weight of
fresh water
X
x'
Pine
4.88m
d
Lead
0.15m
x'
T D'
64
draft of the buoy in seawater (SG = 1.03) in m;
%3D
location of the centroid of the buoy (G) from the
bottom of the buoy in m; and
the metacentric height in m.
Transcribed Image Text:Use g = 9.81m/s² and specific weight of water 9.81kN/m3. A solid cylindrical pine (SG=0.5) spar buoy has a cylindrical lead (SG=11.3) weight attached as shown. Determine the following: %3D D = 0.61m %3D Y = Spec. weight of fresh water X x' Pine 4.88m d Lead 0.15m x' T D' 64 draft of the buoy in seawater (SG = 1.03) in m; %3D location of the centroid of the buoy (G) from the bottom of the buoy in m; and the metacentric height in m.
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