A bathy sphere is a spherical steel vessel for use in undersea observation and suspended by a cable from a boat. In this situation, it is supported by a cylindrical tank as shown. The weight of the bathy sphere is 6800 kgs when empty and has a diameter of 1.8m. The cylindrical tank is 3m in diameter, 6 m long, with a mass of 4500 kgs (when empty) and is filled with oil of specific gravity 0.70. a.) Determine the additional load (in kilograms) that can be supported by the bathy sphere so that so that the cylinder is fully submerged as shown. Assume density of sea water as 1024 kg/m^3. Neglect metal thickness and cable support. Cylindrical Tank 3-m diameter 6m-long seawater p = 1024 kg/m Bathy sphere 1.8m diameter
A bathy sphere is a spherical steel vessel for use in undersea observation and suspended by a cable from a boat. In this situation, it is supported by a cylindrical tank as shown. The weight of the bathy sphere is 6800 kgs when empty and has a diameter of 1.8m. The cylindrical tank is 3m in diameter, 6 m long, with a mass of 4500 kgs (when empty) and is filled with oil of specific gravity 0.70. a.) Determine the additional load (in kilograms) that can be supported by the bathy sphere so that so that the cylinder is fully submerged as shown. Assume density of sea water as 1024 kg/m^3. Neglect metal thickness and cable support. Cylindrical Tank 3-m diameter 6m-long seawater p = 1024 kg/m Bathy sphere 1.8m diameter
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A bathy sphere is a spherical steel vessel for use in undersea observation and suspended by a cable from a boat. In this situation, it is supported by a cylindrical tank as shown. The weight of the bathy sphere is 6800 kgs when empty and has a diameter of 1.8m. The cylindrical tank is 3m in diameter, 6 m long, with a mass of 4500 kgs (when empty) and is filled with oil of specific gravity 0.70.
a.) Determine the additional load (in kilograms) that can be supported by the bathy sphere so that so that the cylinder is fully submerged as shown. . Assume density of sea water as 1024 kg/m^3. Neglect metal thickness and cable support.

Transcribed Image Text:Cylindrical Tank
3-m diameter
6m-long
seawater
p = 1024 kg/m
Bathy sphere
1.8m diameter

Transcribed Image Text:A bathy sphere is a spherical steel vessel for use in undersea observation and suspended by a cable from
a boat. In this situation, it is supported by a cylindrical tank as shown. The weight of the bathy sphere is
6800 kgs when empty and has a diameter of 1.8m. The cylindrical tank is 3m in diameter, 6 m long, with a
mass of 4500 kgs (when empty) and is filled with oil of specific gravity 0.70.
a.) Determine the additional load (in kilograms) that can be supported by the bathy sphere so that so that
the cylinder is fully submerged as shown. Assume density of sea water as 1024 kg/m^3. Neglect metal
thickness and cable support.
Cylindrical Tank
3-m diameter
6m-long
seawater
p = 1024 kg/m
Bathy sphere
1.8m diameter
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