6.A cylindrical buoy 60 cm in diameter and 1.80 m high weighs 2810N. It is moored in salt water (s= 1.03) to a 12.0 m long chain weighing 117.70 N/m. At high tide, their is a protrusion of 84 cm of the top of the buoy surface. What would be the amount of the protrusion if the tide drops by 2.10 m. Specific weight of the chain is 76.42 KN/m^3. A. 90 cm B. 92 cm C. 94 cm D. 96 cm

Elements Of Electromagnetics
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6.A cylindrical buoy 60 cm in diameter and 1.80 m high weighs 2810N. It is moored in salt water (s=
1.03) to a 12.0 m long chain weighing 117.70 N/m. At high tide, their is a protrusion of 84 cm of the
top of the buoy surface. What would be the amount of the protrusion if the tide drops by 2.10 m.
Specific weight of the chain is 76.42 KN/m^3.
A. 90 cm
B. 92 cm C. 94 cm
D. 96 cm
Transcribed Image Text:6.A cylindrical buoy 60 cm in diameter and 1.80 m high weighs 2810N. It is moored in salt water (s= 1.03) to a 12.0 m long chain weighing 117.70 N/m. At high tide, their is a protrusion of 84 cm of the top of the buoy surface. What would be the amount of the protrusion if the tide drops by 2.10 m. Specific weight of the chain is 76.42 KN/m^3. A. 90 cm B. 92 cm C. 94 cm D. 96 cm
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