A crane lifts the 13000 kg steel hull of a ship out of the water. Part A Determine the tension in the crane's cable when the hull is submerged in the water. Express your answer using two significant figures. ? Fr = Submit Request Answer Part B Determine the tension when the hull is completely out of the water. Express vour answer using two significant figures.

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Chapter1: Units, Trigonometry. And Vectors
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Constants
A crane lifts the 13000 kg steel hull of a ship out of
the water.
Part A
▼
Determine the tension in the crane's cable when the hull is submerged in the water.
Express your answer using two significant figures.
?
Fr =
N
Submit
Request Answer
Part B
Determine the tension when the hull is completely out of the water.
Express your answer using two significant figures.
?
FT =
N
%3D
Submit
Request Answer
Provide Feedback
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P Pearson
Transcribed Image Text:Constants A crane lifts the 13000 kg steel hull of a ship out of the water. Part A ▼ Determine the tension in the crane's cable when the hull is submerged in the water. Express your answer using two significant figures. ? Fr = N Submit Request Answer Part B Determine the tension when the hull is completely out of the water. Express your answer using two significant figures. ? FT = N %3D Submit Request Answer Provide Feedback Next > P Pearson
Constants
An open-tube mercury manometer is used to
measure the pressure in an oxygen tank. The
atmospheric pressure is 1030 mbar .
1 bar = 10° N/m². The density of mercury is
13.6 x 10° kg/m³.
Part A
Determine the absolute pressure (in Pa) in the tank if the height of the mercury in the open tube is 19.5 cm higher than
the mercury in the tube connected to the tank.
Express your answer using three significant figures.
?
P =
Ра
Submit
Request Answer
Part B
Determine the absolute pressure (in Pa) in the tank if the height of the mercury in the open tube is 4.6 cm lower than the
mercury in the tube connected to the tank.
Express your answer using two significant figures.
Vo AEO
?
.....
Ра
%3D
Submit
Request Answer
P Pearson
Transcribed Image Text:Constants An open-tube mercury manometer is used to measure the pressure in an oxygen tank. The atmospheric pressure is 1030 mbar . 1 bar = 10° N/m². The density of mercury is 13.6 x 10° kg/m³. Part A Determine the absolute pressure (in Pa) in the tank if the height of the mercury in the open tube is 19.5 cm higher than the mercury in the tube connected to the tank. Express your answer using three significant figures. ? P = Ра Submit Request Answer Part B Determine the absolute pressure (in Pa) in the tank if the height of the mercury in the open tube is 4.6 cm lower than the mercury in the tube connected to the tank. Express your answer using two significant figures. Vo AEO ? ..... Ра %3D Submit Request Answer P Pearson
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