1. A barge can be thought of as a 40.0 m x 10.0 m x 3.00 m rectangular box. 25% of the barge's volume is submerged before 1,400 kg pickup trucks are added to the barge. If too many trucks are added, the barge will sink to the bottom of the 60.0 m deep river. The density of the river water is 1,030 kg/m'. a. Find the mass of the barge. b. Find the number of trucks that can be added before the barge is fully submerged. c. Find the pressure on the top of the barge if it has sunk to the bottom of the river.

College Physics
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ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
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Chapter11: Fluid Statics
Section: Chapter Questions
Problem 46PE: (a) What is the density of a woman who floats in freshwater with 4.00% of her volume above the...
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1. A barge can be thought of as a 40.0 m x 10.0 m x 3.00 m rectangular box. 25% of the
barge's volume is submerged before 1,400 kg pickup trucks are added to the barge. If too
many trucks are added, the barge will sink to the bottom of the 60.0 m deep river. The
density of the river water is 1,030 kg/m³.
a. Find the mass of the barge.
b. Find the number of trucks that can be added before the barge is fully submerged.
c. Find the pressure on the top of the barge if it has sunk to the bottom of the river.
Transcribed Image Text:1. A barge can be thought of as a 40.0 m x 10.0 m x 3.00 m rectangular box. 25% of the barge's volume is submerged before 1,400 kg pickup trucks are added to the barge. If too many trucks are added, the barge will sink to the bottom of the 60.0 m deep river. The density of the river water is 1,030 kg/m³. a. Find the mass of the barge. b. Find the number of trucks that can be added before the barge is fully submerged. c. Find the pressure on the top of the barge if it has sunk to the bottom of the river.
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