A child playing in a swimming pool realizes that it is easy to push a small inflated ball under the surface of the water whereas a large ball requires a lot of force. The child happens to have a styrofoam ball (the shape of the ball will not distort when it is forced under the surface), which he forces under the surface of the water. If the child needs to supply 608 N to totally submerge the ball, calculate the diameter d of the ball. The density of water is pw = 1.000 × 10³ kg/m³, the density of styrofoam is Pfoam = 95.0 kg/m³, and the acceleration due to gravity is g = 9.81 m/s². d = 0.24327 Incorrect m

College Physics
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Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter11: Fluid Statics
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Macmillan Learning
A child playing in a swimming pool realizes that it is easy to push a small inflated ball under the surface of the water whereas a
large ball requires a lot of force. The child happens to have a styrofoam ball (the shape of the ball will not distort when it is
forced under the surface), which he forces under the surface of the water. If the child needs to supply 608 N to totally submerge
the ball, calculate the diameter d of the ball. The density of water is pw = 1.000 × 10³ kg/m³, the density of styrofoam is
Pfoam = 95.0 kg/m³, and the acceleration due to gravity is g = 9.81 m/s².
d =
0.24327
Incorrect
m
Transcribed Image Text:Macmillan Learning A child playing in a swimming pool realizes that it is easy to push a small inflated ball under the surface of the water whereas a large ball requires a lot of force. The child happens to have a styrofoam ball (the shape of the ball will not distort when it is forced under the surface), which he forces under the surface of the water. If the child needs to supply 608 N to totally submerge the ball, calculate the diameter d of the ball. The density of water is pw = 1.000 × 10³ kg/m³, the density of styrofoam is Pfoam = 95.0 kg/m³, and the acceleration due to gravity is g = 9.81 m/s². d = 0.24327 Incorrect m
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