A beach ball filled with air is pushed about 1 m below the surface of a swimming pool and released from rest. Which of the following statements are valid, assuming the size of the ball remains the same? (Choose all correct statements.) (a) As the ball rises in the pool, the buoyant force on it increases. (b) When the ball is released, the buoyant force exceeds the gravitational force, and the ball accelerates upward. (c) The buoyant force on the ball decreases as the ball approaches the surface of the pool. (d) The buoyant force on the ball equals its weight and remains constant as the ball rises. (e) The buoyant force on the ball while it is submerged is approximately equal to the weight of a volume of water that could fill the ball.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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A beach ball filled with air is pushed about 1 m below the surface of a
swimming pool and released from rest. Which of the following
statements are valid, assuming the size of the ball remains the same?
(Choose all correct statements.) (a) As the ball rises in the pool, the
buoyant force on it increases. (b) When the ball is released, the buoyant
force exceeds the gravitational force, and the ball accelerates upward.
(c) The buoyant force on the ball decreases as the ball approaches the
surface of the pool. (d) The buoyant force on the ball equals its weight
and remains constant as the ball rises. (e) The buoyant force on the ball
while it is submerged is approximately equal to the weight of a volume
of water that could fill the ball.
Transcribed Image Text:A beach ball filled with air is pushed about 1 m below the surface of a swimming pool and released from rest. Which of the following statements are valid, assuming the size of the ball remains the same? (Choose all correct statements.) (a) As the ball rises in the pool, the buoyant force on it increases. (b) When the ball is released, the buoyant force exceeds the gravitational force, and the ball accelerates upward. (c) The buoyant force on the ball decreases as the ball approaches the surface of the pool. (d) The buoyant force on the ball equals its weight and remains constant as the ball rises. (e) The buoyant force on the ball while it is submerged is approximately equal to the weight of a volume of water that could fill the ball.
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