6. In the figure below, the ball has a mass of 2.00 kg and radius 0.250 m. The ball is filled with ethanol (density = 810 kg/m³) and floats. An aluminum weight (density = 2700 kg/m®) is attached to the bottom of the ball such that one- eighth of the ball is exposed when placed in a container of water (density = 1000 kg/m®). Determine the mass of the aluminum weight. ethanol water aluminum

College Physics
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ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
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Chapter11: Fluid Statics
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Problem 41PE: A rock with a mass of 540 g in air is found to have an apparent mass of 342 g when submerged in...
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6. In the figure below, the ball has a mass of 2.00 kg and radius 0.250 m. The ball
is filled with ethanol (density = 810 kg/m³) and floats. An aluminum weight
(density = 2700 kg/m³) is attached to the bottom of the ball such that one-
eighth of the ball is exposed when placed in a container of water
(density = 1000 kg/m®). Determine the mass of the aluminum weight.
ethanol
water
aluminum
Transcribed Image Text:6. In the figure below, the ball has a mass of 2.00 kg and radius 0.250 m. The ball is filled with ethanol (density = 810 kg/m³) and floats. An aluminum weight (density = 2700 kg/m³) is attached to the bottom of the ball such that one- eighth of the ball is exposed when placed in a container of water (density = 1000 kg/m®). Determine the mass of the aluminum weight. ethanol water aluminum
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