A 0.180 kg cube of ice (frozen water) is floating in glycerin. The gylcerin is in a tall cylinder that has inside radius 3.50 cm. The level of the glycerin is well below the top of the cylinder. If the ice completely melts, by what distance does the height of liquid in the cylinder change? Does the level of liquid rise or fall? That is, is the surface of the water above or below the original level of the glycerin before the ice melted?
A 0.180 kg cube of ice (frozen water) is floating in glycerin. The gylcerin is in a tall cylinder that has inside radius 3.50 cm. The level of the glycerin is well below the top of the cylinder. If the ice completely melts, by what distance does the height of liquid in the cylinder change? Does the level of liquid rise or fall? That is, is the surface of the water above or below the original level of the glycerin before the ice melted?
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A 0.180 kg cube of ice (frozen water) is floating in glycerin.
The gylcerin is in a tall cylinder that has inside radius 3.50 cm. The
level of the glycerin is well below the top of the cylinder. If the ice completely
melts, by what distance does the height of liquid in the cylinder
change? Does the level of liquid rise or fall? That is, is the surface of
the water above or below the original level of the glycerin before the
ice melted?
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