A solid cylinder (radius = 16.0 cm, height = 14.5 cm) has a mass of 9.91 kg. This cylinder is floating in water. Then oil (density = 725 kg/m3) is poured on top of the water until the situation shown in the drawing results. How much of the height of the cylinder is in the oil?

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A solid cylinder (radius = 16.0 cm, height = 14.5 cm) has a mass of 9.91 kg. This cylinder is floating in water. Then oil
(density = 725 kg/m3) is poured on top of the water until the situation shown in the drawing results. How much of the
height of the cylinder is in the oil?

The image depicts a cylindrical container with two immiscible liquids: oil and water. The oil, colored in a light orange hue, is the top layer, while the water, shaded in light blue, forms the bottom layer. This illustrates the concept of density differences between liquids, as oil, being less dense, floats above the denser water.

In the center of the container is a small, solid cylindrical object suspended at the interface between the oil and water layers. This indicates that the object's density is intermediate between that of oil and water, allowing it to float at the interface. This setup is commonly used to demonstrate principles of buoyancy and density.
Transcribed Image Text:The image depicts a cylindrical container with two immiscible liquids: oil and water. The oil, colored in a light orange hue, is the top layer, while the water, shaded in light blue, forms the bottom layer. This illustrates the concept of density differences between liquids, as oil, being less dense, floats above the denser water. In the center of the container is a small, solid cylindrical object suspended at the interface between the oil and water layers. This indicates that the object's density is intermediate between that of oil and water, allowing it to float at the interface. This setup is commonly used to demonstrate principles of buoyancy and density.
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