You come across an open container that is filled with two liquids. The two liquids have different densities, so there is a distinct separation between them. Water, which has a density of pw = 1.00 × 103 kg/m³, fills the lower portion of the container to a depth of 0.209 m. The fluid that is floating on top of the water is 0.300 m deep. The acceleration due to gravity is g = 9.81 m/s² and atmospheric pressure is Po = 1.013 × 105 Pa. If the absolute pressure on the bottom of the container is 1.049 × 105 Pa, what is the density p₁ of the unknown liquid? P₁ = kg/m³

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You come across an open container that is filled with two liquids. The two liquids have different densities, so there is a distinct
separation between them. Water, which has a density of pw = 1.00 × 103 kg/m³, fills the lower portion of the container to a
depth of 0.209 m. The fluid that is floating on top of the water is 0.300 m deep.
The acceleration due to gravity is g = 9.81 m/s² and atmospheric pressure is Po = 1.013 × 105 Pa.
If the absolute pressure on the bottom of the container is
1.049 × 105 Pa, what is the density p₁ of the unknown liquid?
P₁ =
kg/m³
Transcribed Image Text:You come across an open container that is filled with two liquids. The two liquids have different densities, so there is a distinct separation between them. Water, which has a density of pw = 1.00 × 103 kg/m³, fills the lower portion of the container to a depth of 0.209 m. The fluid that is floating on top of the water is 0.300 m deep. The acceleration due to gravity is g = 9.81 m/s² and atmospheric pressure is Po = 1.013 × 105 Pa. If the absolute pressure on the bottom of the container is 1.049 × 105 Pa, what is the density p₁ of the unknown liquid? P₁ = kg/m³
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