Once the toilet is flushed the tank must fill back up. The toilet tank has a volume of 0.032 m3 and water pours into the tank at a rate of 0.00059 m³/s and a velocity of 1.7m/s. Calculate the time required for the tank to refill. If the toilet is supplied with water from a large reservoir. Assuming there is no friction in the pipes supplying the water, how high is the surface of the reservoir above the toilet tank. *Note* You may assume atmospheric pressure acts on the surface of the reservoir as well as the water as it enters the toilet. m

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Once the toilet is flushed the tank must fill back up. The toilet tank has a volume of 0.032 m³ and water pours into the tank at a rate of
0.00059 m³/s and a velocity of 1.7m/s. Calculate the time required for the tank to refill.
S
If the toilet is supplied with water from a large reservoir. Assuming there is no friction in the pipes supplying the water, how high is the
surface of the reservoir above the toilet tank. *Note* You may assume atmospheric pressure acts on the surface of the reservoir as well
as the water as it enters the toilet.
Transcribed Image Text:Once the toilet is flushed the tank must fill back up. The toilet tank has a volume of 0.032 m³ and water pours into the tank at a rate of 0.00059 m³/s and a velocity of 1.7m/s. Calculate the time required for the tank to refill. S If the toilet is supplied with water from a large reservoir. Assuming there is no friction in the pipes supplying the water, how high is the surface of the reservoir above the toilet tank. *Note* You may assume atmospheric pressure acts on the surface of the reservoir as well as the water as it enters the toilet.
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