In a cylinder-piston arrangement shown (D1 = 100 hm), the piston is moving downwards at V, = 0.5 %3D m/s, and as it does, the water flows outward through he side orifice (D2 10 mm) of the cylinder to fill the ank (D3 50 mm) state below it. Determine the rate t which the depth z of the water in the down tank is hanging.
In a cylinder-piston arrangement shown (D1 = 100 hm), the piston is moving downwards at V, = 0.5 %3D m/s, and as it does, the water flows outward through he side orifice (D2 10 mm) of the cylinder to fill the ank (D3 50 mm) state below it. Determine the rate t which the depth z of the water in the down tank is hanging.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Q1) In a cylinder-piston arrangement shown (D1
mm), the piston is moving downwards at Vp = 0.5
mm/s, and as it does, the water flows outward through
the side orifice (D2 = 10 mm) of the cylinder to fill the
tank (D3 = 50 mm) state below it. Determine the rate
= 100
%3D
at which the depth z of the water in the down tank is
changing.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7d9f3546-ddaf-40a9-99b4-d06ba80b0188%2Fd3829397-2935-48e3-bf94-bc22c2182ea7%2F6fqv126_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q1) In a cylinder-piston arrangement shown (D1
mm), the piston is moving downwards at Vp = 0.5
mm/s, and as it does, the water flows outward through
the side orifice (D2 = 10 mm) of the cylinder to fill the
tank (D3 = 50 mm) state below it. Determine the rate
= 100
%3D
at which the depth z of the water in the down tank is
changing.
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