3-17 The water in a tank is pressurized by air, and the pressure is me asured by a multifluid manometer as shown in Fig. P3-17. Determine the gage pressure of air in the tank if h = 0.4 m, h = 0.6 m, and h, = 0.8 m. Take the densities of water, oil. and mercury to be 1000 kg/m, 850 kg/m, and 13,600 kg/m, respectively. Oil Air Water IT Mercury

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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3-17
The water in a tank is pressurized by air, and the
pressure is me asured by a multifluid manometer as shown in
Fig. P3-17. Determine the gage pressure of air in the tank if
h = 0.4 m, h = 0.6 m, and h, = 0.8 m. Take the densities
of water, oil. and mercury to be 1000 kg/m, 850 kg/m, and
13,600 kg/m, respectively.
Oil
Air
Water
IT
Mercury
Transcribed Image Text:3-17 The water in a tank is pressurized by air, and the pressure is me asured by a multifluid manometer as shown in Fig. P3-17. Determine the gage pressure of air in the tank if h = 0.4 m, h = 0.6 m, and h, = 0.8 m. Take the densities of water, oil. and mercury to be 1000 kg/m, 850 kg/m, and 13,600 kg/m, respectively. Oil Air Water IT Mercury
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