The figure belows shows a closed tank holding air and oil to which is connected a U-tube mercury manometer and a pressure gage, with L₁ = 2 ft, L₂=0.5 ft, and L3 = 1.25 ft. The densities of the oil and mercury are 55 and 845, respectively, each in lb/ft³. Let g = 32.2 ft/s².

Principles of Physics: A Calculus-Based Text
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Chapter15: Fluid Mechanics
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Problem 37P: A horizontal pipe 10.0 cm in diameter has a smooth reduction to a pipe 5.00 cm in diameter. If the...
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The figure belows shows a closed tank holding air and oil to which is connected a U-tube mercury manometer and a pressure gage,
with L₁ = 2 ft, L₂ = 0.5 ft, and L3 = 1.25 ft. The densities of the oil and mercury are 55 and 845, respectively, each in lb/ft³. Let g = 32.2
ft/s².
Pgage
i
Pressure
gage
lbf/in.²
34
Determine the reading of the pressure gage, in lbf/in.² (gage).
Air
Oil (p= 55 lb/ft³)
Patm
€
Mercury (p = 845 lb/ft³)
g= 32.2 ft/s²
Transcribed Image Text:The figure belows shows a closed tank holding air and oil to which is connected a U-tube mercury manometer and a pressure gage, with L₁ = 2 ft, L₂ = 0.5 ft, and L3 = 1.25 ft. The densities of the oil and mercury are 55 and 845, respectively, each in lb/ft³. Let g = 32.2 ft/s². Pgage i Pressure gage lbf/in.² 34 Determine the reading of the pressure gage, in lbf/in.² (gage). Air Oil (p= 55 lb/ft³) Patm € Mercury (p = 845 lb/ft³) g= 32.2 ft/s²
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