A tank containing helium has a manometer attached, as shown in the figure. The local atmospheric pressure, Po, is 101 kPa and the gravitational acceleration is 9.81 m/s. The heights of each fluid in the manometer are h,-360 mm, h2-450 mm and hy-550 mm. Assume the densities of the water (pw), light oil (pol), and mercury (p) in the system are equivalent to those at standard atmospheric conditions. Determine the pressure of the helium in the tank, PHe, in kPa. P. Light Oil, Pol Helium Water, P

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Problem 1.1MA
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A tank containing helium has a manometer attached, as shown in the figure. The local atmospheric
pressure, P. is 101 kPa and the gravitational acceleration is 9.81 m/s. The heights of each fluid
in the manometer are h,-360 mm, h -450 mm and hs550 mm. Assume the densities of the
water (pw), light oil (pw), and mercury (p) in the system are equivalent to those at standard
tmospheric conditions. Determine the pressure of the helium in the tank, PHe, in kPa.
P.
Light Oil. P
Helium
5.
Water. P.
Transcribed Image Text:A tank containing helium has a manometer attached, as shown in the figure. The local atmospheric pressure, P. is 101 kPa and the gravitational acceleration is 9.81 m/s. The heights of each fluid in the manometer are h,-360 mm, h -450 mm and hs550 mm. Assume the densities of the water (pw), light oil (pw), and mercury (p) in the system are equivalent to those at standard tmospheric conditions. Determine the pressure of the helium in the tank, PHe, in kPa. P. Light Oil. P Helium 5. Water. P.
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