The figure shows a closed tank that contains gasoline floating on water. Calculate the air pressure (gauge) above the gasoline, to the nearest 100th, given the following: h1 = 0.50 m h2 = 1.40 m h3 = 830 mm h4 = 405 mm Air Gasoline h4 (sg 0.68) Water h3 hl h2 Mercury (sg 13.54)

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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Please do these two questions Thanks
The figure shows a closed tank that contains gasoline floating on water. Calculate
the air pressure (gauge) above the gasoline, to the nearest 100th, given the
following:
h1 = 0.50 m
h2 = 1.40 m
h3 = 830 mm
h4 = 405 mm
Air
Gasoline
h4
(sg 0.68)
Water
h3
h1
h2
Mercury
(sg 13.54)
Transcribed Image Text:The figure shows a closed tank that contains gasoline floating on water. Calculate the air pressure (gauge) above the gasoline, to the nearest 100th, given the following: h1 = 0.50 m h2 = 1.40 m h3 = 830 mm h4 = 405 mm Air Gasoline h4 (sg 0.68) Water h3 h1 h2 Mercury (sg 13.54)
The figure shows a clothes washing machine. The pump draws fluid from the tub and
delivers it to the disposal sink. The soapy water solution has a specific gravity of 1.13
and the water level of the tub has a height of 310 mm.
Compute the absolute pressure at the inlet to the pump when the water is static and
the atmospheric pressure is 100.0 kPa, to the nearest 100th.
Tub
Sink
Height
Transcribed Image Text:The figure shows a clothes washing machine. The pump draws fluid from the tub and delivers it to the disposal sink. The soapy water solution has a specific gravity of 1.13 and the water level of the tub has a height of 310 mm. Compute the absolute pressure at the inlet to the pump when the water is static and the atmospheric pressure is 100.0 kPa, to the nearest 100th. Tub Sink Height
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