Consider a double-fluid manometer attached to an air pipe shown in the figure. If the specific gravity of one fluid is 13.15, determine the specific gravity of the other fluid for the indicated absolute pressure of air. Take the atmospheric pressure to be 100 kPa and the density of water to be 1000 kg/m³. Air P= 76 kPa SG₁ 33 cm 22 cm SG₂ The specific gravity of the second fluid is
Consider a double-fluid manometer attached to an air pipe shown in the figure. If the specific gravity of one fluid is 13.15, determine the specific gravity of the other fluid for the indicated absolute pressure of air. Take the atmospheric pressure to be 100 kPa and the density of water to be 1000 kg/m³. Air P= 76 kPa SG₁ 33 cm 22 cm SG₂ The specific gravity of the second fluid is
Chapter2: Loads On Structures
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![Consider a double-fluid manometer attached to an air pipe shown in the figure. If the specific gravity of one fluid is 13.15, determine
the specific gravity of the other fluid for the indicated absolute pressure of air. Take the atmospheric pressure to be 100 kPa and the
density of water to be 1000 kg/m³.
Air
P= 76 kPa
SG₁
33 cm
22 cm
SG₂
The specific gravity of the second fluid is](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbf732265-f2a1-4437-b173-f035baf12249%2F2c3f4dc8-94c6-4c91-a390-031d181007e4%2Fk5v45k_processed.png&w=3840&q=75)
Transcribed Image Text:Consider a double-fluid manometer attached to an air pipe shown in the figure. If the specific gravity of one fluid is 13.15, determine
the specific gravity of the other fluid for the indicated absolute pressure of air. Take the atmospheric pressure to be 100 kPa and the
density of water to be 1000 kg/m³.
Air
P= 76 kPa
SG₁
33 cm
22 cm
SG₂
The specific gravity of the second fluid is
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