5. In a U-tube mercury manometer, one end is exposed to the atmosphere and the other end is connected to a pressurized gas. The gauge pressure of the gas is found to be 40 kPa. Now, we change the manometric fluid to water. The height difference changes by: (pmercury = 13600 kg/m³, pwater = 1000 kg/m³). a) 1260% b) 92.64 % c) Remains unchanged (0%) d) 13.6%
5. In a U-tube mercury manometer, one end is exposed to the atmosphere and the other end is connected to a pressurized gas. The gauge pressure of the gas is found to be 40 kPa. Now, we change the manometric fluid to water. The height difference changes by: (pmercury = 13600 kg/m³, pwater = 1000 kg/m³). a) 1260% b) 92.64 % c) Remains unchanged (0%) d) 13.6%
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![5. In a U-tube mercury manometer, one end
is exposed to the atmosphere and the other
end is connected to a pressurized gas. The
gauge pressure of the gas is found to be 40
kPa. Now, we change the manometric fluid to
water. The height difference changes by:
(pmercury = 13600 kg/m³, pwater = 1000
kg/m³).
%3D
a) 1260%
b) 92.64 %
c) Remains unchanged (0%)
d) 13.6%](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0b4078ea-59a4-443e-b7c4-222e885c5543%2F8e6e1229-089b-425c-a199-1df2349d3b58%2Fxd6919e_processed.jpeg&w=3840&q=75)
Transcribed Image Text:5. In a U-tube mercury manometer, one end
is exposed to the atmosphere and the other
end is connected to a pressurized gas. The
gauge pressure of the gas is found to be 40
kPa. Now, we change the manometric fluid to
water. The height difference changes by:
(pmercury = 13600 kg/m³, pwater = 1000
kg/m³).
%3D
a) 1260%
b) 92.64 %
c) Remains unchanged (0%)
d) 13.6%
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