The U-tube manometer in Figure 1 is open to the atmosphere. It is connected to a tank. There are 4 fluids inside the tank and manometer. Derive a formula to get the gage pressure in A. Draw your diagram with labels. Assume different specific gravities for the fluids and different heights of the fluid column. All interfaces are not of the same height or level. FLUID 2 FLUID 2 FLUID 4 (A) FLUID 3 FLUID 1 Figure 1 Set A. Illustration for Problem 3. All fluids are of different specific gravities.

Structural Analysis
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Chapter2: Loads On Structures
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The U-tube manometer in Figure 1 is open to the atmosphere. It is connected to a tank. There are 4
fluids inside the tank and manometer. Derive a formula to get the gage pressure in A. Draw your
diagram with labels. Assume different specific gravities for the fluids and different heights of the
fluid column. All interfaces are not of the same height or level.
FLUID 2
FLUID 2
FLUID 4
A)
FLUID 3
FLUID 1
Figure 1 Set A. Illustration for Problem 3. All fluids are of different specific gravities.
Transcribed Image Text:The U-tube manometer in Figure 1 is open to the atmosphere. It is connected to a tank. There are 4 fluids inside the tank and manometer. Derive a formula to get the gage pressure in A. Draw your diagram with labels. Assume different specific gravities for the fluids and different heights of the fluid column. All interfaces are not of the same height or level. FLUID 2 FLUID 2 FLUID 4 A) FLUID 3 FLUID 1 Figure 1 Set A. Illustration for Problem 3. All fluids are of different specific gravities.
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