A multifluid container is connected to a U-tube. as shout in Fig. P3-55. For the given specific gravities and fluid column heights, determine the gage pressure at A. Also determine the height of a mercury column that would create the same pressure at A.

The gage pressure at
The height of mercury column that creates the same pressure.
Answer to Problem 55P
The gage pressure at point
Explanation of Solution
Given information:
The following figure shows the arrangement of multifluid container connected to a U-tube manometer.
Figure-(1)
Write the expression for the density of oil using specific gravity.
Here, the density of oil is
Write the expression for the density of glycerin using specific gravity.
Here, the density of glycerin is
Write the expression for gage pressure at
Here, gage pressure is
Write the expression for height of mercury column that creates the same pressure at A
Here, height of mercury column is
Calculation:
Substitute
Substitute
Substitute
Substitute
Conclusion:
The gage pressure at point
Want to see more full solutions like this?
Chapter 3 Solutions
FLUID MECHANICS FUND. (LL)-W/ACCESS
- Please do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forwardPlease do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forwardCE-112 please solve this problem step by step and give me the correct answerarrow_forward
- CE-112 please solve this problem step by step and give me the correct asnwerarrow_forwardthis is an old practice exam, the answer is Ax = -4, Ay = -12,Az = 32.5, Bx= 34, Bz = 5, By = 0 but how?arrow_forwardThis is an old practice exam, the answer is Ax = Az = 0, Ay = 2000, TDE = 4750, Cx = 2000, Cy = 2000, Cz = -800 but how?arrow_forward
- this is an old practice exam, the answer is Fmin = 290.5lb but howarrow_forwardThis is an exam review question. The answer is Pmin = 622.9 lb but whyarrow_forwardPlease do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forward
- Please do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forwardPlease do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forwardThis is an old practice exam. Fce = 110lb and FBCD = 62 lb but whyarrow_forward
- International Edition---engineering Mechanics: St...Mechanical EngineeringISBN:9781305501607Author:Andrew Pytel And Jaan KiusalaasPublisher:CENGAGE LPrinciples of Heat Transfer (Activate Learning wi...Mechanical EngineeringISBN:9781305387102Author:Kreith, Frank; Manglik, Raj M.Publisher:Cengage LearningRefrigeration and Air Conditioning Technology (Mi...Mechanical EngineeringISBN:9781305578296Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill JohnsonPublisher:Cengage Learning


