aute. lect the most suitable complement among listed options fluids are compressi viscous (b) possess surface tension (c) mess all the above properties (e) possess none
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- A cylindrical container is 185mm in diameter and weighs 3.55N when empty. When filled to a depth of 250 mm with acertain oil, it weighs 55.4 N. Calculate the specific gravity ofthe oil.A tank is holding 6 gasses. The gasses exert the following partial pressures: 3.4atm, 3.3 atm, 3.9 atm, 7.4atm, 3.7 atm, and 3.1 atm, determine the Total Pressure in the tank.Oil having a kinematic viscosity of 6.8 x 10-6 m2 /s flows through a pipeline with a discharge rate of 9 LPS. Determine the diameter of the pipe assuming Re = 2000.
- An illegal connection was observed on a 300 mm diameter horizontal pipe. Upstream from the connection two gages 600 m apart showed a pres- sure difference of 140 kPa. Downstream from the connection two gages 600 m apart showed a pressure difference of 116 kPa. How much oil (assume logical Gs, four decimal places) is being stolen due to the illegal connection? Assume loss of head ranging from 40% - 50 % of velocity head for every 50 m. (PLEASE INCLUDE FIGURES PLEASE)HYDRAULICS LABORATORY EXPERIMENT NO. 3 1. Define the coefficients used in connection with the flow through orifices. Explain why these coefficients are necessary. 2. What are the relative advantages of using a Venturi meter to measure flow compared with an orifice meter?A 2-ft diameter column packed with l-teu ceramic Raschig rings was operated with air and water and found to flood at an airflow rate of 356 cfm. Air entered the column at 80 °F and 1.0 atm, and the column operated at these same conditions. What was the flow rate of liquid to the column, in gallons per minute?
- A fluid will be tested for viscosity using a Couette Viscometer. If the fluidfollowing the Ostwald de Waele model with a value of n>1, determine the velocity distributionwhat happened to the Couette Viscometer! ( Im needed the solve in 30-60 minutes max, thank u )An illegal connection was observed on a 300 mm diameter horizontal pipe. Upstream from the connection two gages 600 m apart showed a pres- sure difference of 140 kPa. Downstream from the connection two gages 600 m apart showed a pressure difference of 116 kPa. How much oil (assume logical Gs, four decimal places) is being stolen due to the illegal connection? Assume loss of head ranging from 40% - 50 % of velocity head for every 50 m.Question 1: a) Find the steel pipe diameter required to convey a maximum of 500 lit/sec of water. The pipe length is 5 Km, the difference in head between pipe ends is 50 m, f = 0.02 and the minor losses is 30 v 2 /2g. b) What pipe diameter will be chosen from the market if the available diameters in the market are to the nearest 10 cm. c) What is the flow through the pipe you have chosen? d) If a valve is erected at the middle of the pipe length to adjust the flow to be exactly 0.3 m3 /sec, what would be the valve head loss?
- A fluid is placed between two parallel plates with area of 2 m2. The lower plate is pulled with 0.4 N with velocity of 0.4 m/s (in x direction), while the upper plate is pulled in other direction (in –x direction) with 0.75 N with velocity of V2 m/s. If the distance between the plates is 1 cm, the viscosity of fluid is 0.01 kg/m.s, find V2.1. Calculate ryx (from the eqn. ryx = ∑ F), consider directions when summing up the forces!2. Use Newton’s law of viscosity to calculate V2A container is filled with 0.675 liter of fluids at pressure of 2000 kPa. When the pressure increases at 3000 kPa the volume of the liquid becomes 0.670 liters. Compute the average bulk modulus of the liquid the coefficient of compressibility the velocity of the sound.An illegal connection was observed on a 300 mm diameter horizontal pipe. Upstream from the connection two gages 600 m apart showed a pres- sure difference of 140 kPa. Downstream from the connection two gages 600 m apart showed a pressure difference of 116 kPa. How much oil (assume logical Gs, four decimal places) is being stolen due to the illegal connection? Assume loss of head ranging from 40% - 50 % of velocity head for every 50 m. (Please use BERNOULLI'S ENERGY EQUATION) Include complet solutions