5.37 Water at 300 K overflows the inside of a vertical open pipe of diameter 1 m and forms a smooth film of thickn...
4. (25 pts) Water is flowing inside a thin wall, smooth pipe of diameter 0.05 m at a mass flowrate of 0.3 kg/s. The water enters the pipe at a mean temperature Tm,i= 80 °C and exits at Tm,o= 80 °C while the pipe surface temperature is maintained at Ts= 20 °C along its entire length. a. Is the flow turbulent or laminar? b. Calculate the average convection heat transfer coefficient inside the tube. c. Calculate the length of the...
20. A cylindrical water tower of diameter 3.0 m supplies water to a house. The level of water in the water tower is 35 m above the point where the water enters the house through a pipe that has an inside diameter 5.0 cm. The pressure at the top of the water tower is I ATM and the water in the cylindrical tank flows slowly at a speed of 0.01 cm/s. At what speed does the water flow in the...
1. (25pt) Water at room temperature is pumped through a smooth pipe. The pipe has diameter of 10cm. The total length is 10 km. The discharge is 80 m²/h. A pump is installed at the inlet. At the exit of pump, the absolute pressure of the water is 25 atm. The exit exposes to the atmosphere and its elevation is 100 m higher than the inlet. Estimate the frictional head loss hf.
1. (25pt) Water at room temperature is pumped through a smooth pipe. The pipe has diameter of 10cm. The total length is 10 km. The discharge is 80 m²/h. A pump is installed at the inlet. At the exit of pump, the absolute pressure of the water is 25 atm. The exit exposes to the atmosphere and its elevation is 100 m higher than the inlet. Estimate the frictional head loss hf.
1. (25pt) Water at room temperature is pumped through a smooth pipe. The pipe has diameter of 10cm. The total length is 10 km. The discharge is 80 m²/h. A pump is installed at the inlet. At the exit of pump, the absolute pressure of the water is 25 atm. The exit exposes to the atmosphere and its elevation is 100 m higher than the inlet. Estimate the frictional head loss hf.
.35m Smooth Pipe - 5си Q Open Jet e- 60m T 10 M Water K 45m The smooth pipe flow given in the below figure is driven by pressurized air above the water surface in the tank. What gage pressure pz is needed to provide a 20°C water flow rate Q= 50 m3/h? The pipe outlet is open to atmosphere. Use explicit Haaland formulation to find the friction factor. Take viscosity of water as u=1x10-3kg/ms, density p=1000kg/m3 and gravity as...
1. Water flows from Reservoir A to Reservoir B. The pipe diameter D is 1 m and the pipe length L is 300 m. H 16 m, h 2 m and the pipe friction factor is f 0.01. In your calculations consider K- 1 at the pipe outlet in tank B and neglect the loss of the inlet in tank A a. b. c. What will be the discharge in the pipe? What will be the pressure at point P...
1. Water enters the constant 130-mm inside-diameter tubes of a boiler at 7 MPa and 65°C and leaves the tubes at 6 MPa and 450°C with a velocity of 80 m/s. Calculate the velocity of the water at the tube inlet and the inlet volume flow rate. [5-14] 2. Air enters a nozzle steadily at 50 psia, 140°F, and 150 ft/s and leaves at 14.7 psia and 900 ft/s. The heat loss from the nozzle is estimated to be 6.5...
17,43,56 please MHCl is diluted to 2.0L. What is the final molarity? 43. A 300. mL solution of 3.0 M HCl is diluted to 2.0L What ist a. 0.45M b. 450M C. 20M d. 0.05M e. 0.50M 44. A 3.000-g sample of a soluble chloride is titrated with 52.60 mL of 0.2000 M AgNO, What is the percentage of chloride in the sample? a. 37.29% b. 24.86% C. 12.43% d. 37.29% e. 18.65% 56. The carbon dioxide from the combustion...
I need help figuring out #5.35, 5.37, 5.45, 5.57, and 5.71 Documents Pearson Updad Assgrmerti Eimiting. Nos |UNC 217 A gas-filled balloon having a volume of 2.50 L at 1.2 atm and 25°C is allowed to rise to the strato sphere (about 30 km above the surface of Earth), where the temperature and pressure are -23°C and 3.00 x 10 atm, respectively. Calculate the final volume of the balloon 5.35 The temperature of 2.5 L of a gas initially at...