Calculate the dynamic and kinematic viscosities of water at 350 degrees Kelvin
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Calculate the dynamic and kinematic viscosities of water at 350 degrees Kelvin
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- is specific gravity of solids directly proportional to temperature? Explain their relationship brieflyPlease write down all the solution on paper so that i can understand. Thank youuu...The surface tension of mercury and water at 60°C are 0.47N/m and 0.0662 N/m. respectively. What capillary height (in mm) will occur in the water when it is in contact with air in a glass tube of radius 0.355 mm? Use 130° for mercury and O° for water
- Based on the expression dp/dz = -pg, at what elevation is the absolute pressure 70% of the pressure at sea level? Take g to be a constant, assume changes in the atmosphere's state with elevation to be polytropic with n = 1.228, and take the temperature and pressure of the atmosphere at sea level to be 25.5°C and 0.92 atm. a. The elevation is b. The density of the air at sea level is kilometres. kg/m³.2.19 Determine the change in the kinematic viscosity of air that is heated from 10°C to 70°C. Assume standard atmospheric pressure.6c. Explain the fundamental reason for shear viscosity oxz by considering a fluid flowing along the x-axis with velocity v(z). How do thermal effects or turbulent flows lead to viscosity?
- Fluid mechanics, I need solutions in 15 minutes please. MCQ/A block of steel (s.g. = 7.85) will "float" at a mercury - water interface as shown in the figure. What is the height that submerged in the mercury (b)? Assume that the dimensions of the base of the block are X and L. A-269.247 mm B-139.251 mm C-237.008 mm D-297.826 mm E-208.140 mm F-164.025 mm G- 114.018 mm H-192.048 mm I-251.178 mm J- 324.085 mm3. What is the equivalent height in meters of glycerin (sg = 1.26) for an absolute pressure of 5 atm when barometer reads 800 mm Hg. Also find the equivalent height of oil (sg = 0.8) in inches.Describe the vibrating wire piezometer.
- Question 2* A thin flat plate is immersed in a fluid stream 20 m/s. Estimate the distance x from the leading edge at which the boundary layer will be I mm or 10 cm for (a) air and (b) water at normal room temperature and pressure. (For air 0.0615 m, 6.47 m; for water 0.044 m, 9.52 m)Calculate the Specific Volume at a temperature of 50 ° C at a pressure of 0.07 MPa.13.Two identical cubes are placed in different liquids with different densities. Is the buoyant force on the cube on the left greater than, less than, or equal to the buoyant force on the cube on the right?
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