0.2 m³/sec of fluid passes through a pipe with diameter 41 centimeters. Determine the fluid's average speed in meters/sec. Your answer should include at least one digit after the decimal place.
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- 1. A fluid (s=0.9) flows through a 75 mm diameter pipe at a velocity of 6 m/sec. Compute the Volume flow rate. (m3/s) Round your answer to 4 decimal places.Determine whether the flow is turbulent or laminar if a fluid flows at 0.001?^3/? through a 100mm diameter pipe.A fluid flowing through a pipe of diameter 450 mm with velocity 3 m/s is divided into two pipes of diameters 300 mm and 200 mm. The velocity of flow in 300 mm diameter pipe is 2.5 m/s, then the velocity of flow through 200 mm diameter pipe will be
- An unspecified fluid flows in a stream with a pitot tube attached for measurement of velocity. The fluid rises by 57mm above the surface of the open channel. If the fluid has a specific gravity of 0.81, how fast in the flow in the stream? Express your answer in kph.The velocity field of a fluid v (in meters per second) has divergence div(v)(P) = 3 at the point P = (1, 1, 4). Estimate the flow rate out of the sphere of radius 0.4 centered at P. (Use decimal notation. Give your answer to four decimal places.) flow rate: 2.0106 IncorrectThe venturi meter shown below carries water at 60°C. The inside dimensions are machined to the sizes shown in the figure. The specific gravity of the gage fluid in the manometer is 1.25. Calculate the velocity of flow at section A and the volume flow rate of water. 200-mm inside diameter Flow 0.46 m y is an unknown distance y 300- mm inside diameter 1.18 m
- Oil flows at the rate of 0.22 m/s in a 500 mm diameter pipeline 500 m. long. Specific gravity of oil is 0.86. Neglecting minor losses and f = 0.018, compute the average velocity of flow. Do not write the unit. You will only input the numerical answer in the space provided. Unit of the Correct Answer: m/s Decimal Places required in the final answer: 2The velocity profile of a liquid flowing through the pipe is approximated by the truncated conical distribution as shown in (Figure 1). Suppose that V = 4 ft/s. Hint: The volume of a cone is V=1/r²h. 0.3 ft 0.6 ft 0.3 ft DE V Determine the average velocity of the flow. Express your answer to three significant figures and include the appropriate units.A fluid is between two parallel horizontal plates as depicted above. The bottom plate is stationary while the top plate is moving to the right with speed 7.6 feet/second. The top plate is 2 inches above the bottom plate. Determine the velocity gradient for the fluid in feet/second velocity increase per foot rise above the bottom plate. Your answer should include at least 1 digit after the decimal place.
- The velocity profile of a liquid flowing through the pipe is approximated by the truncated conical distribution as shown in (Figure 1). Suppose that V = 4 ft/s. Hint: The volume of a cone is V= r²h. 0.3 ft 0.6 ft V 0.3 ft Determine the average velocity of the flow. Express your answer to three significant figures and include the appropriate units.A fluid flow is defined by u = (62¹-3y²) m/s and v= (4zy+y) m/s, where z and y are in meters. Part A Determine the magnitude of the velocity of a particle at point (2.5 m, 2 m). Express your answer to three significant figures and include the appropriate units. Submit Part B GM HÅ Value Request Answer Determine the magnitude of the acceleration of a particle at point (2.5 m, 2 m). Express your answer to three significant figures and include the appropriate units. HA Value m/s ? m/s²A fluid flow is defined by (6x² − 3y²) m/s and U = - V = (4xy + y) m/s, where x and y are in meters. Part A Determine the magnitude of the velocity of a particle at point (1.9 m, 2 m). Express your answer to three significant figures and include the appropriate units. V μÅ Value m/s Submit Request Answer C ? Part B Determine the magnitude of the acceleration of a particle at point (1.9 m, 2 m). Express your answer to three significant figures and include the appropriate units. a = O μÅ Value 2 m/s² Submit Request Answer ?