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Assume that the level of water in the tank remains the same and that there is no friction loss in the pipe, entrance, or nozzle. Determine
(a) The volumetric discharge rate from the nozzle;
(b) The pressure and velocity at points A, B, C, and D.
Air flows from a tank maintained at 5 MPa absolute and 20°C. It exits a hole and reaches a pressure of 500 kPa absolute. Assuming an adiabatic, quasi-equilibrium process, calculate the exiting temperature.
q1 the pressure in an air tank is able to support a water column 15 meter high. find the absolute air pressure in psi
Assume that 10,000 spur gears, 11 /8 in. in diameter and 1 in. thick, are to be made of 70-30 brass. What manufacturing method would you consider?
water vapor exists at a pressure of 10kpa and temperature of 373k. assume a reference atmosphere exists at to 298k and
in a steam generator compressed liquid water at 1500 psi 100of enters a 1-in diameter tube at the rate of 5 ft3min.
A wing on a race car is supported by two cylindrical rods, as shown in Fig. 17.15. Compute the drag force exerted on the car due to these rods when the car is traveling through still air at - 20°F at a speed of 150 mph.
The air temperatures are equal. If the drag force on the model was 250 N. Determine the drag on the prototype
An insulated Piston-Cylinder arrangement contains water. Sixty percent of the total 15 kg of water are in the vapor phase. Steam at 1 Mpa and 400 C degree is allowed to enter the cylinder from a supply line until all of the liquid in the cylinder is ..
Calculate the magnitude of the moment about the base point O of the 600 N force and calculate and draw the shear force and bending moment diagram for the cantilever beam
Given the roughness of the pipe
A fan accelerates air (at atmospheric pressure and 300K) from a rest to 5m/s. The fan mass flow rate of air is 1.2 kg/s. What is the minimum amount of power this fan must consume to operate under these conditions?
A solid circular shaft made of 304 stainless steel uniformly tapers from a diameter of 1.5 inches to a diameter of 1.0 inches over a length of 3 feet. Objective: If the shaft transmits 100 hp at 2000 RPM, determine the maximum shear stress in the sha..
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