Determine the velocity at the exit of the diffuser
Air enters an adiabatic diffuser at 320 K and 100 kPa with a velocity of 642.9 m/s. At the diffuser exit, the temperature is 520 K. Determine the velocity (m/s) at the exit of the diffuser.
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Determine the torque exerted on the 10mm long (high) inner cylinder. (The blood is filled to the top of the inner cylinder).
The average speed of blood leaving the left ventricle is 120 cm/s. Determine the difference in height between these two locations.
Suppose X,Y,and C represent the length, width, and perimeter of a flat rectangular sheet metal part. Note that Xis a normal random variable having a mean of 15 cm and a standard deviation of 1 cm, and Y is independent of X and normally distributed
Saturated water vapor at 13.32 bar enters an insulated throttling valve which drops the pressure to 1.50 bar. Determine the temperature (oC) of the steam at the exit of the valve.
The height of the water level in mineral water bottles has a mean of 140 mm and a standard deviation of 4 mm. Assume that the height of the water level is normally distributed and water levels in different bottles are independent.
If the electric motor driving the pump has an efficiency of 85% and the cost of electricity is $0.10 per kW hour, find annual cost of electricity powering the system.
The temperature on the inner face is 25 degrees celcius, and the temperature on the outer face os 0 degrees celcius. How much heat per day is lost through the wall?
Steam at 1 bar enters an adiabatic heat exchanger with a quality of 0.896 and exits as a saturated liquid. Determine the volumetric flow rate (m3/s) of the steam entering the heat exchanger.
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