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Assume that the flow of air through a given duct is isentropic. At one point in the duct, the pressure and temperature are p=1800lb/ft^2 and T=500 degrees R, respectively. At a second point, the temperature is 400 degrees R. Calculate the pressure and density at this second point.
initially an insulated rigid tank contains 18.67 kg of water at 21.45oc and 101 kpa. the tank also contains a 3.66 kg
differentiate between macroscopic and microscopic approaches. which approach is used in the study of engineering
in a laboratory steam is condensed at atmospheric pressure i.e. 212degf on the shell-side of a vertically-oriented
air enters a compressor at 105 kpa and 300 k with a volumetric flow rate of 12 m3min and exits at 1200 kpa and 400 k.
a compressor is designed to run at 4000 rpm when ambient conditions are 101 kpa and 20c. on the day when the
a differential pressure is measured with a u-tube monometer having water as the manometer fluid. the results of the
water flows in a 5-m-wide channel with a speed of 2 ms and a depth of 1m. the channel bottom slopes at a rate of 1 m
in a carnot cycle heat is supplied at 350degreec and rejected at 27degreec. the working fluid is water which while
A 0.453-Kg mass attached to a light spring elongates it by 7.87mm. Determine the natural frequency of the system.
What is the composition, in atom percent, of an alloy that consists of 5.5 wt% Pb and 94.5 wt% Sn?
a smooth nozzle with a tip diameter of 2 in. terminates a 6 in. waterline. calculate the mean velocity of efflux from
in an automotive gas turbine the centrifugal compressor is driven at 40000 rpm by an axial turbine. the compressor
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