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Air enters the compressor of an ideal-gas refrigeration cycle at 270 K and 110 kPa and the turbine at 325 K and 440 kPa respectively. The mass flow rate of air through the cycle is 0.5 kg/s. Assuming a constant pressure specific heat for air of cp = 1.005 kJ/kg.K, and the ratio of specific heats k = 1.4, determine: the rate of refrigeration and the net power input.
a heat engine with a thermal efficiency of 40 receives heat from a reservoir at a temperature of 300of and rejects heat
you are an industrial hygienist for a large distributor of industrial compressed gases who was evacuated to baton rouge
determine the temperatures of surface 1 through 4 of the furnace cavity of example 13.3 if the entire furnace
a brayton cycle is the same as the rankine cycle but it takes place in the ideal gas region of states. a large
for problem 372 in meriam and kraiges 6th edition dynamics why is the max normal force at the side? how can we prove
a power plant produces a flue gas with a mass flow rate of 2 million pounds per hour. of that 150000 lbhr is water
The motion of a particle in defined by the relation x = t3 - 15 t2 - 20, where ‘x' is expressed in metres and ‘t' in seconds. Determine the acceleration of the particle at t = 3 seconds.
consider an inertial reference frame with the center of the earth as its origin and with the x-y i-j plane in the
a brass cube e100 gpa v 0.25poissons ratio is 100 mm long per side. a compressive force of 100kn is applied to one
you are handed an apple that has a mass of 102g. to get a better idea of what different pressures feel like you rig up
a mass of 3kg of nitrogen at 100kpa and 20oc is contained in a piston-cylinder device. it is now expanded to a final
a compressor takes in air at 100 kpa and 300 k and discharges it at 0.25 kgs at 1.2 mpa and 450 k. unfortunately the
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