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An air-standard cycle with variable specific heats is executed in a closed system with 0.003 kg of air, and it consists of the following three processes:
An air-standard Carnot cycle is executed in a closed system between the temperature limits of 350 and 1200 K
Air whose density is 0.078 lbm/ft3 enters the duct of an air-conditioning system at a volume flow rate of 450 ft3/min.
An air-conditioning system requires a 20-m-long section of 15-cm diameter duct work to be laid underwater. Determine the upward force the water will exert
An air-conditioning system operating on the reversed Carnot cycle is required to transfer heat from a house at a rate of 750 kJ/min to maintain its temperature
Ambient air at 100 kPa, 30°C, 40% relative humidity goes through a constant pressure heat exchanger in a SSSF process
Ambient air at 100 kPa and 300 K is compressed isentropically in a steady-flow device to 1 MPa. Determine
Airplane takeoff from an aircraft carrier is assisted by a steam driven piston/cylinder with an average pressure of 750 kPa
Air leaves the compressor of a jet engine at a temperature of 300 F, a pressure of 45lbf/in2, and a velocity of 400 ft/s.
Air is to be compressed steadily and isentropically from 1 atm to 25 atm by a two-stage compressor
Ammonia is contained in a rigid sealed tank unknown quality at 0oC. When heated in boiling water to 100oC its pressure reaches 1200 kPa
Ammonia at 10oC with a mass of 10 kg is in a piston cylinder arrangement with an initial volume of 1 m3. The piston initially resting on the stops has a mass
Ammonia at 10 oC and mass 0.1 kg is in a piston cylinder with an initial volume of 1 m3.
Ambient moist air enters a steady-flow air-conditioning unit at 102 kPa, 30°C, with a 60% relative humidity. The volume flow rate entering the unit is 100 L/s
An 1800-W electric resistance heating element is immersed in 40 kg of water initially at 20°C.
An absorption refrigeration system receives heat from a source at 120°C and maintains the refrigerated space at 0°C
An 8 m3-tank contains saturated air at 30°C, 105 kPa. Determine
An 80-L rigid tank contains an ideal-gas mixture of 5 g of N2 and 5 g of CO2 at a specified pressure and temperature.
An 82.3-ft3 tank contains water vapor at 1500 lbf/in.2, and 1140° R. If the pressure, ?, specific volume, ?, and temperature, T, of water vapor are related
Air is compressed from room conditions to a specified pressure in a reversible manner by two compressors: one isothermal and the other adiabatic.
Air is compressed steadily by a 5-kW compressor from 100 kPa and 17°C to 600 kPa and 167°C at a rate of 1.6 kg/min
Air is compressed steadily by an 8-kW compressor from 100 kPa and 17°C to 600 kPa and 167°C at a rate of 2.1 kg/min, neglecting the changes in kinetic
Air is compressed in a piston-cylinder device from 90 kPa and 20°C to 400 kPa in a reversible isothermal process. Determine
Air is compressed by an adiabatic compressor from 95 kPa and 27°C to 600 kPa and 277°C. Assuming variable specific heats and neglecting the changes in kinetic
Air is compressed by a compressor from 95 kPa and 27°C to 600 kPa and 277°C at a rate of 0.06 kg/s. Neglecting the changes in kinetic and potential energies