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Refrigerant 134-a enters a compressor as a saturated vapor at 200 kPa at a rate of 0.04 m^3/s. The power input to the compressor is 10 kW. If the surroundings at 30 degrees Celsius experience an entropy increase of 0.01kW/K and the refrigerant leaves at 800 kPa. Determine the rate of heat loss at the compressor, exit temperature of the refrigerant and the rate of entropy generation.
steam enters a turbine at 40 bars 440c and 100 ms through an pipe with a cross-sectional area of 0.050 m2. at the exit
1 a rigid tank of propane c3h8 with a volume of 1.5 m3 is filled with 8 kg of gas at an initial temperature of 25degc.
0.09m3 of a fluid at 0.7 bar are compressed reversibly to a pressure of 3.5 bar according to a law pvnconstant. the
A particular grade of Nitinol SMA is capable of upto 6% strain recovery and develops an internal restoration stress of upto 300 MN m-2. Estimate the amount of force and distance of travel that could be triggered by warming a rod
steam enters an adiabatic turbine at 5 mpa and 500degc with a mass flow rate of 5 kgs and leaves at 100 kpa. the
a 50 kg crate resting on a flat smooth surface is acted upon by a horizontal force that varies by the equation f1.5t
Steam at 3 MPa,400 degree Celsius is expanded to 30 kPa, 92 percent isentropic efficency.The mass flow rate is 2 kg/s. Determine (a)the power output.
steam expands in a turbine steadily at a rate of 36048 kgh entering at 8 mpa and 600degc and leaving at 20 kpa as a
methane ch4 at 25 c 1 bar enters a furnace operating at steady state and burns completely with 140 of theoretical air
Discussion of various cycles attempted to meet the goal as well as the positive and negative aspects of your design.
calculate the overall efficiency the heat rate mw and the total fuel rate kgs of a combined-cycle power plant 1 if no
steam enters an insulated turbine at 100 bar 400oc. at the exit the pressure and quality are 200 kpa and 0.66
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