7. Steam flows into a turbine at a rate of 10 Kg/s, and 10 Kilowatts of heat are lost from the turbine. Ignoring elevation and kinetic energy effects, calculate the power output from the turbine. Inlet Conditions Exit Conditions Pressure 2.0 MPa 0.1 MPa Temperature Quality 350°C 100% a) 4000 KW b) 4375 KW c) 4973 KW d) 4605 KW e) 5200 KW

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Steam flows into a turbine at a rate of 10 Kg/s, and 10 Kilowatts of heat are lost from the turbine.
Ignoring elevation and kinetic energy effects, calculate the power output from the turbine.
7.
Inlet Conditions
Exit Conditions
Pressure
2.0 MPa
0.1 MPa
Temperature
Quality
350°C
100%
a) 4000 KW
b) 4375 KW
c) 4973 KW
d) 4605 KW
e) 5200 KW
Transcribed Image Text:Steam flows into a turbine at a rate of 10 Kg/s, and 10 Kilowatts of heat are lost from the turbine. Ignoring elevation and kinetic energy effects, calculate the power output from the turbine. 7. Inlet Conditions Exit Conditions Pressure 2.0 MPa 0.1 MPa Temperature Quality 350°C 100% a) 4000 KW b) 4375 KW c) 4973 KW d) 4605 KW e) 5200 KW
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