A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively. Determine the pump work in KW if the mass flow rate is 0.5 kg/s O a. 88.6 kw ob. 12.3 kw ос. 349 kw o d. 95.7 kw A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively. Determine the turbine work in KW if the mass flow rate is 1.2 kg/s O a. 2238 kW O b. 2000 kw ос. 1000kw o d. 1326 kw A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively. Determine the cycle efficiency O a. 30 % O b. 44 % O c. 56 % od. 32 %

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively.
Determine the pump work in KW if the mass flow rate is 0.5 kg/s
Оа. 88.6 kW
оь. 123 kW
о с. 34.9 kW
o d. 95.7 kW
A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively.
Determine the turbine work in KW if the mass flow rate is 1.2 kg/s
O a. 2238 kw
O b. 2000 kW
Oc. 1000 kW
od. 1326 kw
A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively.
Determine the cycle efficiency
O a. 30 %
O b. 44 %
O c. 56 %
o d. 32 %
Transcribed Image Text:A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively. Determine the pump work in KW if the mass flow rate is 0.5 kg/s Оа. 88.6 kW оь. 123 kW о с. 34.9 kW o d. 95.7 kW A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively. Determine the turbine work in KW if the mass flow rate is 1.2 kg/s O a. 2238 kw O b. 2000 kW Oc. 1000 kW od. 1326 kw A Rankine cycle with a water boiler at 3.0 MPa. The cycle has the highest and lowest temperatures of 450°C and 45°C respectively. Determine the cycle efficiency O a. 30 % O b. 44 % O c. 56 % o d. 32 %
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