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![Consider a 300 kJ/min refrigeration system that operates on an ideal vapor-compression refrigeration cycle with refrigerant-134a as the working fluid. The refrigerant enters the compressor as saturate | Homework.Study.com Consider a 300 kJ/min refrigeration system that operates on an ideal vapor-compression refrigeration cycle with refrigerant-134a as the working fluid. The refrigerant enters the compressor as saturate | Homework.Study.com](https://homework.study.com/cimages/multimages/16/2381344_figure4128018247810405227.jpg)
Consider a 300 kJ/min refrigeration system that operates on an ideal vapor-compression refrigeration cycle with refrigerant-134a as the working fluid. The refrigerant enters the compressor as saturate | Homework.Study.com
![SOLVED:A refrigerator operates on the ideal vapor- compression refrigeration cycle with R-134 a as the working fluid between the pressure limits of 120 and 800 kPa. If the rate of heat removal SOLVED:A refrigerator operates on the ideal vapor- compression refrigeration cycle with R-134 a as the working fluid between the pressure limits of 120 and 800 kPa. If the rate of heat removal](https://cdn.numerade.com/previews/fb4914e7-71be-4242-b376-089fa7de8bb7_large.jpg)
SOLVED:A refrigerator operates on the ideal vapor- compression refrigeration cycle with R-134 a as the working fluid between the pressure limits of 120 and 800 kPa. If the rate of heat removal
![Vapor-compression refrigeration cycle using HFC-134 A as the refrigerant. Evaporator temperature = -10^oC Condenser pressure = 1MPa The refrigerant leaves the compressor at State 2with an enthalpy of 428 \ kJ/kg The Vapor-compression refrigeration cycle using HFC-134 A as the refrigerant. Evaporator temperature = -10^oC Condenser pressure = 1MPa The refrigerant leaves the compressor at State 2with an enthalpy of 428 \ kJ/kg The](https://homework.study.com/cimages/multimages/16/untitled-1-recovered6882683930095787385.jpg)
Vapor-compression refrigeration cycle using HFC-134 A as the refrigerant. Evaporator temperature = -10^oC Condenser pressure = 1MPa The refrigerant leaves the compressor at State 2with an enthalpy of 428 \ kJ/kg The
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![Vapour compression refrigeration cycle on p-h diagram. 1: Evaporator... | Download Scientific Diagram Vapour compression refrigeration cycle on p-h diagram. 1: Evaporator... | Download Scientific Diagram](https://www.researchgate.net/publication/349961233/figure/fig2/AS:999915341762562@1615409803895/Vapour-compression-refrigeration-cycle-on-p-h-diagram-1-Evaporator-outlet-2.png)