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Steam enters a turbine operating at steady state with a mass flow of 10kg/min, a specific enthalpy of 3100kJ/kg, and a velocity of 30 m/s.

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Steam enters a turbine operating at steady state with a mass flow of 10kg/min, a specific enthalpy of 3100kJ/kg, and a velocity of 30 m/s. At the exit, the specific enthalpy is 2300kJ/kg and the velocity is 45m/s. The elevation of the inlet is 3m higher than at the exit. Heat transfer from the turbine to its surroundings occurs at a rate of 1.1kJ per kg of steam flowing. Let g=9.81m/s2. Determine the power developed by the turbine, in kW. Wcr=1+2 Steam enters a turbine operating at steady state with a mass flow of 10kg/min, a specific enthalpy of 3100kJ/kg, and a velocity of 30 m/s. At the exit, the specific enthalpy is 2300kJ/kg and the velocity is 45m/s. The elevation of the inlet is 3m higher than at the exit. Heat transfer from the turbine to its surroundings occurs at a rate of 1.1kJ per kg of steam flowing. Let g=9.81m/s2. Determine the power developed by the turbine, in kW. Wcr=1+2

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