2. Carbon dioxide flows steadily through an adiabatic turbine, entering at 1 Last one digit of your student number (m/3) MPa, 500 °C, and V (m/s) and leaving at 150 kPa, 150 °C, and 250 m/s. The inlet...


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thermodynamics


2. Carbon dioxide flows steadily through an adiabatic turbine, entering at 1<br>Last one digit of your<br>student number<br>(m/3)<br>MPa, 500 °C, and V (m/s) and leaving at 150 kPa, 150 °C, and 250 m/s. The inlet<br>90<br>110<br>area of the turbine is 80 cm².<br>130<br>2.<br>3.<br>150<br>Determine (a) the mass flow rate of the air and (b) the power output of the<br>4.<br>170<br>190<br>turbine.<br>6.<br>210<br>230<br>125<br>115<br>

Extracted text: 2. Carbon dioxide flows steadily through an adiabatic turbine, entering at 1 Last one digit of your student number (m/3) MPa, 500 °C, and V (m/s) and leaving at 150 kPa, 150 °C, and 250 m/s. The inlet 90 110 area of the turbine is 80 cm². 130 2. 3. 150 Determine (a) the mass flow rate of the air and (b) the power output of the 4. 170 190 turbine. 6. 210 230 125 115

Jun 11, 2022
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