0.065 kmol gaseous mixture enters an adlabatic compressor operating at steady state at 300 K, 1 bar and exits at 500 K, 4 bar. Potentlal and klnetic energy effects are negllg(ble. Constituent Gases...

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0.065 kmol gaseous mixture enters an adlabatic compressor operating at steady state at 300 K, 1 bar<br>and exits at 500 K, 4 bar. Potentlal and klnetic energy effects are negllg(ble.<br>Constituent Gases<br>Molar Mass<br>Mole Fracton<br>COz<br>44.00 kg/kmol<br>14%<br>O2<br>32.00 kg/kmol<br>5%<br>N2<br>28.00 kg/kmol<br>80%<br>CO<br>28.00 kg/kmol<br>1%<br>Determine the following:<br>36. the molecular weight of the mixture, In kg/kmol.<br>a) 28.0<br>b) 32.0<br>c) 30.4<br>d) 44.4<br>e) none of the above<br>37. the work input to the compressor, in kJ.<br>a) 8,723<br>b) 407<br>c) 6,200<br>d) 567<br>e) none of the above<br>

Extracted text: 0.065 kmol gaseous mixture enters an adlabatic compressor operating at steady state at 300 K, 1 bar and exits at 500 K, 4 bar. Potentlal and klnetic energy effects are negllg(ble. Constituent Gases Molar Mass Mole Fracton COz 44.00 kg/kmol 14% O2 32.00 kg/kmol 5% N2 28.00 kg/kmol 80% CO 28.00 kg/kmol 1% Determine the following: 36. the molecular weight of the mixture, In kg/kmol. a) 28.0 b) 32.0 c) 30.4 d) 44.4 e) none of the above 37. the work input to the compressor, in kJ. a) 8,723 b) 407 c) 6,200 d) 567 e) none of the above

Jun 08, 2022
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