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The following mixture: CO2:13.1%,CO:25%,02:7.7%, and N2:54.2%, is leaving a reactor at 100kPa and 750K. Assume 160.0kg of mixture. Calculate: airat=1.29m2kg a. The volume composition. (2)

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The following mixture: CO2:13.1%,CO:25%,02:7.7%, and N2:54.2%, is leaving a reactor at 100kPa and 750K. Assume 160.0kg of mixture. Calculate: airat=1.29m2kg a. The volume composition. (2) CO2:CO:O2: and N2: b. The average molecular weight of the mixture (g/gmol). (2) c. Table of the mixture ("default"). (6) d. The density of the mixture (kg/m3)(3) e. The specific volume of the mixture (in SI units). (2) f. The specific gravity of the mixture. (2) g. The partial pressure of oxygen (in atm). (2) h. Give the Cprib. (J/g-K). (6) 1. Calculate the amount of heat (H) given off the mixture at standard conditions (STP), when it cools from 500C to 100C at constant pressure. Give the answer in cal. Use the Cpaix. (5) The following mixture: CO2:13.1%,CO:25%,02:7.7%, and N2:54.2%, is leaving a reactor at 100kPa and 750K. Assume 160.0kg of mixture. Calculate: airat=1.29m2kg a. The volume composition. (2) CO2:CO:O2: and N2: b. The average molecular weight of the mixture (g/gmol). (2) c. Table of the mixture ("default"). (6) d. The density of the mixture (kg/m3)(3) e. The specific volume of the mixture (in SI units). (2) f. The specific gravity of the mixture. (2) g. The partial pressure of oxygen (in atm). (2) h. Give the Cprib. (J/g-K). (6) 1. Calculate the amount of heat (H) given off the mixture at standard conditions (STP), when it cools from 500C to 100C at constant pressure. Give the answer in cal. Use the Cpaix

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