Consider nicotine is produced in its pure form and you desire to understand its thermodynamic properties....
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Consider nicotine is produced in its pure form and you desire to understand its thermodynamic properties. Ultimately, the PR EOS will be used to answer this question. You can assume the constant pressure heat capacity in J/(mol K) is C; = 30 + 0.17. (a) What is the chemical structure of nicotine? What groups in the Joback Group Contribution method should be used? (b) Using the Joback method and the known normal boiling temperature of 242°C, estimate the critical properties and acentric factor. (c) How much heat is needed to change 10 moles of nicotine from 25°C to 200°C at 1bar in a closed vessel that allows for volume change to maintain 1bar pressure? Consider nicotine is produced in its pure form and you desire to understand its thermodynamic properties. Ultimately, the PR EOS will be used to answer this question. You can assume the constant pressure heat capacity in J/(mol K) is C; = 30 + 0.17. (a) What is the chemical structure of nicotine? What groups in the Joback Group Contribution method should be used? (b) Using the Joback method and the known normal boiling temperature of 242°C, estimate the critical properties and acentric factor. (c) How much heat is needed to change 10 moles of nicotine from 25°C to 200°C at 1bar in a closed vessel that allows for volume change to maintain 1bar pressure?
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