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Given: = 2A(g) + 1B (g) D) (Reaction involving gaseous species) Feed: NA= 100 moles of A NB = 75 moles of B Ninert =

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Given: = 2A(g) + 1B (g) D) (Reaction involving gaseous species) Feed: NA= 100 moles of A NB = 75 moles of B Ninert = 50 moles of inert Reactor (i.e., Reaction) volume = constant = 1000 liters Reactor temperature = constant = 300 K Questions: For XA = 0%, 25%, 50% and 100%, 1. Develop a stoichiometric table to track at each conversion a. The number of moles of each species and b. The total number of moles 2. Extend the previous stoichiometric table to include at each conversion a. The concentration of each species and b. The total concentration 3. Extend the stoichiometric table in step 2 to track the gas pressure in the reactor at each conversion. You may assume that ideal gas law applies. This final question tests your complete comprehension of this area. 4. If P/p = 0.75, where P is the initial pressure in the reactor, a. Determine XA b. Determine the remaining moles of each species (N;) c. Determine the remaining concentration of each species (C)

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