Question: MATLAB!! (3) For the CSTR reactor shown below, develop a dynamic model that relates the exit concentration from the reactor to changes in feed concentration.

MATLAB!!

MATLAB!! (3) For the CSTR reactor shown below, develop a dynamic model

(3) For the CSTR reactor shown below, develop a dynamic model that relates the exit concentration from the reactor to changes in feed concentration. Solve the dynamic model at steady state to get the steady state exit concentration Cas. If the feed concentration Cao is changed from 1 gmole/liter to 2 gmoles/liter, Solve the dynamic model for Ca(t) and determine the new steady state reactor concentration. You may use MATLAB to solve the ODE model equation. The rate constant is k= 2 gmoles (minute) liter The reaction rate law is ra = k) , where r, is the production rate of A in gmoles/liter/minute. 5 liters/min Cap=1gmole/liter Reaction : 2AB Rate Law: -ra=kCA? 5 liters/min Cas=0.2 gmole/liter Volume = 50 liters

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