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Using the equation below for a batch reactor. Calculate the time required by using a real-life situation such as making bread by using values to
Using the equation below for a batch reactor. Calculate the time required by using a real-life situation such as making bread by using values to show the calculation in which the reactor can be mathematically approximated and why.
t=NA1NA0rAVdNA While knowledge of chemical kinetics and reactor design are essential for the production of industrial chemicals and pharmaceuticals, it can also be applied to many other areas. For the project, you will apply your understanding of the common industrial reactors to a non-traditional application. Assignment Describe a real-life situation that can be mathematically approximated using the common reactors we have learned about in class (Batch, CSTR, PFR, and PBR). 1. Describe/illustrate the situation and explain which reactor it can be mathematically approximated with and why. 2. Apply the mole balance, conversion, and reactor sizing equations to the example using sample values. 3. Examine how number of moles, time, volume, or flow rate (whichever are applicable to the reactor you have chosen) changes as you change your sample values. 4. Describe your findings and the implicationsStep by Step Solution
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