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- Period of oscillation - Ultimate value of y(t) Q#10:Thereactionisfirstorder, ABr=kCA We assume that the vessel has a constant volume, operates isothermally (constant temperature) and

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- Period of oscillation - Ultimate value of y(t) Q#10:Thereactionisfirstorder, ABr=kCA We assume that the vessel has a constant volume, operates isothermally (constant temperature) and is well mixed. For this system: 1. Derive the process transfer function between the outlet ( tank) concentration and the feed concentration of component A. 2. Obtain the time evolution of the concentration as function of the feed concentration and the process parameters. Hint: use partial fraction expansion. 3. For the design and operating parameters, F0=0.1mol/m3,V=2m3,CA0=0.1mol/m3, k=0.050L/min and CA0=1mol/m3, calculate the outlet concentration when t=F+VkV and t=40min

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