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mal multiple reaction has the following synthesis route: ( A+1.5 mathrm{~B} longrightarrow mathrm{C}+mathrm{D} ) ( mathrm{B}+mathrm{E} longrightarrow 2 mathrm{C}+mathrm{B} ) The reaction took place (

mal multiple reaction has the following synthesis route: ( A+1.5 mathrm{~B} longrightarrow mathrm{C}+mathrm{D} ) ( mathrm{B}+mathrm{E} longrightarrow 2 mathrm{C}+mathrm{B} ) The reaction took place ( ightarrow mathrm{C} ) (iii) byproduct. Other inf [ egin{array}{l} C_{A O}=10 ext {, follows: } \ k_{1}=1.75left(rac{1}{c} ight)^{1.5} quad C_{B 0}= ext { excess ; } \ k_{1}=1.75left(rac{L}{mathrm{~mol}} ight)^{1.5}left(rac{1}{mathrm{~min}} ight) quad ; quad k_{2}=1.25left(rac{L}{mathrm{~mol}} ight)^{2.5}left(rac{1}{mathrm{~min}} ight) quad ; quad k_{3}=0.5 rac{L}{mathrm{moLmin}} \ end{array} ] (a) Write the rate law for each reaction (b) Determine the instantaneous selectivity of ( D ) over ( F ) (6 Marks) (c) Find the overall yield of ( F ) when conversion of ( A ) is 0.8 . (4 Marks) (d) Suggest a reactor selection and operating conditions to obtain high yield of D. (7 Marks) (3 marks)
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A+1.5BC+DA+25B2C+EB+EC+F The reaction rook place in a continuous ractoc. D is ale deured prodact while F is also a valuable byprodact Other ieformation is an followe: (a) Write the rate law for each reaction (b) Determine the instantatheous selectivity ofD over F (6 Marks) (c) Find the overall yield of F when conversioe of A is 0.8 (4 Marks) (d) Suggest a reactor selection and operating cecalition to obtain high yield of D. (7 Marks)

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