Question: For the reaction A->R , second-order kinetics and C_(A,0)=2 mol L^(-1) , we get 50% conversion after 1 hour in a batch isothermal reactor. The

For the reaction

A->R

, second-order kinetics and

C_(A,0)=2

mol

L^(-1)

, we get

50%

conversion after 1 hour in a batch isothermal reactor. The reactor density is not constant but the volume changes linearly with conversion (when conversion is zero the volume is

1L

and when the conversion is 1 the volume is

0.7L

). What will be the conversion and concentration of

A

after 1 hour if

C_(A,0)=15molL^(-1)

?\ Given:\ Batch reactor\ Isothermal conditions

->

temperature constant\

x_(A)=50%

after

t=1

hour\ Density not constant

->

need to solve for

\\\\epsi _(A)

\ Need to solve for

x_(A)

under new initial conditions

 For the reaction A->R, second-order kinetics and C_(A,0)=2 mol L^(-1), we

24. For the reaction AR, second-order kinetics and CA,0=2 mol L-1 we get 50% conversion after 1 hour in a batch isothermal reactor. The reactor density is not constant but the volume changes linearly with conversion (when conversion is zero the volume is 1L and when the conversion is 1 the volume is 0.7L ). What will be the conversion and concentration of A after 1 hour if CA,0=15molL1 ? Given: Batch reactor Isothermal conditions temperature constant XA=50% after t=1 hour Density not constant need to solve for A Need to solve for XA under new initial conditions

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