Problem.

The kinetics of an aqueous phase decomposition of A is investigated in two CSTR's in series, the first having half the volume of the second. At steady state with a feed concentration of 4 gmol/lit., and mean residence time of 65 sec in the second reactor, the concentration of feed to second from the first is found to be 2 gmol/lit., while that of the stream leaving the second is 1 gmol/lit. Find the suitable kinetic rate expression.

Problem.

The kinetics of an aqueous phase decomposition of A is investigated in

two CSTR's in series, the first having half the volume of the second. At

steady state with a feed concentration of 4 gmol/lit., and mean

residence time of 65 sec in the second reactor, the concentration of

feed to second from the first is found to be 2 gmol/lit., while that of

the stream leaving the second is 1 gmol/lit. Find the suitable kinetic

rate expression.

The kinetics of an aqueous phase decomposition of A is investigated in two CSTR's in series, the first having half the volume of the second. At steady state with a feed concentration of 4 gmol/lit., and mean residence time of 65 sec in the second reactor, the concentration of feed to second from the first is found to be 2 gmol/lit., while that of the stream leaving the second is 1 gmol/lit. Find the suitable kinetic rate expression.

Problem.

The kinetics of an aqueous phase decomposition of A is investigated in

two CSTR's in series, the first having half the volume of the second. At

steady state with a feed concentration of 4 gmol/lit., and mean

residence time of 65 sec in the second reactor, the concentration of

feed to second from the first is found to be 2 gmol/lit., while that of

the stream leaving the second is 1 gmol/lit. Find the suitable kinetic

rate expression.

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