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1. Consider a reversible, elementary reaction wherein A+Bkrevkf2C The reaction is carried out in a constant volume batch reactor under isothermal conditions at 100C. In
1. Consider a reversible, elementary reaction wherein A+Bkrevkf2C The reaction is carried out in a constant volume batch reactor under isothermal conditions at 100C. In one experiment, the reactor is charged with 1.5mol/LA and 2.0mol/LB, without any C, and the reaction is initiated. 100s after the reaction is initiated, the contents are analyzed and found to contain C at a concentration of 1.0 mM. In a separate experiment, the reactor is loaded with the same charge as in the first experiment, but this time the reaction is allowed to proceed for a very long time a very long time, and the concentration of C is found to be 1.9 mol/L a. If a feed stream containing 1.0mol/LA and 1.6mol/LB is fed at 10L/s into a CSTR that is operated isothermally at 100C, how large would the reactor need to be to produce C at a rate of 12mol/s ? b. What is the maximum conversion of A that could be achieved if the same input conditions described in part b) were applied to a much larger reactor
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