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Ehe thost then taon (2) The following model applies to third-order chemical reactions in batch reactors: c=1+2kc02tc0 where c= concentration (mg/L),c0= initial concentration (mg/L),k= reaction

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Ehe thost then taon (2) The following model applies to third-order chemical reactions in batch reactors: c=1+2kc02tc0 where c= concentration (mg/L),c0= initial concentration (mg/L),k= reaction rate (L2/(mgm2d)), and t= time (d). Linearize this model and use it to estimate k and c0 based on the following data. Develop plots of your fit along with the data for both the original and the linearized equations. Ehe thost then taon (2) The following model applies to third-order chemical reactions in batch reactors: c=1+2kc02tc0 where c= concentration (mg/L),c0= initial concentration (mg/L),k= reaction rate (L2/(mgm2d)), and t= time (d). Linearize this model and use it to estimate k and c0 based on the following data. Develop plots of your fit along with the data for both the original and the linearized equations

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