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[" Calculate the ratio of the catalysed and uncatalysed rate constant at "20^(@)C" if the energy of "],[" activation of a catalysed reaction is "20kJmol^(-1)" and for the uncatalysed reaction is "],[75kJ" mol "^(-1)" ."]

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Calculate the ratio of the catalysed and uncatalysed rate constant at 20^(@)C if the energy of activation of a catalysed reaction is 20 kJ "mol"^(-1) and for the uncatalysed reaction is 75 kJ "mol"^(-1)

The rate constant is given by the Arrhenius equation as : k = Ae^(-Ea)//RT Calcualte the ratio of the catalysed and uncatalysed rate constants at 25^(@) C If the energy of activation of a analysed reaction is 162 kJ mol^(-1) and for uncatalysed reaction, the value is 350 kJ mol^(-1) .

The rate constant is given by Arrhenius equation. k=Ae^(-E_(a)//RT) Calculate the ratio of the catalysed and uncatalysed rate constants at 25^(@)C if the energy of activation of a catalysed raction is 162 kJ and for the uncatalysed reaction the value is 350 kJ

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Calculate the log_(10) of the ratio of the catalysed and uncatalysed rate constant at 25^(@) C. If at this temperature the energy of activation of a catalysed reaction is 162KJ and for the uncatalysed reaction the value is 350 KJ (Assume frequency factor is same for both reaction)

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The rate constant of a reaction at 200k is 0.1 times its value at TK . If the energy of activation of the reaction is 7.65"kJ.mol"^(-1) , find the value of 'T'?