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MISTRY CHEM2020 Mailings Review View For this reaction, a student obtained a range of rate constants, k, as a function of reaction temperature, T, summarised

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MISTRY CHEM2020 Mailings Review View For this reaction, a student obtained a range of rate constants, k, as a function of reaction temperature, T, summarised in the table below: Rate constant, k (s!) Temperature (C) 0.00018 477 0.0027 523 0.030 577 0.26 623 (i) Show how the Arrhenius equation, k=Ae-E/RT, can be converted to the linear form, y=mx+c. Q2 Continues overleaf Page 3 of 5 I (ii) Use the linear form of the Arrhenius equation to create an appropriate plot of the data Use the plot to determine the activation energy. E. and the pre- exponential factor, A. Show all units in your calculation. Gas constant, R. 8.314 J mol What is the value of the rate constant predicted to be at a temperature of 700 C

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