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Problems · Problem 6.13

Q.A first order gas phase reaction has activation energy of 240 kJ mol−1^{-1}. If the pre-exponential factor is 1.6 ×\times 1013^{13} s−1^{-1}. what is the rate constant of the reaction at 600 K?

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log10_{10}(A/kk) = 240000/(2.303 ×\times 8.314 ×\times 600) = 20.89 →\to A/kk = 7.78 ×\times 1020^{20} →\to kk = 2.055 ×\times 10−8^{-8} s−1^{-1}.

Step 1. The Arrhenius equation k=A e−Ea/RTk = A\,e^{-E_a/RT} is written as log⁡10Ak=Ea2.303 RT\log_{10}\dfrac{A}{k} = \dfrac{E_a}{2.303\,RT}.

Step 2. With EaE_a = 240 kJ mol−1^{-1} = 240 ×\times 103^3 J mol−1^{-1} and T = 600 K: log⁡10Ak=240×1032.303×8.314×600\log_{10}\dfrac{A}{k} = \dfrac{240 \times 10^3}{2.303 \times 8.314 \times 600} = 20.89. …

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