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Q.The rate constants of a reaction at 500 K and 700 K are 0.02 S^-1 and 0.07 S^-1 respectively. Calculate the values of Ea and A. [R = 8.314 JK^-1 mol^-1]

Gujarat GsebGSEB Higher Secondary Certificate (HSC) Examination 2024Subjective· 3mImportance★★★★★
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Using the two-temperature Arrhenius equation with k1=0.02/s at 500K and k2=0.07/s at 700K gives Ea approx 18.23 kJ/mol, then substituting back gives the pre-exponential factor A approx 1.60 s^-1.

Two-point Arrhenius equation: ln(k2/k1) = (Ea/R)(1/T1 - 1/T2)

Given: k1 = 0.02 s^-1 at T1 = 500K, k2 = 0.07 s^-1 at T2 = 700K, R = 8.314 J K^-1 mol^-1

Step 1 - find Ea:

ln(k2/k1) = ln(0.07/0.02) = ln(3.5) = 1.2528

(1/T1 - 1/T2) = 1/500 - 1/700 = 0.0020000 - 0.0014286 = 0.00057143

Ea = R x ln(k2/k1) / (1/T1 - 1/T2) = 8.314 x 1.2528 / 0.00057143 = 10.416 / 0.00057143 approx 18228 J/mol approx 18.23 kJ/mol

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