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Q.What is Activation Energy? At 600 K, on decomposition of ethyl iodide by following first order reaction, the velocity constant is 1.60×10−5 s−11.60 \times 10^{-5}\ \text{s}^{-1}. Activation Energy of this reaction is 209 kJ/mole. Calculate velocity constant at 700 K temperature. C2H5I (g)⟶C2H4 (g)+HI (g)C_2H_5I\,(g) \longrightarrow C_2H_4\,(g) + HI\,(g)

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2024Subjective· 4mImportance★★★★★
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Activation energy is the minimum energy barrier for reaction; the two-temperature Arrhenius equation gives kk at 700 K ≈6.36×10−3 s−1\approx 6.36\times10^{-3}\ \text{s}^{-1}.

Concept — activation energy (EaE_a). It is the minimum amount of extra energy (over and above the average energy of the reactants) that colliding molecules must have to cross the energy barrier and form the activated complex (transition state), from which products are formed. A larger EaE_a means a slower reaction.

Given: k1=1.60×10−5 s−1k_1=1.60\times10^{-5}\ \text{s}^{-1} at T1=600 KT_1=600\ \text{K}; Ea=209 kJ mol−1=209000 J mol−1E_a=209\ \text{kJ mol}^{-1}=209000\ \text{J mol}^{-1}; T2=700 KT_2=700\ \text{K}; R=8.314 J K−1mol−1R=8.314\ \text{J K}^{-1}\text{mol}^{-1}.

Arrhenius (two-temperature form):

log⁡k2k1=Ea2.303 R(1T1−1T2)\log\dfrac{k_2}{k_1}=\dfrac{E_a}{2.303\,R}\left(\dfrac{1}{T_1}-\dfrac{1}{T_2}\right)

Step 1 — temperature term.

1600−1700=700−600600×700=100420000=2.381×10−4 K−1\dfrac{1}{600}-\dfrac{1}{700}=\dfrac{700-600}{600\times700}=\dfrac{100}{420000}=2.381\times10^{-4}\ \text{K}^{-1}

Step 2 — the constant. …

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