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COMEDK · Chemistry · 19. Chemical Kinetics

(i) and (ii) are 2 chemical reactions carried out at TK with identical pre-exponential factors.
(i). \(\text{X} \rightarrow \text{Y} + \text{W}\) with \(k_1\) as rate constant.
(ii). \(\text{X} \rightarrow \text{Z} + \text{W}\) with \(k_2\) as rate constant.
The Activation energy for reaction (ii) is 3 times that of reaction (i).
What is the expression for \(k_1\)?

  1. A \(k_1=-2 k_2 e^{2 E a_1 / R T}\)
  2. B \(k_1={ }^{k_2} / 2 e^{-E a_1 / R T}\)
  3. C \(k_1=k_2 e^{2 E a_1 / R T}\)
  4. D \(k_1=2 k_2 e^{E a_1 / R T}\)
Verified Solution

Answer & Solution

Correct Answer

(C) \(k_1=k_2 e^{2 E a_1 / R T}\)

Step-by-step Solution

Detailed explanation

Both reactions have identical pre-exponential factor \(A\) and \(E_{a2} = 3E_{a1}\). \(k_1 = Ae^{-E_{a1}/RT}\) and \(k_2 = Ae^{-3E_{a1}/RT}\) \(\dfrac{k_1}{k_2} = e^{(-E_{a1}+3E_{a1})/RT} = e^{2E_{a1}/RT}\) \(k_1 = k_2 e^{2E_{a1}/RT}\)