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Q.Will the rate constant of the reaction depend upon T if the EactE_{act} (activation energy) of the reaction is zero?

CBSECBSE Class XII Board 2020Subjective· 1mImportance★★★★★
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When activation energy is zero, the Arrhenius equation reduces to k=Ak = A, making the rate constant independent of temperature.

Why activation energy matters

The Arrhenius equation connects temperature to the rate constant through the activation energy—the minimum energy barrier reactants must overcome to transform into products. The equation captures a fundamental idea: higher temperatures give molecules more kinetic energy, increasing the fraction that can surmount the barrier.

k=Ae−Ea/RTk = A e^{-E_a/RT}

where kk is the rate constant, AA is the pre-exponential factor, EaE_a is the activation energy, RR is the gas constant, and TT is absolute temperature.

The exponential term e−Ea/RTe^{-E_a/RT} embodies the temperature dependence. When EaE_a is large, even small temperature changes dramatically alter kk. But what happens when there's no barrier at all?

The special case: Ea=0E_a = 0

  1. Substitute zero activation energy into the Arrhenius equation:

k=Ae−0/RT=Ae0=A⋅1=Ak = A e^{-0/RT} = A e^0 = A \cdot 1 = A

  1. Interpret the result:

    The rate constant collapses to just the pre-exponential factor AA. This factor represents the frequency of collisions with proper orientation—it depends on molecular properties and collision geometry, but crucially, it has no temperature dependence built into the exponential term.

  2. Physical meaning:

    A zero activation energy means every collision between properly oriented molecules leads to reaction, regardless of their kinetic energy. There's no energy threshold to cross. Temperature might still affect collision frequency slightly through changes in molecular speed, but the dominant exponential temperature dependence vanishes. …

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