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Q.What is the effect of temperature on the rate constant of a reaction? How can this effect of temperature on rate constant be represented quantitatively? (1+1=2)

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2025Subjective· 2mImportance★★★★★
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Increasing temperature increases the rate constant because more molecules acquire the minimum energy (EaE_a) needed to react; the Arrhenius equation is the quantitative relationship between kk and TT.

Qualitative effect

For most reactions, the rate constant kk increases with an increase in temperature. As a rough empirical rule, the rate constant (and hence the rate) of many reactions nearly doubles for every 10 ∘C10\,^\circ C (10 K10\ K) rise in temperature. According to collision theory, only molecules possessing energy equal to or greater than the activation energy (EaE_a) can react upon collision; raising the temperature increases the fraction of molecules with energy ≥Ea\ge E_a (from the Maxwell–Boltzmann distribution), so more effective collisions occur per unit time.

Quantitative representation — the Arrhenius equation

k=A e−Ea/RTk = A\,e^{-E_a/RT}

where:

  • AA = the Arrhenius (pre-exponential/frequency) factor, related to the frequency of collisions with proper orientation,
  • EaE_a = activation energy,
  • RR = gas constant, TT = absolute temperature. …

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