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Q.Explain the dependence of rate of reaction on temperature.

Chhattisgarh CgbseCGBSE Intermediate Board 2020Subjective· 3mImportance★★★★★
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Reaction rate rises with temperature because more molecules acquire the activation energy needed to react; this is quantified by the Arrhenius equation.

For a reaction to occur, colliding molecules must possess energy equal to or greater than a minimum threshold called the activation energy (EaE_a). At any given temperature, molecular kinetic energies are distributed over a range (the Maxwell–Boltzmann distribution) — only a fraction of molecules have energy ≥Ea\geq E_a at a given instant.

Effect of raising temperature: as temperature increases, the Maxwell–Boltzmann energy-distribution curve flattens and shifts to the right (toward higher energies). This means a much larger fraction of molecules now possess energy equal to or greater than EaE_a, so a much larger fraction of collisions become effective (successful) collisions leading to product formation. As a rule of thumb, the rate of a reaction approximately doubles for every 10°C rise in temperature (temperature coefficient ≈2\approx 2).

Quantitative relation — the Arrhenius equation:

k=A e−Ea/RTk = A\,e^{-E_a/RT}

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

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