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MHT CET · Chemistry · Chemical Kinetics

Kirchoff's equation is

  1. A \(\log \frac{k_{2}}{k_{1}}=\frac{E_{a}}{2.303 \mathrm{R}}\left[\frac{1}{T_{1}}-\frac{1}{T_{2}}\right]\)
  2. B \(\log \frac{p_{2}}{p_{1}}=\frac{\Delta H_{V}}{2.303 R}\left[\frac{T_{2}-T_{1}}{T_{1} \times T_{2}}\right]\)
  3. C \(\Delta C_{p}=\frac{\Delta H_{2}-\Delta H_{1}}{T_{2}-T_{1}}\)
  4. D \(\log \frac{k_{2}}{k_{1}}=\frac{\Delta H}{2.303 R}\left[\frac{1}{T_{1}}-\frac{1}{T_{2}}\right]\)
Verified Solution

Answer & Solution

Correct Answer

(C) \(\Delta C_{p}=\frac{\Delta H_{2}-\Delta H_{1}}{T_{2}-T_{1}}\)

Step-by-step Solution

Detailed explanation

Equation given, in option (a) is Arrhenius equation, in option (b) is Clausius-Clapeyron equation, in option (c) is Kirchoff's equation, in option (d) is van't Hoff equation.