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MHT CET · Chemistry · Thermodynamics (C)

Which of the following equation, relates temperature of a reaction with \(\Delta \mathrm{H}^{\circ}\) and \(\Delta \mathrm{S}^{\circ}\) at equilibrium?

  1. A \(\Delta H^{\circ}=\frac{T}{\Delta S^{\circ}}\)
  2. B \(\Delta \mathrm{H}^{\circ}=\frac{\Delta \mathrm{S}^{\circ}}{\mathrm{T}}\)
  3. C \(\Delta \mathrm{H}^{\circ}=\mathrm{T} \Delta \mathrm{S}^{\circ}\)
  4. D \(\Delta \mathrm{H}^{\circ}=\frac{1}{\mathrm{~T} \Delta \mathrm{~S}^{\circ}}\)
Verified Solution

Answer & Solution

Correct Answer

(C) \(\Delta \mathrm{H}^{\circ}=\mathrm{T} \Delta \mathrm{S}^{\circ}\)

Step-by-step Solution

Detailed explanation

\(\begin{array}{ll} & \Delta G^{\circ}=\Delta H^{\circ}-T \Delta S^{\circ} \\ & \text { At equilibrium, } \Delta G^{\circ}=0 \\ \therefore \quad & 0=\Delta H^{\circ}-T \Delta S^{\circ} \\ \therefore \quad & \Delta H^{\circ}=T \Delta S^{\circ}\end{array}\)