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MHT CET · Chemistry · Thermodynamics (C)

For the following reaction \(\mathrm{Fe}_{2} \mathrm{O}_{3(\mathrm{~s})}+3 \mathrm{CO}_{(\mathrm{g})} \longrightarrow 2 \mathrm{Fe}_{(\mathrm{s})}+3 \mathrm{CO}_{2(\mathrm{~g})}\) \(\Delta \mathrm{H}^{\circ}=-29 \cdot 8 \mathrm{~kJ}\) and \(\Delta \mathrm{S}^{\circ}=15 \mathrm{JK}^{-1}\). What is the value of \(\Delta \mathrm{S}_{\text {(total) }}\) at \(298 \mathrm{~K}\) ?

  1. A 29.8 J
  2. B \(100 \cdot 0 \mathrm{~J}\)
  3. C \(298 \cdot 0 \mathrm{~J}\)
  4. D \(115 \cdot 0 \mathrm{~J}\)
Verified Solution

Answer & Solution

Correct Answer

(D) \(115 \cdot 0 \mathrm{~J}\)

Step-by-step Solution

Detailed explanation

Since the reaction is exothermic, system loses heat to surrounding. Hence the entropy of the surrounding increases.
\(\Delta \mathrm{H}_{\text {surr }} =+29.8 \mathrm{~kJ}=29800 \mathrm{~J} \)
\( \therefore \Delta \mathrm{S}_{\text {sur }} =\frac{\Delta \mathrm{H}_{\text {sur }}}{\mathrm{T}}=\frac{29800}{298}=100 \mathrm{JK}^{-1} \)
\( \therefore \Delta \mathrm{S}_{\text {Total }} =\Delta \mathrm{S}_{\text {sys }}+\Delta \mathrm{S}_{\text {surr }}=15+100\) \(=115 \mathrm{JK}^{-1}\)