Answer:
- The option B) Fe₂O₃ (s) + 3C(s) → 2Fe(s) + 3CO₂(g), because the reactants are only solid units and the products contain gas molecules.
Step-by-step explanation:
A positive entropy change means that the entropy of the products is greater than the entropy of the reactants.
Entropy in a measure of the radomness or disorder of the system.
Let's see every reaction:
A) 4NO₂ (g) + 2 H₂O (l) + O₂ (g) → 4 HNO₃ (aq)
Since 5 molecules of a gas (high disorder) combines with 2 molecules of liquid to produce 4 units of aqueous HNO₃ you may expect that the product is more ordered than the reactants, which means that the change in entropy is negative (the entropy decreases).
B) Fe₂O₃ (s) + 3C(s) → 2Fe(s) + 3CO₂(g)
The left side (reactants) show only solid substances which is a highly ordered arrangement while the right side (products) show the formation a solid (ordered arrangement) and a gas (highly disoredered arrangement), so you can predict the increase of the system entropy, i.e. a positive entropy change.
The equation C) shows the combination of 12 gas molecules to produce 1 solid and 6 gas molecules, so you can expect that the entropy will decrease, i.e. a negative entropy change.
For equation D) the products include solid and gas reactants while the product is just one unit of solid substance, letting you to predict a negative entropy change.