QuestionJune 12, 2025

Part: 1/3 Part 2 of 3 How many moles of the product Fe_(2)O_(3) form? Be sure your answer has the correct number of significant figures. square molFe_(2)O_(3)

Part: 1/3 Part 2 of 3 How many moles of the product Fe_(2)O_(3) form? Be sure your answer has the correct number of significant figures. square molFe_(2)O_(3)
Part: 1/3
Part 2 of 3
How many moles of the product
Fe_(2)O_(3)
form? Be sure your answer has the correct number of significant figures.
square molFe_(2)O_(3)

Solution
4.3(179 votes)

Answer

\square \text{ mol } Fe_{2}O_{3} Explanation 1. Identify the Reaction Determine the balanced chemical equation involving Fe_2O_3 formation. Typically, 4Fe + 3O_2 \rightarrow 2Fe_2O_3. 2. Calculate Moles of Reactants Use given data to find moles of reactants (e.g., moles of Fe or O_2). Assume you have this information. 3. Apply Stoichiometry Use stoichiometric coefficients from the balanced equation. For every 4 moles of Fe, 2 moles of Fe_2O_3 form. **Moles of Fe_2O_3 = \frac{1}{2} \times \text{moles of } Fe**. 4. Significant Figures Ensure the final answer reflects the correct number of significant figures based on initial data.

Explanation

1. Identify the Reaction<br /> Determine the balanced chemical equation involving $Fe_2O_3$ formation. Typically, $4Fe + 3O_2 \rightarrow 2Fe_2O_3$.<br /><br />2. Calculate Moles of Reactants<br /> Use given data to find moles of reactants (e.g., moles of $Fe$ or $O_2$). Assume you have this information.<br /><br />3. Apply Stoichiometry<br /> Use stoichiometric coefficients from the balanced equation. For every 4 moles of $Fe$, 2 moles of $Fe_2O_3$ form. **Moles of $Fe_2O_3 = \frac{1}{2} \times \text{moles of } Fe$**.<br /><br />4. Significant Figures<br /> Ensure the final answer reflects the correct number of significant figures based on initial data.
Click to rate: