Answer:
483.07 grams
Explanations:
The reaction between Iron (III) oxide and carbon to produce solid iron and carbon monoxide is given as
![Fe_2O_3+3C\rightarrow2Fe+3CO](https://img.qammunity.org/2023/formulas/chemistry/high-school/cpd684nirq09exhitq59ate3o009olhqgz.png)
Determine the moles of Iron(III) oxide
![\begin{gathered} moles\text{ of Fe}_2O_3=\frac{mass}{molar\text{ mass}} \\ moles\text{ of Fe}_2O_3=(690.67)/(159.69) \\ moles\text{ of Fe}_2O_3=4.325moles \end{gathered}](https://img.qammunity.org/2023/formulas/chemistry/high-school/rjskyqujc5sfacpamn3hz3iam65sh9h0m6.png)
According to stoichiometry, 1 mole of Iron(III)oxide produced 2 moles of Iron. The moles of Iron required is expressed as:
![\begin{gathered} mole\text{ of Fe}=2*4.325moles \\ mole\text{ of Fe}=8.65moles \end{gathered}](https://img.qammunity.org/2023/formulas/chemistry/high-school/jgb9mh0bkvq0i4zyp6lmy5ypujdpdpwzgy.png)
Determine the mass of Iron produced
![\begin{gathered} Mass\text{ of Fe}=mole* molar\text{ mass} \\ Mass\text{ of Fe}=8.65*55.845 \\ Mass\text{ of Fe}=483.07grams \end{gathered}](https://img.qammunity.org/2023/formulas/chemistry/high-school/x98dr1ig3ltf8c7xr4earzcrkas44zznbn.png)
Hence the mass of iron that can be produced is 483.07 grams