The thermite reaction between powdered aluminum and iron(III) oxide, 2A1+ Fe2O3 → Al2O3 + 2Fe produces so much heat the iron that forms is molten. Suppose that in one batch of reactants 4.35 mol of Al was mixed with 2.15 mol of Fe2O3 (a) Which reactant, if either, was the limiting reactant? O Fe2O3 ○ Al O Fe O Al2O3 eTextbook and Media (b) Calculate the number of grams of iron that can be formed from this mixture of reactants. g Fe

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter4: Stoichiometry: Quantitative Information About Chemical Reactions
Section4.2: Reactions In Which One Reactant Is Present In Limited Supply
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The thermite reaction between powdered aluminum and iron(III) oxide,
2A1+ Fe2O3 → Al2O3 + 2Fe
produces so much heat the iron that forms is molten. Suppose that in one batch of reactants 4.35 mol of Al was mixed with 2.15 mol of
Fe2O3
(a) Which reactant, if either, was the limiting reactant?
O Fe2O3
○ Al
O Fe
O Al2O3
eTextbook and Media
(b) Calculate the number of grams of iron that can be formed from this mixture of reactants.
g Fe
Transcribed Image Text:The thermite reaction between powdered aluminum and iron(III) oxide, 2A1+ Fe2O3 → Al2O3 + 2Fe produces so much heat the iron that forms is molten. Suppose that in one batch of reactants 4.35 mol of Al was mixed with 2.15 mol of Fe2O3 (a) Which reactant, if either, was the limiting reactant? O Fe2O3 ○ Al O Fe O Al2O3 eTextbook and Media (b) Calculate the number of grams of iron that can be formed from this mixture of reactants. g Fe
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