TUTOR Solution Stoichiometry: Limiting Reactant concentration of reactants moles of reactants limiting reactant, and moles of product mass of product Step 1 Calculate the amount, in moles, of each reactant initially present, based on the concentration and volume. Step 2 Determine which reactant is limiting by comparing the mole ratio of reactants actually present with the mole ratio from the balanced equation. Step 3 Calculate the amount of product formed, in moles, from complete reaction of the limiting reactant. Convert to units of grams. Consider the reaction: 2 Na3PO4(aq) + 3 Cu(NO3)2(aq) → Cu3(PO4)2(s) + 6 NaNO3(aq) What mass of Cu3(PO4)2 can be formed when 71.1 mL of a 0.100 M solution of Na3PO4 is mixed with 28.9 mL of a 0.570 M solution of Cu(NO3)2? g Submit What is the amount, in moles, of Na3PO4 present before the reaction? mol Na3PO4 Submit
TUTOR Solution Stoichiometry: Limiting Reactant concentration of reactants moles of reactants limiting reactant, and moles of product mass of product Step 1 Calculate the amount, in moles, of each reactant initially present, based on the concentration and volume. Step 2 Determine which reactant is limiting by comparing the mole ratio of reactants actually present with the mole ratio from the balanced equation. Step 3 Calculate the amount of product formed, in moles, from complete reaction of the limiting reactant. Convert to units of grams. Consider the reaction: 2 Na3PO4(aq) + 3 Cu(NO3)2(aq) → Cu3(PO4)2(s) + 6 NaNO3(aq) What mass of Cu3(PO4)2 can be formed when 71.1 mL of a 0.100 M solution of Na3PO4 is mixed with 28.9 mL of a 0.570 M solution of Cu(NO3)2? g Submit What is the amount, in moles, of Na3PO4 present before the reaction? mol Na3PO4 Submit
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:TUTOR
Solution Stoichiometry: Limiting Reactant
concentration of reactants
moles of reactants
limiting reactant, and moles of product
mass of product
Step 1
Calculate the amount, in moles, of each reactant initially present, based on the concentration and volume.
Step 2
Determine which reactant is limiting by comparing the mole ratio of reactants actually present with the mole ratio from the balanced equation.
Step 3
Calculate the amount of product formed, in moles, from complete reaction of the limiting reactant. Convert to units of grams.
Consider the reaction:
2 Na3PO4(aq) + 3 Cu(NO3)2(aq) → Cu3(PO4)2(s) + 6 NaNO3(aq)
What mass of Cu3(PO4)2 can be formed when 71.1 mL of a 0.100 M solution of Na3PO4 is mixed with 28.9 mL of a 0.570 M solution of Cu(NO3)2?
g
Submit
What is the amount, in moles, of Na3PO4 present before the reaction?
mol Na3PO4
Submit
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