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If a chemist calculates the maximum amount of product that could be obtained in a chemical reaction, he or she is calculating the
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
The coefficients in a chemical equation
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
To balance a chemical equation, it is permissible to adjust the
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
In the reaction A +B produces C + D, if there is more reactant B than is required to completely react with all of A, then
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
The substance that is not completely used up in a chemical reaction is known as the
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
The general equation for a synthesis reaction is
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
Nitrogen gas reacts with hydrogen gas to produce NH3. What is the mole ratio of hydrogen gas to NH3?
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
The production of a solid in a double displacement reaction results in the formation of a
excess reactant
precipitate
A is the limiting reactant
A + B produces AB
coefficients
3:2
indicate the number of moles of each substance that react
theoretical ield
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