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Limiting a reactant is often accomplished by
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
In a reaction, substances A and B form substance C. If the actual mole ratio of substance B to substance A is less than the balanced equation mole ratio of substance B to substance A, substance B is
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
Percent yield of a product is a measure of a reaction's
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
Stoichiometry is based on the law of conservation of
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
The SI unit of molar mass is the
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
The actual yield of a product is
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
Calculating the mass of a reactant and product from the number of moles of another product or reactant in a chemical equation is an example of a
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
Mole ratios for a reaction are obtained from the
gram/mole
efficiency
mole-to-mass conversion
mass
using an excess of another reactant
measured experimentally
limiting reactant
balanced chemical equation
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