Then use the mole ratio to convert from \(\text \: \ce\) to \(\text \: \ce\).This will be done in a single two-step calculation.From this, you are to determine the amount in moles of another substance that will either react with or be produced from the given substance.
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When you are doing a large construction project, you have a good idea of how many nails you will need (lots! When you go to the hardware store, you don't want to sit there and count out several hundred nails.
Then, the moles of the given substance are converted into moles of the unknown by using the mole ratio from the balanced chemical equation.
Example 12.3.1 Tin metal reacts with hydrogen fluoride to produce tin (II) fluoride and hydrogen gas according to the following balanced equation.
Once you verify the equation is balanced, you can establish the relationship between the number of moles of reactants and products.
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Therefore, we need to use mole-mass calculations in combination with mole ratios to solve several different types of mass-based stoichiometry problems.
In this type of problem, the mass of one substance is given, usually in grams.