component of advanced batteries is lithium nitride, Li3N. The reaction to form Li3N from lithium metal (Li) and nitrogen gas (N2) is given by: 6 Li  +  1 N2 ==> 2 Li3N.  What is the limiting reactant when 6.84 g of lithium (Li) and 56.2 g of nitrogen (N2) are used to make Li3N? How much LiN3 will be produced by the reaction assuming all of the limiting reagent is converted to LiN3?

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Chapter4: Stoichiometry
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Problem 4.43PAE: 4.43 Magnesium nitride forms in a side reaction when magnesium metal burns in air. This reaction may...
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A component of advanced batteries is lithium nitride, Li3N. The reaction to form Li3N from lithium metal (Li) and nitrogen gas (N2) is given by: 6 Li  +  1 N2 ==> 2 Li3N.  What is the limiting reactant when 6.84 g of lithium (Li) and 56.2 g of nitrogen (N2) are used to make Li3N? How much LiN3 will be produced by the reaction assuming all of the limiting reagent is converted to LiN3?

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