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How many atoms in Li3N?

Updated: 6/6/2024
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6y ago

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Depends on the number of formula units. In one formula unit there are 4 atoms.

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6y ago
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1d ago

In Li3N, there are a total of 4 atoms - 3 lithium atoms (Li) and 1 nitrogen atom (N).

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6y ago

The formula implies 3 lithium atoms for every 1 nitrogen atom. 3+1=4.

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Q: How many atoms in Li3N?
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Related questions

What kind of blond is li3n?

what kind of bond is li3n


What is Li3N name?

Li3N is lithium nitride


What is the chemical formula for the Lithium nitride?

The chemical formula for lithium nitride is Li3N.


What is lithium plus nitrogen?

Li3N; the lithium ion has a charge of +1 (Li+) while the nitride ion has a charge of -3 (N3-)


What is the name Li3N?

Lithium Nitride


What is the ionic compound for Li3N?

The ionic compound for Li3N is lithium nitride. It is formed by the combination of lithium (Li) ions with a +1 charge and nitride (N) ions with a -3 charge.


How many grams of Li3N can be formed from 1.75 moles of Li?

20,32 g of lithium nitride can be obtained.


What is the oxidation number of Li3N?

The oxidation number of Li in Li3N is +1, as it is a Group 1 element. The nitrogen (N) in Li3N has an oxidation number of -3.


How many moles of lithium are needed to produce 0.60 mol of Li3N when the reaction is carried out in the presence of excess nitrogen?

To produce 1 mole of Li3N, 3 moles of lithium are needed according to the balanced equation of the reaction. Therefore, to produce 0.60 mol of Li3N, you will need 3 * 0.60 = 1.80 moles of lithium.


What is chemical name for LiN?

The chemical name for LiN is lithium nitride.


What is Li3N the chemical formula for?

Li3N is the chemical formula for lithium nitride, which is a compound composed of lithium and nitrogen ions. It is used in the production of ceramics and as a precursor in the synthesis of other nitrogen-containing compounds.


What is the formula of the compound of lithium and nitrogen?

The compound formed between lithium and nitrogen is lithium nitride, with the chemical formula Li3N.