Depends on the number of formula units. In one formula unit there are 4 atoms.
Li3N is an ionic compound. It is formed from the transfer of electrons from lithium atoms to nitrogen atoms, resulting in the formation of lithium ions (Li+) and nitride ions (N3-).
The chemical formula for lithium nitride is Li3N.
Li3N is lithium nitride
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.
The chemical symbol for lithium nitride is Li3N. In Li3N, each lithium atom has an oxidation number of +1, while the nitrogen atom has an oxidation number of -3.
Li3N is an ionic compound. It is formed from the transfer of electrons from lithium atoms to nitrogen atoms, resulting in the formation of lithium ions (Li+) and nitride ions (N3-).
The chemical formula for lithium nitride is Li3N.
what kind of bond is li3n
Li3N; the lithium ion has a charge of +1 (Li+) while the nitride ion has a charge of -3 (N3-)
Li3N is lithium nitride
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.
Li3N is lithium nitride, an ionic compound. Lithium, being an alkali metal, has 1 valence electron. The "3" subscript means there are 3 of them. Nitrogen is a non-metal with 5 valence electrons. This means it needs 3 more to satisfy the octet rule, which it gets from the 3 lithiums. So, nitrogen's 5 plus lithium's 1 (times 3) = a total of 8 valence electrons.
The chemical symbol for lithium nitride is Li3N. In Li3N, each lithium atom has an oxidation number of +1, while the nitrogen atom has an oxidation number of -3.
The name of the binary ionic compound Li3N is lithium nitride.
The balanced chemical equation for the formation of lithium nitride (Li3N) from lithium and nitrogen is: [ 6 \text{Li} + \text{N}_2 \rightarrow 2 \text{Li}_3\text{N} ] From the equation, 6 moles of lithium produce 2 moles of Li3N. Therefore, to produce 0.31 moles of Li3N, you would need ( 0.31 \text{ mol Li3N} \times \frac{6 \text{ mol Li}}{2 \text{ mol Li3N}} = 0.93 \text{ mol Li} ). Thus, 0.93 moles of lithium are required.
the ratio for Li +Li3N is 6:2 since you need 0.60 moles. you would divide: 0.60/(6/2)=0.067
20,32 g of lithium nitride can be obtained.