Lithium and nitrogen react in a combination reaction to produce lithium nitride: 6Li (s) + N 2 (g) – 2Li 3N (s) In a particular experiment, 3.50-g samples of lithium is reacted with 3.50-g of nitrogen. The theoretical yield of lithium nitride is g. 17.6 O 5.85 O 3.52 O 8.7 2.93

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Lithium and nitrogen react in a combination reaction to produce lithium nitride: 6Li(s)+N 2 (g) 2Ll gN(s) In a particular experiment, 3.50-g samples of lithium is reacted with 3.50 - g of nitrogen. The theoretical yield of lithium nitride is
**Lithium and Nitrogen Reaction to Produce Lithium Nitride**

In a combination reaction, lithium and nitrogen react to produce lithium nitride. The balanced chemical equation for this reaction is:

\[ 6 \text{Li (s)} + \text{N}_2 \text{(g)} \rightarrow 2 \text{Li}_3\text{N (s)} \]

**Experiment Details:**

In a particular experiment, a 3.50-g sample of lithium is reacted with 3.50 g of nitrogen. The theoretical yield of lithium nitride is:

- [ ] 17.6 g
- [ ] 5.85 g
- [ ] 3.52 g
- [ ] 8.7 g
- [ ] 2.93 g

Determine the correct theoretical yield based on the given reactant quantities.
Transcribed Image Text:**Lithium and Nitrogen Reaction to Produce Lithium Nitride** In a combination reaction, lithium and nitrogen react to produce lithium nitride. The balanced chemical equation for this reaction is: \[ 6 \text{Li (s)} + \text{N}_2 \text{(g)} \rightarrow 2 \text{Li}_3\text{N (s)} \] **Experiment Details:** In a particular experiment, a 3.50-g sample of lithium is reacted with 3.50 g of nitrogen. The theoretical yield of lithium nitride is: - [ ] 17.6 g - [ ] 5.85 g - [ ] 3.52 g - [ ] 8.7 g - [ ] 2.93 g Determine the correct theoretical yield based on the given reactant quantities.
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