Nitrogen and hydrogen combine at a high temperature, in the presence of a catalyst, to produce ammonia. N, (g) + 3 H, (g) 2 NH3 (g) Assume 0.200 mol N, and 0.651 mol H, are present initially. After complete reaction, how many moles of ammonia are produced? NH3: How many moles of H, remain? H,: How many moles of N, remain?

Chemistry: Principles and Reactions
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< Question 24 of 28 >
Nitrogen and hydrogen combine at a high temperature, in the presence of a catalyst, to produce ammonia.
N2 (g) + 3 H, (g) → 2 NH,(g)
|
Assume 0.200 mol N, and 0.651 mol H, are present initially.
After complete reaction, how many moles of ammonia are produced?
NH3:
How many moles of H, remain?
H,:
How many moles of N, remain?
IA
Transcribed Image Text:< Question 24 of 28 > Nitrogen and hydrogen combine at a high temperature, in the presence of a catalyst, to produce ammonia. N2 (g) + 3 H, (g) → 2 NH,(g) | Assume 0.200 mol N, and 0.651 mol H, are present initially. After complete reaction, how many moles of ammonia are produced? NH3: How many moles of H, remain? H,: How many moles of N, remain? IA
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