MISSED THIS? Watch KCV 8.2; Read Section 8.3. You can click on the Review link to access the section in your e Text. For the reaction shown, calculate how many moles of NH3 form when each amount of reactant completely reacts. 3N₂ H4 (1)→ 4NH3 (g) + N₂ (g) Correct Use the conversion factor between moles of N₂ H4 and NH3 from the balanced chemical equation to solve the problem: Part D 6.4 x 10-2 mol N₂ H4 X 9.45 x 107 mol N₂ H4 Express your answer using three significant figures. 4 mol NH, 3 mol N₂H₂ = 8.5 x 10-2 mol NH3
MISSED THIS? Watch KCV 8.2; Read Section 8.3. You can click on the Review link to access the section in your e Text. For the reaction shown, calculate how many moles of NH3 form when each amount of reactant completely reacts. 3N₂ H4 (1)→ 4NH3 (g) + N₂ (g) Correct Use the conversion factor between moles of N₂ H4 and NH3 from the balanced chemical equation to solve the problem: Part D 6.4 x 10-2 mol N₂ H4 X 9.45 x 107 mol N₂ H4 Express your answer using three significant figures. 4 mol NH, 3 mol N₂H₂ = 8.5 x 10-2 mol NH3
Chemistry
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![MISSED THIS? Watch KCV 8.2; Read Section 8.3.
You can click on the Review link to access the
section in your e Text.
For the reaction shown, calculate how many moles
of NH3 form when each amount of reactant
completely reacts.
3N₂ H4 (1) → 4NH3 (g) + N₂ (g)
Correct
Use the conversion factor between moles of N₂ H4 and NH3 from the balanced chemical equation to solve the
problem:
Part D
9.45 × 107 mol N₂ H4
Express your answer using three significant figures.
——| ΑΣΦ
12.6 • 108
●
6.4 x 10-2 mol N₂H4 ×
X
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mol
4 mol NH3
3 mol N₂H4
8.5 x 10-2 mol NH3
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Transcribed Image Text:MISSED THIS? Watch KCV 8.2; Read Section 8.3.
You can click on the Review link to access the
section in your e Text.
For the reaction shown, calculate how many moles
of NH3 form when each amount of reactant
completely reacts.
3N₂ H4 (1) → 4NH3 (g) + N₂ (g)
Correct
Use the conversion factor between moles of N₂ H4 and NH3 from the balanced chemical equation to solve the
problem:
Part D
9.45 × 107 mol N₂ H4
Express your answer using three significant figures.
——| ΑΣΦ
12.6 • 108
●
6.4 x 10-2 mol N₂H4 ×
X
Provide Feedback
?
Submit Previous Answers Request Answer
X Incorrect; Try Again; 7 attempts remaining
mol
4 mol NH3
3 mol N₂H4
8.5 x 10-2 mol NH3
Next >
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