Automobile air bags use the decomposition of sodium azide as their source of gas for rapid inflation. The chemical equation hat represents this reaction is shown below: 2NaN3 (s) → 2Na(s) + 3N₂(g) What mass of NaN3 is required to provide 40.0 L of N₂ at 25.0 °C and 763 torr? moles of N₂ (g) produced = Write your response here... moles Please type your answer submit moles of NaN3 (s) required= Write your response here... Please type your answer to submit grams of NaN3 (s) required= Write your response here... moles grams

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Automobile air bags use the decomposition of sodium azide as their source of gas for rapid inflation. The chemical equation hat
represents this reaction is shown below:
2NaN3 (s) → 2Na(s) + 3N2(g)
What mass of NaN3 is required to provide 40.0L of N2 at 25.0 °C and 763 torr?
moles of N2(g) produced =
Write your response here. !
moles
Please type your answer to submit
moles of NaN3 (Ss) required =
Write your response here.
moles
Please type your answer to submit
grams of NaN3 (s) required =
Write your response here. !
grams
Please type your answer to submit
Transcribed Image Text:Automobile air bags use the decomposition of sodium azide as their source of gas for rapid inflation. The chemical equation hat represents this reaction is shown below: 2NaN3 (s) → 2Na(s) + 3N2(g) What mass of NaN3 is required to provide 40.0L of N2 at 25.0 °C and 763 torr? moles of N2(g) produced = Write your response here. ! moles Please type your answer to submit moles of NaN3 (Ss) required = Write your response here. moles Please type your answer to submit grams of NaN3 (s) required = Write your response here. ! grams Please type your answer to submit
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