Solid sodium azide (NaN3) is a commonly used propellant in car airbags, where a "balloon" is inflated by the nitrogen gas created by the decomposition of NaN3: 2NAN3(s) → 2Na(s) + 3N2(g) レ=マ NaN3 Cs) Nals) Constant T, P If you start with 7.429 g of NaN3, and the reaction occurs at a constant temperature and pressure of 302 K and 1.0 atm, what will the final volume of the airbag be? State your answer in L (without units). You may assume solids do not contribute to the volume, and that N2 behaves as an ideal gas.

Chemistry: An Atoms First Approach
2nd Edition
ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
Publisher:Steven S. Zumdahl, Susan A. Zumdahl
Chapter8: Gases
Section: Chapter Questions
Problem 97E: Hydrogen azide, HN3, decomposes on heating by the following unbalanced equation: HN3O(g)N2(g)+H2(g)...
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Solid sodium azide (NaN3) is a commonly used propellant in car airbags, where a "balloon" is inflated
by the nitrogen gas created by the decomposition of NaN3:
2NAN3(s) → 2Na(s) + 3N2(g)
レ=マ
NaNz 6s)
Nals)
Constant T, P
If you start with 7.429 g of NaN3, and the reaction occurs at a constant temperature and pressure of
302 K and 1.0 atm, what will the final volume of the airbag be? State your answer in L (without
units). You may assume solids do not contribute to the volume, and that N2 behaves as an ideal gas.
Transcribed Image Text:Solid sodium azide (NaN3) is a commonly used propellant in car airbags, where a "balloon" is inflated by the nitrogen gas created by the decomposition of NaN3: 2NAN3(s) → 2Na(s) + 3N2(g) レ=マ NaNz 6s) Nals) Constant T, P If you start with 7.429 g of NaN3, and the reaction occurs at a constant temperature and pressure of 302 K and 1.0 atm, what will the final volume of the airbag be? State your answer in L (without units). You may assume solids do not contribute to the volume, and that N2 behaves as an ideal gas.
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