2NaN3(s) -> 2Na(s) + 3N2(g)

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  1. 2NaN3(s)==>2Na(s) + 3N2(g)How many liters of N2 are produced at STP if the air bag contains 114g of NaN3 ?
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    2. Lisa asked by Lisa
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  2. What volume of nitrogen gas at STP can form from 1.20 mol NaN3?2NaN3(s) 2Na(s) + 3N2(g) A. 40.3 L B. 1.20 L C. 13.4 L D. 1.80 L
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    2. Cortney asked by Cortney
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  3. Which of the following is an oxidation-reduction (redox) reaction?A. 2K(s) + 2H2O(l) → 2KOH(aq) + H2(g) B. 2NaN3(g) → 2Na(g)
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    2. Michael asked by Michael
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  4. The equation of nitrogen produced in a deployed air bag is: 2NaN3 + 42.7KJ--->2Na + 3N2. What amount of heat is needed to
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    2. amanda asked by amanda
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  5. Here is the question:Automobile air bags use the decomposition of sodium azide as their source of gas for rapid inflation:
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    2. Gweedo asked by Gweedo
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  6. 2NaN3(s) -> 2Na(s) + 3N2(g)What mass of sodium azide should be loaded in the device to ensure full inflation of the same air bag
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    2. keitanako asked by keitanako
    3. views icon 1,629 views
  7. Apply the gas laws to determine how many grams of sodium azide (NaN3) are needed to fill the air bag of your vehicle to a volume
    1. answers icon 1 answer
    2. Dani asked by Dani
    3. views icon 692 views
  8. 1. Engineers design air bags that deploy almost instantly upon impact. To do this, an air bag must provide a large amount of gas
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    2. Noelle asked by Noelle
    3. views icon 716 views
  9. The chemical reaction for the generation of gas in an automobile safety air bag is 2NaN3(s)→ 2Na(s)+3N2(g)What volume of gas
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    2. Kayla asked by Kayla
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  10. Air bags are actived when a servere impact causes a steel ball to compress a spring and electrically ignite a detonator cap.
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    2. ESTR3LLA asked by ESTR3LLA
    3. views icon 832 views