In 1991 it was discovered that nitrous oxide (N,O) is produced in the synthesis of nylon. This compound, which is released into the atmosphere, contributes both to the depletion of ozone in the stratosphere and the greenhouse effect. One of the intermediates in nylon manufacture is adipic acid [HOOC(CH,),COOH]. Assume 2.40 x 10° kg of adipic acid is consumed every year. It is estimated that for every mol of adipic acid produced, 1 mol of N,0 is generated. What is the maximum number of moles of O3 that can be destroyed as a result of this process per year? x 10 mol O3 (Enter your answer in scientific notation.)

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In 1991 it was discovered that nitrous oxide (N₂O) is produced in the synthesis of nylon. This compound, which is released into the atmosphere, contributes both to the depletion of ozone in the stratosphere and the greenhouse effect.

One of the intermediates in nylon manufacture is adipic acid [HOOC(CH₂)₄COOH]. Assume 2.40 × 10⁹ kg of adipic acid is consumed every year. It is estimated that for every mol of adipic acid produced, 1 mol of N₂O is generated. What is the maximum number of moles of O₃ that can be destroyed as a result of this process per year?

[   ] × 10[   ] mol O₃

(Enter your answer in scientific notation.)
Transcribed Image Text:In 1991 it was discovered that nitrous oxide (N₂O) is produced in the synthesis of nylon. This compound, which is released into the atmosphere, contributes both to the depletion of ozone in the stratosphere and the greenhouse effect. One of the intermediates in nylon manufacture is adipic acid [HOOC(CH₂)₄COOH]. Assume 2.40 × 10⁹ kg of adipic acid is consumed every year. It is estimated that for every mol of adipic acid produced, 1 mol of N₂O is generated. What is the maximum number of moles of O₃ that can be destroyed as a result of this process per year? [ ] × 10[ ] mol O₃ (Enter your answer in scientific notation.)
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