The major constituents of the atmosphere are nitrogen, N2, and oxygen, O2. Dry atmospheric air at a pressure of 1.000 atm has a partial pressure of N3 of 0.781 atm and a partial pressure of Og of 0.209 atm. At high temperatures, N2 and Oz react to produce nitrogen monoxide (nitric oxide), NO. N2(2) + O2 (9) = 2NO(9) Suppose a sample of dry air is raised to 2105°C in a hot flame and then rapidly cooled to fix the amount of NO formed. If K, for this reaction at this temperature is 2.3 x 10, how many grams of NO would be produced from 329.0 g of dry air?

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The major constituents of the atmosphere are nitrogen, N2, and oxygen, O2. Dry atmospheric air at a pressure of 1.000 atm has a partial pressure of N3 of 0.781 atm and a partial pressure of Og
of 0.209 atm. At high temperatures, N2 and Oz react to produce nitrogen monoxide (nitric oxide), NO.
N2(2) + O2 (9) = 2NO(9)
Suppose a sample of dry air is raised to 2105°C in a hot flame and then rapidly cooled to fix the amount of NO formed. If K, for this reaction at this temperature is 2.3 x 10, how many grams
of NO would be produced from 329.0 g of dry air?
Transcribed Image Text:The major constituents of the atmosphere are nitrogen, N2, and oxygen, O2. Dry atmospheric air at a pressure of 1.000 atm has a partial pressure of N3 of 0.781 atm and a partial pressure of Og of 0.209 atm. At high temperatures, N2 and Oz react to produce nitrogen monoxide (nitric oxide), NO. N2(2) + O2 (9) = 2NO(9) Suppose a sample of dry air is raised to 2105°C in a hot flame and then rapidly cooled to fix the amount of NO formed. If K, for this reaction at this temperature is 2.3 x 10, how many grams of NO would be produced from 329.0 g of dry air?
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