Suppose a chemical engineer studying a new catalyst for the Haber reaction finds that 914. liters per second of dinitrogen are consumed when the reaction is run at 214. °C and the dinitrogen is supplied at 0.62 atm. Calculate the rate at which ammonia is being produced. Give your answer in kilograms per second. Round your answer to 2 significant digits.

Chemistry for Engineering Students
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ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
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Chapter5: Gases
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In the Haber reaction, patented by German chemist Fritz Haber in 1908, dinitrogen gas combines with dihydrogen gas to produce gaseous ammonia. This
reaction is now the first step taken to make most of the world's fertilizer.
Suppose a chemical engineer studying a new catalyst for the Haber reaction finds that 914. liters per second of dinitrogen are consumed when the reaction is
run at 214. °C and the dinitrogen is supplied at 0.62 atm. Calculate the rate at which ammonia is being produced. Give your answer in kilograms per second.
Round your answer to 2 significant digits.
kg
04/0
S
x10
olo
Transcribed Image Text:In the Haber reaction, patented by German chemist Fritz Haber in 1908, dinitrogen gas combines with dihydrogen gas to produce gaseous ammonia. This reaction is now the first step taken to make most of the world's fertilizer. Suppose a chemical engineer studying a new catalyst for the Haber reaction finds that 914. liters per second of dinitrogen are consumed when the reaction is run at 214. °C and the dinitrogen is supplied at 0.62 atm. Calculate the rate at which ammonia is being produced. Give your answer in kilograms per second. Round your answer to 2 significant digits. kg 04/0 S x10 olo
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