Calculating the reaction rate of one reactant from that of another Nitric acid is a key industrial chemical, largely used to make fertilizers and explosives. The first step in its synthesis is the oxidation of ammonia. In this reaction, gaseous ammonia reacts with dioxygen gas to produce nitrogen monoxide gas and water. Suppose a chemical engineer studying a new catalyst for the oxidation of ammonia reaction finds that 505. liters per second of dioxygen are consumed when the reaction is run at 164. °C and the dioxygen is supplied at 0.35 atm. Calculate the rate at which nitrogen monoxide is being produced. Give your answer in kilograms per second. Be sure your answer has the correct number of significant digits. ☐ x10 kg S ? مله 18 Ar

World of Chemistry, 3rd edition
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ISBN:9781133109655
Author:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCoste
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Chapter9: Chemical Quantities
Section9.2: Using Chemical Equations To Calculate Mass
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Calculating the reaction rate of one reactant from that of another
Nitric acid is a key industrial chemical, largely used to make fertilizers and explosives. The first step in its synthesis is the oxidation of ammonia. In this reaction,
gaseous ammonia reacts with dioxygen gas to produce nitrogen monoxide gas and water.
Suppose a chemical engineer studying a new catalyst for the oxidation of ammonia reaction finds that 505. liters per second of dioxygen are consumed when the
reaction is run at 164. °C and the dioxygen is supplied at 0.35 atm. Calculate the rate at which nitrogen monoxide is being produced. Give your answer in
kilograms per second. Be sure your answer has the correct number of significant digits.
☐ x10
kg
S
?
مله
18
Ar
Transcribed Image Text:Calculating the reaction rate of one reactant from that of another Nitric acid is a key industrial chemical, largely used to make fertilizers and explosives. The first step in its synthesis is the oxidation of ammonia. In this reaction, gaseous ammonia reacts with dioxygen gas to produce nitrogen monoxide gas and water. Suppose a chemical engineer studying a new catalyst for the oxidation of ammonia reaction finds that 505. liters per second of dioxygen are consumed when the reaction is run at 164. °C and the dioxygen is supplied at 0.35 atm. Calculate the rate at which nitrogen monoxide is being produced. Give your answer in kilograms per second. Be sure your answer has the correct number of significant digits. ☐ x10 kg S ? مله 18 Ar
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