concept check! The depletion of ozone (O3) in the stratosphere has been a matter of great concern among scientists in recent years. It is believed that ozone can react with nitric oxide (NO) that is discharged from high altitude planes. If 6.28 g of O, reacts with 9.13 g of NO, 303 + NO → 402 + NO2 a. Which compound will be the limiting reactant? b. How many grams of NO₂ will be produced? c. The experiment is performed, the NO2 gas is collected, and its mass is found to be 1.67 g. What is the percent yield? Molar mass of 03 - 48 g/mol Molar mass of NO 30.01 g/mol Molar mass of NO2 48.01 g/mol = =

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concept check!
The depletion of ozone (O₂) in the stratosphere has been a matter of great
concern among scientists in recent years. It is believed that ozone can react with
nitric oxide (NO) that is discharged from high altitude planes. If 6.28 g of O₂ reacts
with 9.13 g of NO,
303 + NO → 402 + NO2
a. Which compound will be the limiting reactant?
b. How many grams of NO₂ will be produced?
c. The experiment is performed, the NO2 gas is collected, and its mass is found to
be 1.67 g. What is the percent yield?
Molar mass of 03 - 48 g/mol
Molar mass of NO 30.01 g/mol
Molar mass of NO2 = 48.01 g/mol
=
Transcribed Image Text:concept check! The depletion of ozone (O₂) in the stratosphere has been a matter of great concern among scientists in recent years. It is believed that ozone can react with nitric oxide (NO) that is discharged from high altitude planes. If 6.28 g of O₂ reacts with 9.13 g of NO, 303 + NO → 402 + NO2 a. Which compound will be the limiting reactant? b. How many grams of NO₂ will be produced? c. The experiment is performed, the NO2 gas is collected, and its mass is found to be 1.67 g. What is the percent yield? Molar mass of 03 - 48 g/mol Molar mass of NO 30.01 g/mol Molar mass of NO2 = 48.01 g/mol =
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