Sulfur dioxide and oxygen react to form sulfur trioxide during one of the key steps in sulfuric acid synthesis. An industrial chemist studying this reaction fills a 500. mL flask with 3.3 atm of sulfur dioxide gas and 3.2 atm of oxygen gas, and when the mixture has come to equilibrium measures the partial pressure of sulfur trioxide gas to be 2.6 atm. Calculate the pressure equilibrium constant for the reaction of sulfur dioxide and oxygen at the final temperature of the mixture. Round your answer to 2 significant digits. 0 10

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Sulfur dioxide and oxygen react to form sulfur trioxide during one of the key steps in sulfuric acid synthesis. An industrial chemist
studying this reaction fills a 500. mL flask with 3.3 atm of sulfur dioxide gas and 3.2 atm of oxygen gas, and when the mixture has come
to equilibrium measures the partial pressure of sulfur trioxide gas to be 2.6 atm.
Calculate the pressure equilibrium constant for the reaction of sulfur dioxide and oxygen at the final temperature of the mixture. Round
your answer to 2 significant digits.
K₁ = 0
P
x10
X
Ś
Transcribed Image Text:Sulfur dioxide and oxygen react to form sulfur trioxide during one of the key steps in sulfuric acid synthesis. An industrial chemist studying this reaction fills a 500. mL flask with 3.3 atm of sulfur dioxide gas and 3.2 atm of oxygen gas, and when the mixture has come to equilibrium measures the partial pressure of sulfur trioxide gas to be 2.6 atm. Calculate the pressure equilibrium constant for the reaction of sulfur dioxide and oxygen at the final temperature of the mixture. Round your answer to 2 significant digits. K₁ = 0 P x10 X Ś
Expert Solution
Step 1

Given that, 

Initial pressure of SO2 = 3.3 atm

Initial pressure of O2 = 3.2 atm 

Equilibrium pressure of SO3 = 2.6 atm 

Equilibrium constant ,kp = ?

 

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