Nitrogen dioxide is one of the many oxides of nitrogen (often collectively called "NOx") that are of interest to atmospheric chemistry. It can react with itself to form another form of NOx, dinitrogen tetroxide. A chemical engineer studying this reaction fills a 1.5 L flask with 2.0 atm of nitrogen dioxide gas. When the mixture has come to equilibrium he determines that it contains 0.80 atm of nitrogen dioxide gas. The engineer then adds another 0.50 atm of nitrogen dioxide, and allows the mixture to come to equilibrium again. Calculate the pressure of dinitrogen tetroxide after equilibrium reached the second time. Round your answer to 2 significant digits.

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Nitrogen dioxide is one of the many oxides of nitrogen (often collectively called "NOx") that are of interest to atmospheric
chemistry. It can react with itself to form another form of NOx, dinitrogen tetroxide.
A chemical engineer studying this reaction fills a 1.5 L flask with 2.0 atm of nitrogen dioxide gas. When the mixture has come to
equilibrium he determines that it contains 0.80 atm of nitrogen dioxide gas.
The engineer then adds another 0.50 atm of nitrogen dioxide, and allows the mixture to come to equilibrium again. Calculate the
pressure of dinitrogen tetroxide after equilibrium is reached the second time. Round your answer to 2 significant digits.
Transcribed Image Text:Nitrogen dioxide is one of the many oxides of nitrogen (often collectively called "NOx") that are of interest to atmospheric chemistry. It can react with itself to form another form of NOx, dinitrogen tetroxide. A chemical engineer studying this reaction fills a 1.5 L flask with 2.0 atm of nitrogen dioxide gas. When the mixture has come to equilibrium he determines that it contains 0.80 atm of nitrogen dioxide gas. The engineer then adds another 0.50 atm of nitrogen dioxide, and allows the mixture to come to equilibrium again. Calculate the pressure of dinitrogen tetroxide after equilibrium is reached the second time. Round your answer to 2 significant digits.
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