A chemist is studying the following equilibirum, which has the given equilibrium constant at a certain temperature: 2 NO(g) + Cl₂(g) = 2 NOC1 (g) K₁₂=4. × 100 He fills a reaction vessel at this temperature with 8.0 atm of nitrogen monoxide gas and 7.5 atm of chlorine gas. Use this data to answer the questions in the table below. Can you predict the equilibrium pressure of NOCI, using only the tools available to you within ALEKS? If you said yes, then enter the equilibrium pressure of NOCI at right. Round your answer to 1 significant digit. O yes O no 0 atm X

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A chemist is studying the following equilibirum, which has the given equilibrium constant at a certain temperature:
2 NO(g) + Cl₂(g) = 2 NOC1 (g)
K₁₂=4.×100
He fills a reaction vessel at this temperature with 8.0 atm of nitrogen monoxide gas and 7.5 atm of chlorine gas. Use this data to answer the questions in the
table below.
Can you predict the equilibrium pressure of NOC1, using only the
tools available to you within ALEKS?
If you said yes, then enter the equilibrium pressure of NOC1 at
right. Round your answer to 1 significant digit.
O yes
O no
0
atm
X
Transcribed Image Text:A chemist is studying the following equilibirum, which has the given equilibrium constant at a certain temperature: 2 NO(g) + Cl₂(g) = 2 NOC1 (g) K₁₂=4.×100 He fills a reaction vessel at this temperature with 8.0 atm of nitrogen monoxide gas and 7.5 atm of chlorine gas. Use this data to answer the questions in the table below. Can you predict the equilibrium pressure of NOC1, using only the tools available to you within ALEKS? If you said yes, then enter the equilibrium pressure of NOC1 at right. Round your answer to 1 significant digit. O yes O no 0 atm X
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A chemist is studying the following equilibirum, which has the given equilibrium constant at a certain temperature:

2NO(g) + Cl2(g) ----> 2NOC1 (g)

He fills a reaction vessel at this temperature with 8.0 atm of nitrogen monoxide gas and 7.5 atm of chlorine gas. Use this data to answer the questions in the table below.

Can you predict the equilibrium pressure of NOCI, using only the tools available to you within ALEKS?

If you said yes, then enter the equilibrium pressure of NOCI at right. Round your answer to 1 significant digit.

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