A chemist is studying the following equilibirum, which has the given equilibrium constant at a certain temperature: 2 CH₂(g) 3H₂(g) + C₂H₂ (g) K₂=1.x 10 He fills a reaction vessel at this temperature with 9.0 atm of methane gas. Use this data to answer the questions in the table below Can you predict the equilibrium pressure of H₂, using only the tools available to you within ALEKS? If you said yes, then enter the equilibrium pressure of H₂ at right. Round your answer to 1 significant digit. yes no Da atm 0x10 X S

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**Equilibrium Study on Methane Reaction**

A chemist is analyzing the following equilibrium reaction, which is characterized by a specific equilibrium constant at a particular temperature:

\[ 2 \text{CH}_4 (g) \rightleftharpoons 3 \text{H}_2 (g) + \text{C}_2\text{H}_2 (g) \]
\[ K_p = 1.0 \times 10^{-9} \]

The chemist introduces 9.0 atm of methane gas into a reaction vessel at this temperature. Using this information, please address the following queries:

1. Can you predict the equilibrium pressure of \(\text{H}_2\) using only the tools available to you within ALEKS?
   - [ ] yes
   - [ ] no

2. If you said yes, then enter the equilibrium pressure of \(\text{H}_2\) in the provided space, rounding your answer to 1 significant digit.
   - \(\text{____ atm}\)
Transcribed Image Text:**Equilibrium Study on Methane Reaction** A chemist is analyzing the following equilibrium reaction, which is characterized by a specific equilibrium constant at a particular temperature: \[ 2 \text{CH}_4 (g) \rightleftharpoons 3 \text{H}_2 (g) + \text{C}_2\text{H}_2 (g) \] \[ K_p = 1.0 \times 10^{-9} \] The chemist introduces 9.0 atm of methane gas into a reaction vessel at this temperature. Using this information, please address the following queries: 1. Can you predict the equilibrium pressure of \(\text{H}_2\) using only the tools available to you within ALEKS? - [ ] yes - [ ] no 2. If you said yes, then enter the equilibrium pressure of \(\text{H}_2\) in the provided space, rounding your answer to 1 significant digit. - \(\text{____ atm}\)
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