A chemist is studying the following equilibirum, which has the given equilibrium constant at a certain temperature: N₂(g) + 3H₂(g)2NH3(g) K-5.x 107 He fills a reaction vessel at this temperature with 10. atm of nitrogen gas and 11. atm of hydrogen gas. Use this data to answer the questions in the table below. Can you predict the equilibrium pressure of NH3, using only the tools available to you within ALEKS? If you said yes, then enter the equilibrium pressure of NH3 at right. Round your answer to 1 significant digit. Oyes 0 no atm X 3 ? 圖山图 do

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### Understanding Equilibrium and Predicting Equilibrium Pressure

A chemist is studying the following equilibrium reaction, which has the given equilibrium constant \( K_p \) at a specific temperature:

\[ \mathrm{N_2(g) + 3 H_2(g) \rightleftharpoons 2 NH_3(g)} \]

\[ K_p = 5.0 \times 10^{-7} \]

In this experiment, the chemist fills a reaction vessel at this temperature with 10 atm of nitrogen gas (\(\mathrm{N_2}\)) and 11 atm of hydrogen gas (\(\mathrm{H_2}\)). Use this data to answer the following question:

**Question:**

Can you predict the equilibrium pressure of \(\mathrm{NH_3}\) using only the tools available to you within ALEKS?

- [ ] yes
- [ ] no

If you selected **yes**, then enter the equilibrium pressure of \(\mathrm{NH_3}\) below. Round your answer to 1 significant digit.

**Equilibrium Pressure of \(\mathrm{NH_3}\):**

- \( \_\_\_\_\_\_ \) atm

#### Explanation of Data Input Tool

There is a data input tool with the following features:
- A checkbox labeled "×10".
- Calculation buttons for confirming (check mark), resetting (circular arrow), and additional help (question mark).

Use this tool to input and calculate the required equilibrium pressure.

---

This content helps students practice predicting equilibrium pressures using provided equilibrium constants and initial pressures in a gaseous reaction system. By engaging with this example, students can apply their knowledge of equilibrium chemistry and use online education tools effectively.
Transcribed Image Text:--- ### Understanding Equilibrium and Predicting Equilibrium Pressure A chemist is studying the following equilibrium reaction, which has the given equilibrium constant \( K_p \) at a specific temperature: \[ \mathrm{N_2(g) + 3 H_2(g) \rightleftharpoons 2 NH_3(g)} \] \[ K_p = 5.0 \times 10^{-7} \] In this experiment, the chemist fills a reaction vessel at this temperature with 10 atm of nitrogen gas (\(\mathrm{N_2}\)) and 11 atm of hydrogen gas (\(\mathrm{H_2}\)). Use this data to answer the following question: **Question:** Can you predict the equilibrium pressure of \(\mathrm{NH_3}\) using only the tools available to you within ALEKS? - [ ] yes - [ ] no If you selected **yes**, then enter the equilibrium pressure of \(\mathrm{NH_3}\) below. Round your answer to 1 significant digit. **Equilibrium Pressure of \(\mathrm{NH_3}\):** - \( \_\_\_\_\_\_ \) atm #### Explanation of Data Input Tool There is a data input tool with the following features: - A checkbox labeled "×10". - Calculation buttons for confirming (check mark), resetting (circular arrow), and additional help (question mark). Use this tool to input and calculate the required equilibrium pressure. --- This content helps students practice predicting equilibrium pressures using provided equilibrium constants and initial pressures in a gaseous reaction system. By engaging with this example, students can apply their knowledge of equilibrium chemistry and use online education tools effectively.
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