Given the following reaction: Mg(s) + 2 HCI(aq) MgCl2(aq) + H2(g) 9.49g of magnesium solid is placed in the reaction to react completely with hydrochloric acid to produce hydrogen gas at 654 mmHg and 22°C. Calculate the volume of hydrogen gas produced.

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**Chemical Reaction and Gas Volume Calculation**

**Given the following reaction:**

\[ \text{Mg(s)} + 2 \text{HCl(aq)} \rightarrow \text{MgCl}_2\text{(aq)} + \text{H}_2\text{(g)} \]

9.49 g of magnesium solid is placed in the reaction to react completely with hydrochloric acid to produce hydrogen gas at 654 mmHg and 22°C. Calculate the **volume of hydrogen gas produced**.

**Explanation:**
- **Mg(s)**: Solid magnesium
- **HCl(aq)**: Aqueous hydrochloric acid
- **MgCl₂(aq)**: Aqueous magnesium chloride
- **H₂(g)**: Gaseous hydrogen

**Conditions Provided:**
- Pressure: 654 mmHg
- Temperature: 22°C
- Magnesium mass: 9.49 g

These details are used to calculate the volume of hydrogen gas produced under the given conditions, employing principles such as stoichiometry and the ideal gas law.
Transcribed Image Text:**Chemical Reaction and Gas Volume Calculation** **Given the following reaction:** \[ \text{Mg(s)} + 2 \text{HCl(aq)} \rightarrow \text{MgCl}_2\text{(aq)} + \text{H}_2\text{(g)} \] 9.49 g of magnesium solid is placed in the reaction to react completely with hydrochloric acid to produce hydrogen gas at 654 mmHg and 22°C. Calculate the **volume of hydrogen gas produced**. **Explanation:** - **Mg(s)**: Solid magnesium - **HCl(aq)**: Aqueous hydrochloric acid - **MgCl₂(aq)**: Aqueous magnesium chloride - **H₂(g)**: Gaseous hydrogen **Conditions Provided:** - Pressure: 654 mmHg - Temperature: 22°C - Magnesium mass: 9.49 g These details are used to calculate the volume of hydrogen gas produced under the given conditions, employing principles such as stoichiometry and the ideal gas law.
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