Fill in the coefficients (include a 1 where appropriate or just a single space) to balance this chemical equation: N, + NH, Blank 1: Blank 2: Blank 3:

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### Balancing Chemical Equations

**Task:**
Fill in the coefficients (include a 1 where appropriate or just a single space) to balance the following chemical equation:

\[ \_\_\_\_\_\_ \, \text{N}_2 + \_\_\_\_\_\_ \, \text{H}_2 \rightarrow \_\_\_\_\_\_ \, \text{NH}_3 \]

#### Input Fields:
- **Blank 1:**
- **Blank 2:**
- **Blank 3:**

#### Instructions:
- Enter the appropriate coefficients in the blanks provided to balance the equation.
- If a coefficient is 1, it can be written as '1' or simply left as a single space.

**Example Explanation:**

For the given reaction:
- **Reactants:** Nitrogen gas (N₂) and Hydrogen gas (H₂)
- **Product:** Ammonia (NH₃)

Use stoichiometry rules to ensure the same number of atoms for each element on both the reactant and product sides. 

#### Solution Help:
To balance this equation:
1. Identify the number of atoms for each element on both sides of the equation.
2. Adjust the coefficients to get the same number of atoms of each element on both sides.

For instance:
\[ \_ \, \text{N}_2 + \_ \, \text{H}_2 \rightarrow \_ \, \text{NH}_3 \]

Balanced:
\[ 1 \, \text{N}_2 + 3 \, \text{H}_2 \rightarrow 2 \, \text{NH}_3 \]

So, 
- **Blank 1:** 1
- **Blank 2:** 3
- **Blank 3:** 2
Transcribed Image Text:### Balancing Chemical Equations **Task:** Fill in the coefficients (include a 1 where appropriate or just a single space) to balance the following chemical equation: \[ \_\_\_\_\_\_ \, \text{N}_2 + \_\_\_\_\_\_ \, \text{H}_2 \rightarrow \_\_\_\_\_\_ \, \text{NH}_3 \] #### Input Fields: - **Blank 1:** - **Blank 2:** - **Blank 3:** #### Instructions: - Enter the appropriate coefficients in the blanks provided to balance the equation. - If a coefficient is 1, it can be written as '1' or simply left as a single space. **Example Explanation:** For the given reaction: - **Reactants:** Nitrogen gas (N₂) and Hydrogen gas (H₂) - **Product:** Ammonia (NH₃) Use stoichiometry rules to ensure the same number of atoms for each element on both the reactant and product sides. #### Solution Help: To balance this equation: 1. Identify the number of atoms for each element on both sides of the equation. 2. Adjust the coefficients to get the same number of atoms of each element on both sides. For instance: \[ \_ \, \text{N}_2 + \_ \, \text{H}_2 \rightarrow \_ \, \text{NH}_3 \] Balanced: \[ 1 \, \text{N}_2 + 3 \, \text{H}_2 \rightarrow 2 \, \text{NH}_3 \] So, - **Blank 1:** 1 - **Blank 2:** 3 - **Blank 3:** 2
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