2. Zn + NO, → Zn²+ + NH3 (Basic Solution) 3

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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2) Balance the following Oxidation Reduction reaction using either the half reduction method or the oxidation number method. 

**Chemical Reaction in a Basic Solution**

This chemical equation represents a reaction involving zinc and nitrate ions:

**Equation 2:**

\[ \text{Zn} + \text{NO}_3^- \rightarrow \text{Zn}^{2+} + \text{NH}_3 \]

**Components:**

- **Zn:** Zinc metal reacting as a reducing agent.
- **NO\(_3^-\):** Nitrate ion initially present as a reactant.
- **Zn\(^{2+}\):** Zinc ion formed as a product.
- **NH\(_3\):** Ammonia produced in this reaction.

**Context:**

This reaction occurs in a basic solution, indicating that the pH is greater than 7. Basic solutions can influence the reaction pathway and the types of products formed. Understanding the behavior of metals and ions in different pH environments is crucial for predicting and manipulating chemical processes.
Transcribed Image Text:**Chemical Reaction in a Basic Solution** This chemical equation represents a reaction involving zinc and nitrate ions: **Equation 2:** \[ \text{Zn} + \text{NO}_3^- \rightarrow \text{Zn}^{2+} + \text{NH}_3 \] **Components:** - **Zn:** Zinc metal reacting as a reducing agent. - **NO\(_3^-\):** Nitrate ion initially present as a reactant. - **Zn\(^{2+}\):** Zinc ion formed as a product. - **NH\(_3\):** Ammonia produced in this reaction. **Context:** This reaction occurs in a basic solution, indicating that the pH is greater than 7. Basic solutions can influence the reaction pathway and the types of products formed. Understanding the behavior of metals and ions in different pH environments is crucial for predicting and manipulating chemical processes.
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Solution : Basic solution

Unbalanced reaction : Zn + NO3-  Zn2+ + NH3

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