3NH4* + BiN (s) →BI3+ + 4NH3 The reaction above occurs in liquid ammonia. In this reaction, the ammonium ion behaves as: a base a reducing agent O an oxidizing an acid

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**Chemical Reaction Analysis**

**Reaction:**
\[ 3\text{NH}_4^+ + \text{BiN (s)} \rightarrow \text{Bi}^{3+} + 4\text{NH}_3 \]

**Context:**
The reaction above occurs in liquid ammonia. In this reaction, the ammonium ion behaves as:

**Options:**

- ○ a base
- ○ a reducing agent
- ○ an oxidizing agent
- ○ an acid

**Explanation:**
This reaction is an example of how ammonium ions can participate in chemical reactions in different roles. The options suggest various roles that ammonium ions can play, either as an acid or base according to Brønsted-Lowry theory, or as reducing or oxidizing agents in a redox reaction. Identifying the correct role requires an understanding of the reaction mechanism and the transformation of the ammonium ion in this context.
Transcribed Image Text:**Chemical Reaction Analysis** **Reaction:** \[ 3\text{NH}_4^+ + \text{BiN (s)} \rightarrow \text{Bi}^{3+} + 4\text{NH}_3 \] **Context:** The reaction above occurs in liquid ammonia. In this reaction, the ammonium ion behaves as: **Options:** - ○ a base - ○ a reducing agent - ○ an oxidizing agent - ○ an acid **Explanation:** This reaction is an example of how ammonium ions can participate in chemical reactions in different roles. The options suggest various roles that ammonium ions can play, either as an acid or base according to Brønsted-Lowry theory, or as reducing or oxidizing agents in a redox reaction. Identifying the correct role requires an understanding of the reaction mechanism and the transformation of the ammonium ion in this context.
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