Nitrogen oxides are pollutants and common by-products of power plants and automobiles. NO, can react with the NO in smog, forming a bond between the N atoms. .. :0: •N=0 product :O:

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**Nitrogen Oxide Reactions and Structures**

Nitrogen oxides are pollutants commonly produced as by-products of power plants and automobiles. Specifically, nitrogen dioxide (\( \text{NO}_2 \)) can react with nitric oxide (\( \text{NO} \)) found in smog, leading to the formation of new bonds between nitrogen atoms.

**Chemical Reaction:**

\[ 
\text{O} = \text{N} - \text{O} \cdot + \cdot \text{N} = \text{O} \rightarrow \text{Product}
\]

In this reaction, \( \text{NO}_2 \) and \( \text{NO} \) join to form a new compound by linking the nitrogen atoms.

**Task:**

Draw the structure of the resulting compound, including formal charges.

**Resulting Compound Structure:**

- The structure features a triple bond between two nitrogen atoms.
- One nitrogen atom is double-bonded to an oxygen atom with a lone pair.
- The second nitrogen atom is single-bonded to an oxygen atom with a full negative formal charge, creating a resonance structure.
- The set of diagrams shows the distribution of electron pairs, indicating positive (+) and negative (-) charges on the bonded atoms.
Transcribed Image Text:**Nitrogen Oxide Reactions and Structures** Nitrogen oxides are pollutants commonly produced as by-products of power plants and automobiles. Specifically, nitrogen dioxide (\( \text{NO}_2 \)) can react with nitric oxide (\( \text{NO} \)) found in smog, leading to the formation of new bonds between nitrogen atoms. **Chemical Reaction:** \[ \text{O} = \text{N} - \text{O} \cdot + \cdot \text{N} = \text{O} \rightarrow \text{Product} \] In this reaction, \( \text{NO}_2 \) and \( \text{NO} \) join to form a new compound by linking the nitrogen atoms. **Task:** Draw the structure of the resulting compound, including formal charges. **Resulting Compound Structure:** - The structure features a triple bond between two nitrogen atoms. - One nitrogen atom is double-bonded to an oxygen atom with a lone pair. - The second nitrogen atom is single-bonded to an oxygen atom with a full negative formal charge, creating a resonance structure. - The set of diagrams shows the distribution of electron pairs, indicating positive (+) and negative (-) charges on the bonded atoms.
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