Below is the Lewis structure of the peroxide (O ion. 12- .. :0:0: Count the number of bonding pairs and the number of lone pairs around the left oxygen atom. bonding pairs: lone pairs:

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### Lewis Structure of Peroxide Ion (\( \text{O}_2^{2-} \))

Below is the Lewis structure of the peroxide (\( \text{O}_2^{2-} \)) ion.

\[ 
\begin{array}{ccccccc}
& \cdot \cdot & & \cdot \cdot & & \cdot \cdot & \\
[: \, \text{O} & - & \text{O} \, :]^{2-} \\
& \cdot \cdot & & \cdot \cdot & & \cdot \cdot & \\
\end{array}
\]

Count the number of bonding pairs and the number of lone pairs around the left oxygen atom.

---

#### Input Section:

- **Bonding pairs:**  
- **Lone pairs:**  

The input section includes a text box where users can input the number of bonding pairs and lone pairs for the left oxygen atom.

#### Explanation of Diagram:

The diagram displays the Lewis structure of the peroxide ion. This ion comprises two oxygen atoms connected by a single bond, with each oxygen atom also housing a pair of lone pairs around them. This configuration reveals the electron distribution in the molecule, crucial for understanding its reactive properties.

---

Feel free to revisit this section to enhance your comprehension of electron pair distribution in molecular ions.

---
Transcribed Image Text:--- ### Lewis Structure of Peroxide Ion (\( \text{O}_2^{2-} \)) Below is the Lewis structure of the peroxide (\( \text{O}_2^{2-} \)) ion. \[ \begin{array}{ccccccc} & \cdot \cdot & & \cdot \cdot & & \cdot \cdot & \\ [: \, \text{O} & - & \text{O} \, :]^{2-} \\ & \cdot \cdot & & \cdot \cdot & & \cdot \cdot & \\ \end{array} \] Count the number of bonding pairs and the number of lone pairs around the left oxygen atom. --- #### Input Section: - **Bonding pairs:** - **Lone pairs:** The input section includes a text box where users can input the number of bonding pairs and lone pairs for the left oxygen atom. #### Explanation of Diagram: The diagram displays the Lewis structure of the peroxide ion. This ion comprises two oxygen atoms connected by a single bond, with each oxygen atom also housing a pair of lone pairs around them. This configuration reveals the electron distribution in the molecule, crucial for understanding its reactive properties. --- Feel free to revisit this section to enhance your comprehension of electron pair distribution in molecular ions. ---
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