Below is the Lewis dot structure for acetic acid. What is the geometry around the carbon atom indicated by the arrow? H-

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**Question 15:** Below is the Lewis dot structure for acetic acid. What is the geometry around the carbon atom indicated by the arrow?

**Diagram Explanation:**

The structure depicts acetic acid, represented with Lewis dot notation. The molecule includes:

- Two carbon atoms (C), hydrogen atoms (H), and oxygen atoms (O).
- The carbon atom on the left (with three attached hydrogen atoms) is bonded to the central carbon atom indicated by an arrow.
- The central carbon atom (targeted by the arrow) is connected to:
  - A double-bonded oxygen atom (O) with two lone pairs.
  - A single-bonded oxygen atom (O) with two lone pairs and connected to a hydrogen atom (H).

The arrow points to the central carbon atom, which is bonded to three atoms: one oxygen with a double bond and another oxygen with a single bond. 

The geometry around the carbon atom indicated by the arrow is trigonal planar, consistent with the steric number of three and the presence of a double bond.
Transcribed Image Text:**Question 15:** Below is the Lewis dot structure for acetic acid. What is the geometry around the carbon atom indicated by the arrow? **Diagram Explanation:** The structure depicts acetic acid, represented with Lewis dot notation. The molecule includes: - Two carbon atoms (C), hydrogen atoms (H), and oxygen atoms (O). - The carbon atom on the left (with three attached hydrogen atoms) is bonded to the central carbon atom indicated by an arrow. - The central carbon atom (targeted by the arrow) is connected to: - A double-bonded oxygen atom (O) with two lone pairs. - A single-bonded oxygen atom (O) with two lone pairs and connected to a hydrogen atom (H). The arrow points to the central carbon atom, which is bonded to three atoms: one oxygen with a double bond and another oxygen with a single bond. The geometry around the carbon atom indicated by the arrow is trigonal planar, consistent with the steric number of three and the presence of a double bond.
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