3. Circle any acetal carbons in this molecule. CeHs OH OH 4. Circle any hemiacetal carbons in this molecule. O. но OH OH

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Chapter1: Chemical Foundations
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### Problem 3

**Task:** Circle any acetal carbons in this molecule.

**Description:** The molecule depicted represents a cyclic structure with a phenyl group (C₆H₅) attached. The diagram appears to be a sugar derivative with several carbon atoms forming a ring. The ring includes two oxygen atoms, characteristic of acetal functional groups, often involved in linking sugar molecules in polysaccharides.

### Problem 4

**Task:** Circle any hemiacetal carbons in this molecule.

**Description:** The molecule is similar to the one in Problem 3, also featuring a cyclic structure with a phenyl group (C₆H₅) attached. It contains both acetal and hemiacetal linkages. The hemiacetal carbon typically has an -OH group and an ether linkage on the same carbon within a sugar molecule, often seen in ring-closure reactions of sugars.

**Note:** Identifying the specific acetal and hemiacetal carbons requires knowledge of organic chemistry and typically involves recognizing functional group patterns in cyclic sugar derivatives.
Transcribed Image Text:### Problem 3 **Task:** Circle any acetal carbons in this molecule. **Description:** The molecule depicted represents a cyclic structure with a phenyl group (C₆H₅) attached. The diagram appears to be a sugar derivative with several carbon atoms forming a ring. The ring includes two oxygen atoms, characteristic of acetal functional groups, often involved in linking sugar molecules in polysaccharides. ### Problem 4 **Task:** Circle any hemiacetal carbons in this molecule. **Description:** The molecule is similar to the one in Problem 3, also featuring a cyclic structure with a phenyl group (C₆H₅) attached. It contains both acetal and hemiacetal linkages. The hemiacetal carbon typically has an -OH group and an ether linkage on the same carbon within a sugar molecule, often seen in ring-closure reactions of sugars. **Note:** Identifying the specific acetal and hemiacetal carbons requires knowledge of organic chemistry and typically involves recognizing functional group patterns in cyclic sugar derivatives.
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