Using wedge-and-dash bonds, modify the bonds on the chiral carbon in the molecule below so the molecule has S stereochemical configuration. H OH X +7 P

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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The image presents a chemical structure and the task of converting its configuration to S using wedge-and-dash bonds. This particular molecule includes a chiral carbon connected to four groups: a hydrogen (H), a hydroxyl group (OH), a branched aliphatic chain, and an iodine (I) atom.

### Explanation:

- **Wedge Bonds:** Represent bonds coming out of the plane towards the viewer.
- **Dash Bonds:** Indicate bonds going behind the plane away from the viewer.

### Diagram Details:

- The central carbon atom (chiral center) is bonded to the following groups:
  - A hydrogen atom (H)
  - A hydroxyl group (OH)
  - An iodine atom (I)
  - A branched alkyl group

The objective is to adjust the spatial arrangement of these groups to achieve an S stereochemical configuration. This involves using wedge-and-dash representations to properly arrange the three-dimensional structure around the chiral center.
Transcribed Image Text:The image presents a chemical structure and the task of converting its configuration to S using wedge-and-dash bonds. This particular molecule includes a chiral carbon connected to four groups: a hydrogen (H), a hydroxyl group (OH), a branched aliphatic chain, and an iodine (I) atom. ### Explanation: - **Wedge Bonds:** Represent bonds coming out of the plane towards the viewer. - **Dash Bonds:** Indicate bonds going behind the plane away from the viewer. ### Diagram Details: - The central carbon atom (chiral center) is bonded to the following groups: - A hydrogen atom (H) - A hydroxyl group (OH) - An iodine atom (I) - A branched alkyl group The objective is to adjust the spatial arrangement of these groups to achieve an S stereochemical configuration. This involves using wedge-and-dash representations to properly arrange the three-dimensional structure around the chiral center.
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