8) Identify enantiomers. A D E H. CI H CI H. CI H CI H. CI CL Cl. H Cl Cl HH CI F H. F H. F H. F 'F H H H H F H H A) B and D, A and C B) B and D C) A and B, A and D, B and C, C and D D) B and D, A and B, A and D, B and C, C and D E) A and C

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**Question 8: Identify enantiomers.**

The image contains five molecular structures labeled A to E. Each structure depicts a central carbon atom bonded to four different atoms: hydrogen (H), chlorine (Cl), and fluorine (F). 

- **Structure A:** The configuration shows Cl, F, and H atoms in specific orientations using solid, dashed, and wedge bonds.
- **Structure B:** The orientation of Cl, F, and H atoms differs compared to structure A.
- **Structure C:** This structure also has a unique configuration of Cl, F, and H.
- **Structure D:** Offers another distinct arrangement of Cl, F, and H atoms.
- **Structure E:** Shows its own configuration differing from A, B, C, and D.

The question offers multiple-choice options for identifying enantiomers from the given structures:

A) B and D, A and C  
B) B and D  
C) A and B, A and D, B and C, C and D  
D) B and D, A and B, A and D, B and C, C and D  
E) A and C  

**Explanation:**

Enantiomers are molecules that are non-superimposable mirror images of each other. To identify enantiomeric pairs, one needs to assess the spatial arrangement of the attached atoms and find pairs that are mirrored but not identical in orientation. This often involves identifying differences in the spatial arrangement signified by the solid, dashed, and wedge bonds.
Transcribed Image Text:**Question 8: Identify enantiomers.** The image contains five molecular structures labeled A to E. Each structure depicts a central carbon atom bonded to four different atoms: hydrogen (H), chlorine (Cl), and fluorine (F). - **Structure A:** The configuration shows Cl, F, and H atoms in specific orientations using solid, dashed, and wedge bonds. - **Structure B:** The orientation of Cl, F, and H atoms differs compared to structure A. - **Structure C:** This structure also has a unique configuration of Cl, F, and H. - **Structure D:** Offers another distinct arrangement of Cl, F, and H atoms. - **Structure E:** Shows its own configuration differing from A, B, C, and D. The question offers multiple-choice options for identifying enantiomers from the given structures: A) B and D, A and C B) B and D C) A and B, A and D, B and C, C and D D) B and D, A and B, A and D, B and C, C and D E) A and C **Explanation:** Enantiomers are molecules that are non-superimposable mirror images of each other. To identify enantiomeric pairs, one needs to assess the spatial arrangement of the attached atoms and find pairs that are mirrored but not identical in orientation. This often involves identifying differences in the spatial arrangement signified by the solid, dashed, and wedge bonds.
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