13. How many molecules/ions below have an inversion center (i)? A. 0 В. 1 С. 2 D. 3 E. 4

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How many molecules/ions below have an inversion center (i)?

**Question 13:** How many molecules/ions below have an inversion center (\(i\))?

**Diagrams Description:**

There are seven cyclic molecules depicted. Each is a different geometric shape, potentially representing different cyclic organic compounds. The structures appear as follows (from left to right):

1. A pentagon with a slightly outwards bent side.
2. A simple hexagon.
3. A hexagon with a circle inside.
4. Another hexagon with a slightly different arrangement (no circle).
5. An octagon.
6. A hexagon attached to two additional hexagons, forming a Y-like structure.
7. Two hexagons fused together in a linear alignment.

**Answer Choices:**

A. 0  
B. 1  
C. 2  
D. 3  
E. 4  

This question asks the learner to identify how many of the depicted molecules possess an inversion center, which is a point in the molecule from which all parts of the molecule are symmetrically opposite.
Transcribed Image Text:**Question 13:** How many molecules/ions below have an inversion center (\(i\))? **Diagrams Description:** There are seven cyclic molecules depicted. Each is a different geometric shape, potentially representing different cyclic organic compounds. The structures appear as follows (from left to right): 1. A pentagon with a slightly outwards bent side. 2. A simple hexagon. 3. A hexagon with a circle inside. 4. Another hexagon with a slightly different arrangement (no circle). 5. An octagon. 6. A hexagon attached to two additional hexagons, forming a Y-like structure. 7. Two hexagons fused together in a linear alignment. **Answer Choices:** A. 0 B. 1 C. 2 D. 3 E. 4 This question asks the learner to identify how many of the depicted molecules possess an inversion center, which is a point in the molecule from which all parts of the molecule are symmetrically opposite.
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