2) In a molecule with Trigonal Bipyamidal geometry the location of the lone pair will be determined by trying to minimize the number of replusions. With that in mind please answer the following questions What is the smallest angle? axial atom 90° Would you place the lone pair at the axial position or the equatorial position to minimize the closest repulsions? S120 equatorial atom

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**Trigon Bipyramidal Geometry: Lone Pair Placement**

In a molecule with Trigonal Bipyramidal geometry, the location of the lone pair will be determined by trying to minimize the number of repulsions. 

### Questions to Consider:
1. **What is the smallest angle?**
2. **Would you place the lone pair at the axial position or the equatorial position to minimize the closest repulsions?**

### Diagram Description:
The diagram illustrates a Trigonal Bipyramidal molecular structure. It shows angles of:
- **90 degrees:** Between axial and equatorial positions.
- **120 degrees:** Between equatorial positions.

The central atom is colored yellow, with the surrounding atoms connected via lines depicting the molecular geometry.

### Considerations:
In this geometry, the lone pair of electrons is best placed in the equatorial position to minimize repulsions, as this position allows for larger separation angles.
Transcribed Image Text:**Trigon Bipyramidal Geometry: Lone Pair Placement** In a molecule with Trigonal Bipyramidal geometry, the location of the lone pair will be determined by trying to minimize the number of repulsions. ### Questions to Consider: 1. **What is the smallest angle?** 2. **Would you place the lone pair at the axial position or the equatorial position to minimize the closest repulsions?** ### Diagram Description: The diagram illustrates a Trigonal Bipyramidal molecular structure. It shows angles of: - **90 degrees:** Between axial and equatorial positions. - **120 degrees:** Between equatorial positions. The central atom is colored yellow, with the surrounding atoms connected via lines depicting the molecular geometry. ### Considerations: In this geometry, the lone pair of electrons is best placed in the equatorial position to minimize repulsions, as this position allows for larger separation angles.
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