Indicate the electron pair geometry and the molecular geometry for each of the six compounds. Compound Electron pair geometry Molecular geometry • • .. :0=S=0: tetrahedral bent :ö=c=0: tetrahedral trigonal pyramidal :F-B trigonal planar trigonal planar :F: :ci: Si-Ci: :ci: :ö:

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Below is a transcription of the educational content describing electron pair geometry and molecular geometry for each of the six compounds listed in the diagram:

---

**Indicate the electron pair geometry and the molecular geometry for each of the six compounds.**

| Compound                                             | Electron pair geometry | Molecular geometry |
|------------------------------------------------------|------------------------|--------------------|
| \[:O:‒S‒:O:\]                                        |                        |                    |
| \[:Cl:‒S‒:Cl:\]                                      | tetrahedral            | bent               |
| \[:O:=C=O:\]                                         |                        |                    |
| \[:F:    \|<br>   \> :F:‒P‒:F:                       | tetrahedral            | trigonal pyramidal |
| \[:F: \  /<br>   \> :F:‒B‒:F:                       | trigonal planar        | trigonal planar    |
| \[:Cl: \ /<br>  :Cl‒Si‒:Cl:<br>    \ :Cl:          |                        |                    |

**Descriptions of diagrams:**

1. **OSO Compound:** This shows a linear structure with sulfur (S) in the center bonded to two oxygen (O) atoms.
   
2. **Cl-S-Cl Compound:** Displays a V-shaped molecule with sulfur (S) in the center bonded to two chlorine (Cl) atoms. The electron pair geometry is tetrahedral, and the molecular geometry is bent.
   
3. **O=C=O Compound:** Illustrates a linear configuration with carbon (C) in the center double-bonded to two oxygen (O) atoms.
   
4. **F-P-F Compound:** Features a pyramid structure with phosphorus (P) at the center bonded to three fluorine (F) atoms. There is a lone pair on the phosphorus, presenting a trigonal pyramidal shape. The electron pair geometry is tetrahedral.
   
5. **F-B-F Compound:** Represents a planar structure featuring boron (B) in the center bonded to three fluorine (F) atoms. Both the electron pair and molecular geometries are trigonal planar.
   
6. **Cl-Si-Cl Compound:** Displays a tetrahedral arrangement with silicon (Si) in the center bonded to four chlorine (Cl) atoms.

For each compound, students are encouraged to accurately determine and fill in the missing electron pair geometry
Transcribed Image Text:Below is a transcription of the educational content describing electron pair geometry and molecular geometry for each of the six compounds listed in the diagram: --- **Indicate the electron pair geometry and the molecular geometry for each of the six compounds.** | Compound | Electron pair geometry | Molecular geometry | |------------------------------------------------------|------------------------|--------------------| | \[:O:‒S‒:O:\] | | | | \[:Cl:‒S‒:Cl:\] | tetrahedral | bent | | \[:O:=C=O:\] | | | | \[:F: \|<br> \> :F:‒P‒:F: | tetrahedral | trigonal pyramidal | | \[:F: \ /<br> \> :F:‒B‒:F: | trigonal planar | trigonal planar | | \[:Cl: \ /<br> :Cl‒Si‒:Cl:<br> \ :Cl: | | | **Descriptions of diagrams:** 1. **OSO Compound:** This shows a linear structure with sulfur (S) in the center bonded to two oxygen (O) atoms. 2. **Cl-S-Cl Compound:** Displays a V-shaped molecule with sulfur (S) in the center bonded to two chlorine (Cl) atoms. The electron pair geometry is tetrahedral, and the molecular geometry is bent. 3. **O=C=O Compound:** Illustrates a linear configuration with carbon (C) in the center double-bonded to two oxygen (O) atoms. 4. **F-P-F Compound:** Features a pyramid structure with phosphorus (P) at the center bonded to three fluorine (F) atoms. There is a lone pair on the phosphorus, presenting a trigonal pyramidal shape. The electron pair geometry is tetrahedral. 5. **F-B-F Compound:** Represents a planar structure featuring boron (B) in the center bonded to three fluorine (F) atoms. Both the electron pair and molecular geometries are trigonal planar. 6. **Cl-Si-Cl Compound:** Displays a tetrahedral arrangement with silicon (Si) in the center bonded to four chlorine (Cl) atoms. For each compound, students are encouraged to accurately determine and fill in the missing electron pair geometry
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