Table 2: Complete this table with your partner. You may ask the instructor to check your work. Formula Lewis structure Molecular geometry around central atoms(s) and name Polar or nonpolar, Draw dipole arrow Hybridization Orbitals involved ir of each atom each bond XeCl2 CIF CH3CN SeF; SF,Cl2 Hytme olar or nonpola. y dipole arrow

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Chapter1: Chemical Foundations
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### Molecular Geometry Worksheet

#### Table 2: Molecular Structure Analysis

This table provides a framework for analyzing the molecular geometry, polarity, hybridization, and orbital involvement of various chemical compounds. To complete this analysis, fill in each section based on the given formulas.

| Formula   | Lewis Structure | Molecular Geometry around Central Atom(s) and Name | Polar or Nonpolar, Draw Dipole Arrow | Hybridization of Each Atom | Orbitals Involved in Each Bond |
|-----------|-----------------|----------------------------------------------------|--------------------------------------|-----------------------------|--------------------------------|
| XeCl₂     |                 |                                                    |                                      |                             |                                |
| ClF₆⁺     |                 |                                                    |                                      |                             |                                |
| CH₃CN     |                 |                                                    |                                      |                             |                                |
| SeF₃⁻     |                 |                                                    |                                      |                             |                                |
| SF₄Cl₂    |                 |                                                    |                                      |                             |                                |

#### Instructions:

- **Lewis Structure:** Draw the Lewis structure for each compound to visualize the arrangement of electrons around the central atom.
  
- **Molecular Geometry:** Identify the shape and name of the molecular geometry for each compound's central atom(s).
  
- **Polarity:** Determine if each molecule is polar or nonpolar and illustrate with a dipole arrow.
  
- **Hybridization:** Specify the hybridization state for each atom within the molecule.
  
- **Orbital Involvement:** Indicate which orbitals are involved in bonding for each compound.

This table serves as a collaborative activity to enhance your understanding of molecular structures and their properties. You may consult with your partner or instructor to ensure accurate completion.
Transcribed Image Text:### Molecular Geometry Worksheet #### Table 2: Molecular Structure Analysis This table provides a framework for analyzing the molecular geometry, polarity, hybridization, and orbital involvement of various chemical compounds. To complete this analysis, fill in each section based on the given formulas. | Formula | Lewis Structure | Molecular Geometry around Central Atom(s) and Name | Polar or Nonpolar, Draw Dipole Arrow | Hybridization of Each Atom | Orbitals Involved in Each Bond | |-----------|-----------------|----------------------------------------------------|--------------------------------------|-----------------------------|--------------------------------| | XeCl₂ | | | | | | | ClF₆⁺ | | | | | | | CH₃CN | | | | | | | SeF₃⁻ | | | | | | | SF₄Cl₂ | | | | | | #### Instructions: - **Lewis Structure:** Draw the Lewis structure for each compound to visualize the arrangement of electrons around the central atom. - **Molecular Geometry:** Identify the shape and name of the molecular geometry for each compound's central atom(s). - **Polarity:** Determine if each molecule is polar or nonpolar and illustrate with a dipole arrow. - **Hybridization:** Specify the hybridization state for each atom within the molecule. - **Orbital Involvement:** Indicate which orbitals are involved in bonding for each compound. This table serves as a collaborative activity to enhance your understanding of molecular structures and their properties. You may consult with your partner or instructor to ensure accurate completion.
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