Part D: Applying VSEPR Theory For each of the Lewis structures shown below, predict the Electron Geometry, Molecular Geometry and Bond Angle. Lastly, using the same format as shown in the last column of Table 1, draw a sketch (using wedges and dashes to show 3D if needed) of the Molecular Geometry. Lewis Total Number of Name of Name of Bond Sketch of Molecular Structure Number of Nonbonding Pairs Electron Molecular Angle Geometry Substituents Geometry Geometry S=C=$ c=ö: :Cl: H:N:H 一一

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Name:
Lab #9 Electron and Molecular Geometries - Polarity
Report Sheet
Part D: Applying VSEPR Theory
For each of the Lewis structures shown below, predict the Electron Geometry, Molecular Geometry and
Bond Angle. Lastly, using the same format as shown in the last column of Table 1, draw a sketch (using
wedges and dashes to show 3D if needed) of the Molecular Geometry.
Lewis
Structure
Total
Number of
Name of
Name of
Bond
Sketch of Molecular
Number of
Nonbonding
Pairs
Electron
Molecular
Angle
Geometry
Substituents
Geometry
Geometry
S=C=S
:Cl:
C=0:
:Cl:
..
F
H.
HN:H
一一
-F:
Transcribed Image Text:Name: Lab #9 Electron and Molecular Geometries - Polarity Report Sheet Part D: Applying VSEPR Theory For each of the Lewis structures shown below, predict the Electron Geometry, Molecular Geometry and Bond Angle. Lastly, using the same format as shown in the last column of Table 1, draw a sketch (using wedges and dashes to show 3D if needed) of the Molecular Geometry. Lewis Structure Total Number of Name of Name of Bond Sketch of Molecular Number of Nonbonding Pairs Electron Molecular Angle Geometry Substituents Geometry Geometry S=C=S :Cl: C=0: :Cl: .. F H. HN:H 一一 -F:
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