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An explanation of the electron geometry for the SO2 ion (Sulfur dioxide) is. The electron geometry for the Sulfur dioxide is Trigonal planar.
The ideal bond angle for the Sulfur dioxide is 120° since it has a Trigonal planar electron geometry. However, experimentally we would expect the bond angle to be approximately 119°.
The molecular geometry for SO2 is Bent. To determine the molecular geometry, or shape for a compound like SO2, we complete the following steps:
1) Draw the Lewis Structure for the compound.
2) Predict how the atoms and lone pairs will spread out when the repel each other.
3) Use a chart based on steric number (like the one in the video) or use the AXN notation to find the molecular shape. This will be determined by the number of atoms and lone pairs attached to the central atom.
If you are trying to find the electron geometry for SO2 we would expect it to be Trigonal planer.
Helpful Resources:
• How to Draw Lewis Structures:
• Molecular Geometry and VSEPR Explained:
• Molecular Geo App:
Get more chemistry help at
Drawing/writing done in InkScape. Screen capture done with Camtasia Studio 4.0. Done on a Dell Dimension laptop computer with a Wacom digital tablet (Bamboo).
SO2 Electron Geometry (Sulfur Dioxide) For Country: United States. City: Abilene, Cape Coral, Corpus Christi, Elk Grove, Paterson
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