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So4 2 Electron Geometry And Molecular Geometry ✧

He formed four double bonds (S=O). But to the Electron Geometry, those double bonds count as just of electron density each. So, looking at the electron clouds only: Sulfur had four regions of high electron density pushing away from him.

"Since all four electron regions contain atoms," declared the Molecular Geometry, "your visible shape is... ." so4 2 electron geometry and molecular geometry

"Four regions," whispered the ghost of Electron Geometry. "That means I must arrange you in . 109.5 degrees apart. This is the most comfortable way for four clouds to sleep in the same bed." He formed four double bonds (S=O)

The four Oxygens stood at the corners of a tetrahedron, repelling each other equally. The molecule was symmetric, stable, and perfectly non-polar in its charge distribution, despite carrying a net negative charge. "Since all four electron regions contain atoms," declared

Thus, the looked exactly at the atoms. Four Oxygen atoms, all identical, all tugging equally at Sulfur.

For ( \text{SO}_4^{2-} ), the Electron Geometry (the blueprint of repelling clouds) and the Molecular Geometry (the visible structure of atoms) are the same: Tetrahedral . Sulfur had no lone pairs to distort the view, so the invisible world of electrons perfectly matched the visible world of atoms.

so4 2 electron geometry and molecular geometry