Step 1: Understand tetrahedral geometry.
In tetrahedral geometry, four equivalent orbitals arrange themselves to minimize repulsion. Step 2: Hybridisation involved.
One \(s\) orbital and three \(p\) orbitals hybridise to form four equivalent \(sp^3\) hybrid orbitals. Step 3: Conclusion.
Hence, \(sp^3\) hybridisation results in tetrahedral geometry.
Was this answer helpful?
0
0
Top Questions on Chemical bonding and molecular structure