Give the hybridized orbitals and the corresponding geometries of and
To determine the hybridization and geometry of the given complexes, we first need to find the number of valence electrons for each central atom, then apply the concept of hybridization based on the number of bonding and lone pairs around the central atom.
1. [Ti(H₂O)₆]³⁺:
Titanium (Ti) is in group 4 of the periodic table, so it has 4 valence electrons. Each water molecule contributes one ______ ___ ________ ___ _______ ______ ________ __________ _______ _________.
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