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Transition Elements

Chapter summary

Transition Elements, at a glance

Connect d-electron configurations to physical trends, variable oxidation states, coloured complexes and catalysis.

A-Level 9476 (2026-2027)

Quick revision

Revisit the essentials, then return to an explanation when you need it.

One question for each property
QuestionUseful reasoning
Does it qualify?Test the atom and its cations for an incomplete d subshell.
What is the ion configuration?Remove 4s electrons before 3d; keep Cr and Cu exceptions in the neutral atoms.
Why are trends gentle?Increasing nuclear charge is partly offset by added 3d shielding.
Why several oxidation states?3d and 4s energies are close; different numbers of electrons can participate.
Why a colour change?Distinguish ligand exchange, redox and precipitation from the actual species.
Why visible colour?Unequal ligand repulsion splits d levels; a suitable d-d excitation absorbs selected wavelengths.
Why catalysis?A lower-barrier surface or oxidation-state cycle regenerates the catalyst.

Named redox electron counts: Fe3+/Fe2+: 1; MnO4-/Mn2+: 5; Cr2O72-/Cr3+: 6. The latter two equations require acid. Copper: water blue; excess ammonia deep blue; concentrated chloride favours yellow complex, often green in a mixture. Copper remains +2 in those exchanges.

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