Q.Define lanthanoid contraction. Write two consequences of lanthanoid contraction.
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Start your 14-day free trial to unlock the full solution →Poor shielding by the diffuse, buried 4f orbitals lets effective nuclear charge rise steadily across the lanthanoids, steadily shrinking atomic/ionic size — with knock-on effects across the whole d-block.
Lanthanoid contraction is the steady and cumulative decrease in atomic and ionic radii of the lanthanoid elements as one moves from lanthanum (La) to lutetium (Lu) with increasing atomic number. It arises because, on going along the series, each additional electron enters a 4f orbital, and 4f orbitals shield the outer (5d, 6s) electrons from the increasing nuclear charge only poorly (4f orbitals are diffuse and have poor screening ability). So the effective nuclear charge felt by the outer electrons increases steadily, pulling the electron cloud in and shrinking the atomic/ionic size at each step.
Two consequences:
- Because of lanthanoid contraction, the atomic/ionic radii of the second and third transition series elements of the same group become almost identical (e.g. and , and have nearly the same radii) — the contraction across the intervening lanthanoids exactly compensates for the extra shell added going down the group. This makes these pairs of elements very similar chemically and notoriously difficult to separate. …
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