Q.The reason of lanthanoid contraction is
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Start your 14-day free trial to unlock the full solution →The lanthanoid contraction is caused by the poor ability of the diffuse, deeply-buried 4f orbitals to shield one another from the increasing nuclear charge, so effective nuclear charge rises steadily and atomic/ionic radii shrink across the series.
Mechanism: Going from to , the atomic number (and hence nuclear charge ) increases by one unit at each step as an electron is added to the inner subshell. The orbitals are radially compact and have poor overlap/penetration properties, so one electron shields another electron (or the outer electrons) from the nucleus very inefficiently — far less efficiently than, say, or electrons shield each other. Because this poor screening does not keep pace with the steadily rising nuclear charge, the effective nuclear charge () experienced by the outer electrons increases continuously across the series, pulling the electron cloud in and steadily shrinking the atomic and ionic radii. The cumulative shrinkage across all 14 lanthanoids is the lanthanoid contraction, and it is large enough that the third-row transition elements following the lanthanoids (e.g. and , and ) end up with almost identical atomic radii to their second-row counterparts.
Why the other options are wrong/incomplete: …
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