Define lanthanoid contraction and explain its effects.
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What is lanthanide contraction? give its consequences.
Lanthanide contraction is a very importantphenomenon in determining the characteristics of the elements of lanthanide series. Following points will clearly depict the effect of lanthanide contraction: 1. Atomic and ionic size: Ingeneral the atomic size of a groupincreases with an increase in atomic number.

Lanthanide Contraction: The steady decrease in the size of lanthanide ions (M ) with the increase in atomic no. is called lanthanide contraction.
Causes:As we move down the group from left to right in a lanthanide series, the atomic no. increases and for every proton in the nucleus the extra electron goes to 4f orbital. The 4f orbital is too diffused to shield the nucleus effectively, thus there is a gradual increase in the effective nuclear charge experienced by the outer electrons. Consequently , the attraction of the nucleus for the electrons in the outermost shell increases with the increase of atomic number, thus size decreases.
Consequence of Lanthanide Contraction:
Separation of Lanthanides:Due to the similar sizes of the lanthanides, it is difficult to separate them but due to lanthanide contraction their properties slightly vary (such as ability to form complexes). The variation in the properties is utilized to separate them.
Basic Strength of Hydroxide: Due to the lanthanide contraction, size of M ions decreases and there is increase in covalent character in M–OH and hence basic character decreases.
Similarity of second and third transition series:The atomic radii of second row transition elements are almost similar to those of the third row transition elements because the increase in size on moving down the group from second to third transition elements is cancelled by the decrease in size due to the lanthanide contraction
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