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Comments on the statement that elements...

Comments on the statement that elements of the first transition series
posses many properties different from those of heavier transition elements.

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The properties of the elements of the first transition series differ from those of the heavier transition elements in many ways.
(i) The atomic sizes of the elements of the first transition series are smaller than those of the heavier elements (elements of `2^(nd)` and `3^(rd)` transition series).
However, the atomic sizes of the elements in the third transition series are virtually the same as those of the corresponding members in the second transition series. This is due to lanthanoid contraction.
(ii) +2 and +3 oxidation states are more common for elements in the first transition series, while higher oxidation states are more common for the heavier elements.
(iii) The enthalpies of atomisation of the elements in the first transition series are lower than those of the corresponding elements in the second and third transition series.
(iv) The melting and boiling points of the first transition series are lower than those of the heavier transition elements. This is because of the occurrence of stronger metallic bonding (M−M bonding).
(v) The elements of the first transition series form low-spin or high-spin complexes depending upon the strength of the ligand field. However, the heavier transition elements form only low-spin complexes, irrespective of the strength of the ligand field.
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  10. What are inner-transition elements? Decide which of the following atom...

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  11. The chemistry of the actinoid elements is not so smooth as that of the...

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  12. Which is the last element in the series of the actinods? Write the ele...

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  13. Use Hund's rule to derive the electronic configuration of Ce^(3+) ion,...

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  14. Name the member of the lanthanoids series which exhibit +4 oxidation s...

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  15. Compare the chemistry of actinoids with that of the lanthanoids with s...

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  16. Write the electronic configuration of the elements with the atomic num...

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