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NCERT Exemplar · Q29

Q.All transition elements are d-block elements, but all d-block elements are not transition elements. Explain.

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A transition element must have a partially filled d-subshell in at least one common oxidation state. While all transition elements sit in the d-block, some d-block elements (like Zn, Cd, Hg) have completely filled d-orbitals in their atom and all stable ions, so they fail the definition.

The heart of this distinction lies in what we mean by "transition." The term captures the idea of an element that uses its d-electrons in bonding and chemistry—electrons that are neither completely absent nor completely paired away. A transition element must exhibit the characteristic properties that come from having unpaired d-electrons available: variable oxidation states, colored compounds, catalytic activity, and paramagnetism. These properties vanish when the d-subshell is fully occupied.

The d-block is a positional label: it includes every element whose differentiating electron (the last electron added according to the Aufbau principle) enters a d-orbital. That spans groups 3 through 12 on the periodic table. But position alone doesn't guarantee transition-element behavior.

Let's see why some d-block members are excluded:

  1. Zinc (Zn), Cadmium (Cd), and Mercury (Hg) have the electronic configurations [noble gas] d10s2[\text{noble gas}]\,d^{10}s^2. The d-subshell holds its maximum of ten electrons.

  2. When these elements form ions, they lose the two s-electrons first, giving [noble gas] d10[\text{noble gas}]\,d^{10} configurations. For example, Zn2+\mathrm{Zn}^{2+} is [Ar] 3d10[\mathrm{Ar}]\,3d^{10}—still a completely filled d-subshell.

  3. Because the d-orbitals remain full in both the atom and the common ions, there are no unpaired d-electrons. The chemistry of Zn, Cd, and Hg resembles that of main-group metals: they show a single dominant oxidation state (+2), form colorless or white compounds (no d–d transitions), and are diamagnetic.

  4. By the IUPAC definition, a transition element is one that has an incomplete d-subshell in the neutral atom or in any of its common oxidation states. Zn, Cd, and Hg fail this test in every relevant form.

Watch out

A common mistake is to assume that being in the d-block automatically makes an element a transition element. Always check whether a partially filled d-subshell exists in at least one oxidation state.

  1. In contrast, consider Scandium (Sc): [Ar] 3d14s2[\mathrm{Ar}]\,3d^1 4s^2. The neutral atom has one d-electron. Even though Sc3+\mathrm{Sc}^{3+} is [Ar][\mathrm{Ar}] (d-subshell empty), the neutral atom satisfies the definition, so Sc is a transition element. …

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