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Exercises · 4.30

Q.Which is the last element in the series of the actinoids? Write the electronic configuration of this element. Comment on the possible oxidation state of this element.

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The actinoid series ends with Lawrencium (Lr, Z=103). Its ground-state configuration, per NCERT's own table of actinoid configurations, is [Rn] 5f14 6d1 7s2[Rn]\,5f^{14}\,6d^{1}\,7s^{2}, and its most stable oxidation state is +3, like most actinoids.


The actinoid series spans elements from atomic number 90 (Thorium) to 103 (Lawrencium). These are the elements where the 5f5f subshell is progressively filled. The last member of this series is the element with Z=103Z = 103, which is Lawrencium (Lr).

Why is Lawrencium the last? Because after filling the 5f5f subshell (which holds 14 electrons), the next element (Z=104, Rutherfordium) begins filling the 6d6d subshell and belongs to the transition series (group 4). So the actinoid series ends exactly when the 5f5f subshell is complete.


1. Electronic configuration of Lawrencium (Z = 103)

Based on the Aufbau principle, and matching NCERT's own printed table of actinoid configurations, the ground-state configuration is:

[Rn] 5f14 6d1 7s2[Rn]\,5f^{14}\,6d^{1}\,7s^{2}

The 5f5f subshell is already completely full (5f145f^{14}) by the time we reach Lr; the last electron added goes into the 6d6d orbital.

Watch out

Some non-NCERT sources report a different configuration for Lr ([Rn] 5f14 7s2 7p1[Rn]\,5f^{14}\,7s^{2}\,7p^{1}) based on later relativistic calculations. For this syllabus, use NCERT's own table value: [Rn] 5f14 6d1 7s2[Rn]\,5f^{14}\,6d^{1}\,7s^{2}.


2. Possible oxidation states of Lawrencium

Like all actinoids, Lawrencium shows a +3 oxidation state as the most stable and common one. This is because losing the 6d16d^1 and the two 7s7s electrons gives a stable 5f145f^{14} core — a completely filled ff-subshell, which is especially stable, exactly the same reasoning used for why +3 dominates across the whole actinoid series.

Tip

Nobelium (No, Z=102), the element just before Lr, is the one actinoid where +2 is unusually stable (it already has the full 5f145f^{14} core at the +2 state, since No's neutral atom is 5f147s25f^{14}7s^2 with no 6d6d electron). Lawrencium does not share this: reaching 5f145f^{14} for Lr requires losing all three outer electrons (6d1 7s26d^1\,7s^2), so +3 — not +2 — is its most stable state.

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