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Answer the following (group 2) · Q6

Q.What are the stable oxidation states of plutonium, cerium, manganese, Europium ?

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Step 1. Manganese (Table 8.3). Mn shows oxidation states from +2 to +7, the widest range of any first-row transition element (matching its position near the middle of the series and its 5 unpaired 3d electrons). +2 (as Mn2+, e.g. MnSO4) is its most common/stable ionic state; +7 (as in KMnO4) is stable as a compound but is itself a strong oxidiser, readily reduced.

Step 2. Cerium (Section 8.12.2). Ce's dominant lanthanoid state is +3, like every other lanthanoid, but cerium is the textbook exception that ALSO forms a genuinely stable +4 species, because Ce4+ reaches the extra-stable, completely-EMPTY f0 configuration -- this is why Ce(IV) is specifically useful as a strong oxidising agent (Q2 ix below).

Step 3. Europium (Section 8.12). Eu's dominant state is likewise +3, but the text explicitly names Eu2+ (alongside Yb2+) as 'the most stable dipositive metal ions' among the lanthanoids, because Eu2+ reaches the extra-stable, half-filled f7 configuration. …

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