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Q.What is diagonal relationship? Discuss any two points to show diagonal relationship between Li and Mg.

Meghalaya MboseMBOSE Meghalaya 11th Board 2019Subjective· 2mImportance★★★★★
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Li (period 2, group 1) shows an unusually close resemblance to Mg (period 3, group 2) — the 'diagonal relationship' — because their similar small size and high charge density give them similar polarising power.

What is the diagonal relationship? In the periodic table, certain elements of the second period show a close resemblance to elements of the third period that lie diagonally below-and-to-the-right of them, rather than resembling the other elements of their own group as closely as expected. This happens because both elements in such a diagonal pair have a comparable ionic radius and hence a comparable charge/radius ratio (polarising power/ionic potential), even though they belong to different groups. The classic pairs are Li-Mg, Be-Al, and B-Si.

Two points showing the Li-Mg diagonal relationship:

  1. Nature of the chloride: Both LiCl and MgCl2 are covalent (not fully ionic like other alkali-metal chlorides), are deliquescent (absorb moisture from air), and dissolve readily in organic/non-aqueous solvents such as ethanol/pyridine — unlike NaCl, KCl etc., which are purely ionic and insoluble in organic solvents.
  2. Thermal stability of carbonates/nitrates: Li2CO3 (like MgCO3) decomposes on heating to give the oxide and CO2 (Li2CO3 -> Li2O + CO2), because the small, highly polarising Li+/Mg2+ ion destabilises the large carbonate ion. In contrast, the carbonates of the other alkali metals (Na2CO3, K2CO3, etc.) are thermally very stable and do not decompose on ordinary heating. Similarly, LiNO3 decomposes on heating to give Li2O (like Mg(NO3)2 gives MgO), unlike the other alkali metal nitrates, which decompose to the nitrite. …

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