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NCERT Exemplar · Q26

Q.Ionic radii vary in (Note: more than one of the given options may be correct.)

(i) inverse proportion to the effective nuclear charge.
(ii) inverse proportion to the square of effective nuclear charge.
(iii) direct proportion to the screening effect.
(iv) direct proportion to the square of screening effect.
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Ionic radius depends on the balance between nuclear attraction and electron repulsion. It varies inversely with effective nuclear charge and directly with screening effect. Options (A) and (C) are correct.

The size of an ion is determined by how tightly the nucleus can hold its electrons. Two competing forces govern this: the nucleus pulling electrons inward, and inner electrons pushing outer electrons away through repulsion.

Effective nuclear charge (ZeffZ_{\text{eff}}) is the net positive charge experienced by an electron after accounting for shielding by other electrons. When ZeffZ_{\text{eff}} increases, the nucleus grips the electron cloud more tightly, shrinking the ion. When screening increases, inner electrons better shield outer ones from the nucleus, allowing the ion to expand.

Let me work through each relationship:

1. Relationship with effective nuclear charge

The effective nuclear charge is given by:

Zeff=Z−σZ_{\text{eff}} = Z - \sigma

where ZZ is the actual nuclear charge and σ\sigma is the screening constant.

For hydrogen-like systems, the radius follows:

r∝n2Zeffr \propto \frac{n^2}{Z_{\text{eff}}}

For many-electron ions, while the exact relationship is more complex, the fundamental inverse dependence remains: as ZeffZ_{\text{eff}} increases, the electron cloud contracts. The radius varies as r∝1Zeffr \propto \frac{1}{Z_{\text{eff}}}, not 1Zeff2\frac{1}{Z_{\text{eff}}^2}.

Note

The 1Z2\frac{1}{Z^2} dependence appears in energy expressions (like ionization energy), not in radius. Radius scales linearly with 1Zeff\frac{1}{Z_{\text{eff}}}.

2. Relationship with screening effect

The screening constant σ\sigma measures how effectively inner electrons shield outer electrons from the nuclear charge. From the definition of ZeffZ_{\text{eff}}:

Zeff=Z−σZ_{\text{eff}} = Z - \sigma

Rearranging the radius relationship:

r∝1Zeff=1Z−σr \propto \frac{1}{Z_{\text{eff}}} = \frac{1}{Z - \sigma}

When screening increases (larger σ\sigma), the denominator decreases, so the radius increases. This is a direct relationship: more screening → larger radius.

However, the relationship is not simply r∝σr \propto \sigma because ZZ is also present. The correct statement is that radius increases with screening effect, making it a direct proportion in the qualitative sense tested here.

3. Why not the square relationships? …

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