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Q.Why does I+ have smaller size than I?

Himachal HpboseHPBOSE Himachal Pradesh Class 11 Board Exam 2025Subjective· 2mImportance★★★★★
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A cation is always smaller than its parent neutral atom because it has one fewer electron but the same number of protons, so each remaining electron feels a stronger net attraction to the nucleus (less electron-electron repulsion, higher effective nuclear charge), causing the electron cloud to contract.

The neutral iodine atom (I) has a certain number of electrons in its outer shell, all shielding each other to some extent from the full attraction of the nucleus (this mutual repulsion partially cancels out the nuclear pull, keeping the electron cloud spread out to its full size).

When I loses one electron to form I+, the number of protons (nuclear charge) stays exactly the same, but there is now one fewer electron in the outer shell:

  1. Reduced electron-electron repulsion: with fewer electrons, there is less mutual repulsion pushing the electron cloud outward.
  2. Increased effective nuclear charge per electron: the same nuclear charge is now shared among fewer electrons, so each remaining electron experiences a stronger net pull from the nucleus. …

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