Question:

The effect of lanthanoid contraction in the lanthanoid series of elements by and large means :

Updated On: Dec 30, 2025
  • decrease in both atomic and ionic radii
  • increase in atomic radii and decrease in ionic radii
  • increase in both atomic and ionic radii
  • decrease in atomic radii and increase in ionic radii
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The Correct Option is A

Solution and Explanation

The question pertains to the lanthanoid contraction, an important concept in the periodic trends of the lanthanide series of elements. Let’s break down the concept to understand the correct answer.

Explanation:

  1. Definition of Lanthanoid Contraction: It refers to the gradual reduction in the atomic and ionic radii of the lanthanide series elements, from lanthanum (La) to lutetium (Lu), as the atomic number increases.

  2. Cause: This contraction is primarily due to the poor shielding effect of the 4f electrons. The 4f electrons do not shield the nuclear charge effectively, resulting in a greater effective nuclear charge. This causes the electrons to be pulled closer to the nucleus.

  3. Effect on Atomic and Ionic Radii: Because of this increased effective nuclear charge:

    • Both atomic and ionic radii decrease as we move across the lanthanide series.
  4. Conclusion: The correct option that aligns with this concept is "decrease in both atomic and ionic radii".

Justification:

Let's examine the given options:

  • Decrease in both atomic and ionic radii: This is the correct explanation for the lanthanoid contraction as discussed.
  • Increase in atomic radii and decrease in ionic radii: This is incorrect as both radii decrease.
  • Increase in both atomic and ionic radii: Incorrect; neither radii increase due to the effective nuclear charge.
  • Decrease in atomic radii and increase in ionic radii: Incorrect as both radii decrease.

Conclusion:

The effect of lanthanoid contraction is the decrease in both atomic and ionic radii. This is due to inefficient shielding by 4f electrons, thereby causing a stronger pull by the nucleus on the valence electrons.

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Concepts Used:

Lanthanoids

Lanthanoids are at the top of these two-row, while actinoids are at the bottom row.

Properties of Lanthanoids

Lanthanoids are inclusive of 14 elements, with atomic numbers 58-71:

  • Cerium - Xe 4f1 5d1 6s2
  • Praseodymium - Xe 4f3 6s2
  • Neodymium - Xe 4f4 6s2
  • Promethium - Xe 4f5 6s2
  • Samarium - Xe 4f6 6s2
  • Europium - Xe 4f7 6s2
  • Gadolinium - Xe 4f7 5d1 6s2
  • Terbium - Xe 4f9 6s2
  • Dysprosium - Xe 4f10 6s2
  • Holmium - Xe 4f11 6s2
  • Erbium - Xe 4f12 6s2
  • Thulium - Xe 4f13 6s2
  • Ytterbium - Xe 4f14 6s2
  • Lutetium - Xe 4f14 5d1 6s2

These elements are also called rare earth elements. They are found naturally on the earth, and they're all radioactively stable except promethium, which is radioactive. A trend is one of the interesting properties of the lanthanoid elements, called lanthanide contraction.