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Transition and Inner Transition Elements - Study Notes

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Chapter Summary

This chapter explores the d-block and f-block elements, known respectively as transition and inner transition elements. It details their position in the periodic table, general characteristics such as metallic nature, high melting points, and variable oxidation states. The unit also covers the specific properties of Lanthanoids and Actinoids, including the significant impact of Lanthanoid contraction on atomic radii and chemical behavior.

Learning Objectives

Key Concepts and Definitions

Worked Methods

Calculating Spin-Only Magnetic Moment

To determine the magnetic moment (\(\mu\)), first find the number of unpaired electrons (n) in the metal ion's electronic configuration. Use the formula \(\mu = \sqrt{n(n+2)}\). For example, a \(d^5\) system like \(Mn^{2+}\) has 5 unpaired electrons, resulting in a calculated value of \(\sqrt{35} \approx 5.92\) BM.

Determining Stability of Oxidation States

Analyze the electronic configuration after electron loss. States that result in \(d^0\), \(d^5\) (half-filled), or \(d^{10}\) (completely filled) subshells often exhibit enhanced stability due to symmetry and exchange energy.

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