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CBSE · Class 12 · Physics · Magnetism and MatterClassify magnetic materials into diamagnetic, paramagnetic, and ferromagnetic substances on the basis of their magnetic properties. Give at least three distinct properties and two examples for each.

Step-by-Step Solution

Introduction to Magnetic Classification\nBased on their response to an external magnetic field and their internal atomic structure, magnetic materials are broadly classified into three categories: Diamagnetic, Paramagnetic, and Ferromagnetic substances.

1. Diamagnetic Substances\nDiamagnetic materials are those substances which are feebly repelled by a magnet and tend to move from stronger to weaker parts of a magnetic field.

  • Properties:
    • Magnetic susceptibility ($\chi_m$) is small and negative.
    • Relative permeability ($\mu_r$) is slightly less than 1 ($0 \le \mu_r < 1$).
    • They do not obey Curie's Law; their magnetic susceptibility is independent of temperature.
  • Examples: Bismuth, Copper, Water, Gold.

2. Paramagnetic Substances\nParamagnetic materials are those substances which are feebly attracted by a magnet and tend to move from weaker to stronger parts of a magnetic field.

  • Properties:
    • Magnetic susceptibility ($\chi_m$) is small and positive.
    • Relative permeability ($\mu_r$) is slightly greater than 1 ($\mu_r > 1$).
    • They obey Curie's Law: Magnetic susceptibility is inversely proportional to absolute temperature ($\chi_m \propto 1/T$).
  • Examples: Aluminum, Platinum, Sodium, Oxygen.

3. Ferromagnetic Substances\nFerromagnetic materials are those substances which are strongly attracted by a magnet and get strongly magnetized in the direction of the applied field.

  • Properties:
    • Magnetic susceptibility ($\chi_m$) is very large and positive.
    • Relative permeability ($\mu_r$) is very large (much greater than 1).
    • They obey Curie-Weiss Law at temperatures above the Curie temperature ($T_c$), where $\chi_m \propto \frac{1}{T - T_c}$.
  • Examples: Iron, Cobalt, Nickel, Alnico.

Summary\nUnderstanding these distinctions is crucial for applications ranging from transformer cores to permanent magnets and magnetic shielding.

💡 Study Guide: This question tests core syllabus concepts from Magnetism and Matter. For formulas, key summaries, and mock exam reference guides, read the full Magnetism and Matter Revision Notes.
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