हिंदी

Explanation of Dia, Para and Ferromagnetism on the Basis of Atomic Model of Magnetism

Advertisements

Topics

Estimated time: 7 minutes
CISCE: Class 12

Definition: Diamagnetism

Property of substances that are weakly repelled by a magnetic field due to zero net magnetic moment per atom (paired electrons).

OR

Substances with all paired electrons, resulting in zero permanent magnetic moment per atom.

CISCE: Class 12

Definition: Paramagnetism

Property of substances weakly attracted by a magnetic field due to a net atomic magnetic moment caused by unpaired electrons.

OR

Substances whose atoms possess unpaired electrons, giving each atom a net magnetic moment; moments are randomly oriented in the absence of a field.

CISCE: Class 12

Definition: Ferromagnetism

Property of substances strongly attracted by a magnetic field and capable of retaining magnetism due to alignment of magnetic domains.

OR

Substances in which the magnetic moments of atoms align spontaneously within regions called domains, producing strong magnetism.

CISCE: Class 12

Diamagnetism

Key Characteristics:

  • Weakly repelled by an external magnetic field.
  • Induced magnetic moment is opposite to the applied field direction.
  • Property exists in all materials, but is masked in para-/ferromagnetic substances.
  • Temperature independent (does not follow Curie's Law).
  • Susceptibility (χm​) is small and negative.

Real-Life Example: Bismuth and copper rods placed in a strong magnetic field align themselves perpendicular to the field, unlike iron.

CISCE: Class 12

Paramagnetism

Key Characteristics:

  • Weakly attracted by an external magnetic field.
  • Magnetic moments partially align with the applied field.
  • Alignment is temperature-dependent — thermal agitation opposes alignment.
  • Loses magnetism once the external field is removed.

Important Formula (Curie's Law):

  • M = C(\[\frac {H}{T}\])

Therefore, magnetic susceptibility:

  • χm = \[\frac {C}{T}\]

where C is the Curie constant, H is the applied field, and T is the absolute temperature.

Real-Life Example: Aluminium and platinum are weakly pulled toward a strong magnet.

CISCE: Class 12

Ferromagnetism

Key Characteristics:

  • Domains typically contain 1017 to 1021 atoms.
  • Magnetisation occurs via domain boundary displacement and domain rotation.
  • Retains magnetism after removal of the field (retentivity).
  • Strongly attracted by magnetic fields.
  • Becomes paramagnetic above the Curie temperature.

Real-Life Example: Iron nails becoming magnetised after prolonged contact with a bar magnet; used in electromagnets, transformers, and permanent magnets.

Advertisements
Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×