Linked from
The 36 pages that link to Ferromagnetism, each with the reason it gives.
Curie temperatureNarrower topic: Curie temperature marks the loss of this ordered magnetic state.
Magnetic domainNarrower topic: Ferromagnetic order supports domains separated by walls.
MagnetizationCompared with: It is a prominent source of large, persistent magnetization.
ParamagnetismCompared with: Its collective alignment can persist after the applied field is removed.
CobaltRelated: Cobalt is one of the few elements that is ferromagnetic at room temperature.
Order parameterBroader topic: Magnetization serves as its standard order parameter.
Exchange interactionRelated: Positive effective exchange often favors parallel neighboring spins.
MagnetismBroader topic: It produces the familiar persistent magnetization of many permanent magnets.
ElectromagnetRelated: Ferromagnetic cores respond strongly to the field generated by the winding.
SpintronicsRelated: Ferromagnets provide stable magnetic states that encode spintronic bits.
Permanent magnetNarrower topic: Most strong permanent magnets rely on ferromagnetic order.
NeodymiumRelated: Neodymium compounds and alloys can sustain strong magnetic order.
Classical spin modelsRelated: Ferromagnetic couplings in spin models capture spontaneous alignment.
Magnetic systemsBroader topic: It is the familiar ordered state behind many permanent magnets.