Linked from
The 29 pages that link to Magnetic storage, each with the reason it gives.
Magnetic fieldRelated: Local magnetic fields represent data on disks and tapes.
FerromagnetismRelated: Ferromagnetic regions encode data through stable magnetic orientations.
HysteresisRelated: Stable magnetic states preserve recorded bits after the writing field disappears.
BitRelated: Magnetic orientations can physically encode binary values in storage media.
Iron oxideRelated: Fine iron oxide particles served as recording media in early magnetic tapes.
Magnetic domainRelated: Recorded bits are represented by magnetization patterns in magnetic media.
MagnetizationRelated: Recording writes and reads information by changing local magnetization.
Magnetic anisotropyRelated: Anisotropy helps keep recorded bits stable against thermal fluctuations.
Hard disk driveNarrower topic: A drive encodes bits as magnetic patterns on its disk surfaces.
MagnetismBroader topic: It uses stable magnetic states to preserve digital information.
Floppy diskNarrower topic: A floppy disk stores bits as magnetic patterns on its coated surface.
Magnetic-tape data storageNarrower topic: Tape drives encode data by magnetizing regions of tape.
MaghemiteRelated: Maghemite particles have served as magnetic pigments in recording media.
Cassette tapeNarrower topic: Cassette recorders encode sound as magnetic patterns along the tape.
Spinel groupRelated: Ferrite spinels have served as magnetic materials in recording technologies.
Magnetic systemsBroader topic: It uses stable magnetic states as readable, writable information.