Linked from
The 22 pages that link to Cleavage (crystal), each with the reason it gives.
CalciteRelated: Calcite breaks in three directions to form rhombohedral fragments.
MineralRelated: Directional bonding creates the flat break surfaces used to identify many minerals.
GypsumRelated: Gypsum commonly splits along planes parallel to its sheets of water molecules.
MicaRelated: Mica’s exceptionally strong cleavage lets it separate into thin sheets.
AmphiboleRelated: Amphiboles characteristically cleave in two directions at about 56° and 124°.
GalenaRelated: Galena breaks readily along three directions at right angles.
SylviteRelated: Sylvite's cubic cleavage helps distinguish its physical behavior.
MuscoviteRelated: Muscovite’s cleavage reveals its crystal layers as thin, smooth surfaces.
HornblendeRelated: Hornblende commonly cleaves along two directions meeting at about 56° and 124°.
AugiteRelated: Augite commonly shows two cleavage directions meeting at nearly right angles.
BiotiteRelated: Weak bonding between biotite’s layers produces its prominent basal cleavage.
LepidoliteRelated: Lepidolite’s sheet structure produces the characteristic mica cleavage.
OrpimentRelated: Orpiment’s layered structure produces prominent cleavage parallel to its sheets.
BaryteRelated: Baryte commonly shows good cleavage in two directions.