
mineral
Opal
Hydrated amorphous silica (SiO2·nH2O)
AI-generated identification · may be incorrectHardness: 5.5-6.5; Color: Iridescent blue, green, and multi-colored (play-of-color); Luster: Subvitreous to pearly; Crystal structure: Amorphous; SG: 1.9-2.3
- Hardness
- 5
- Color
- Iridescent blue, green, and multi-colored (play-of-color)
- Luster
- Subvitreous to pearly
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Physical properties
Hardness: 5.5-6.5; Color: Iridescent blue, green, and multi-colored (play-of-color); Luster: Subvitreous to pearly; Crystal structure: Amorphous; SG: 1.9-2.3
Formation & geological history
Formed from seasonal rains that leach silica from sandstone and deposit it into cracks or voids as a silica-rich gel. As the water evaporates, it leaves behind the silica in the form of spheres. Precious opal occurs when these spheres are uniform in size and neatly stacked.
Uses & applications
Primarily used in jewelry (rings, pendants, earrings) and as a collector's gemstone. Higher quality specimens are considered semi-precious gemstones.
Geological facts
Opal is the birthstone for October. About 95% of the world's precious opal comes from Australia. The internal structure causes it to diffract light, creating the 'play-of-color' seen in the image.
Field identification & locations
Identify in the field by its distinct iridescent flash known as opalescence. Commonly found in sedimentary environments or volcanic rocks. Collectors look for vibrant colors and 'fire' within the stone.
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Other mineral specimens
Gneiss or Schist
Gneiss or Mica Schist with Garnet
Metamorphic
Sandstone (with potential mineral staining/concretions)
Arenite (SiO2 based)
sedimentary
Epidote
Epidote | Ca2(Al2,Fe3+)(SiO4)(Si2O7)O(OH)
metamorphic
Pegmatite with Tourmaline and Quartz
Igneous Pegmatite
igneous
Granite
Granite (Phaneritic intrusive igneous rock)
igneous
Septarian Pebble
Septarian nodule / Concretion
sedimentary