Griqualand
- Catalog Number:
- 40351
- Specimen Count:
- 1
- Precise Locality:
- Locality:
- African Region
- Collecting Locality:
- Africa, South Africa
- Cabinet:
- 08
- Drawer/Shelf:
- 01
Demonstration of double refraction in calcite crystal
Photo courtesy of Gunnar Ries
Minerals can be opaque, meaning they block all light from passing through them; translucent, meaning they block some of the light; or transparent, meaning they pass most or all the light. A typical garnet or amethyst crystal is translucent; if you hold it up to a bright light, only a small fraction of the light entering the crystal ever reaches your eye, and you cannot see clear images through the crystal. Mica, a silicate mineral, can be cut into thin sheets so transparent that they serve as panes of a window. One colorless, transparent variety of calcite, dubbed "Iceland spar," exhibits a phenomenon called double refraction, which makes one object look like two. Another mineral, a borate called ulexite, occurs in thin parallel fibers that conduct light through them by total internal reflection, just like manufactured optical fibers. Ulexite seems to project an image onto the polished surface of the mineral, giving it the nickname "television stone."
About 200 years ago, scientists studying electricity realized that metals allowed electrical currents to flow through them much more easily than most nonmetals. Because of its relative abundance, high electrical conductivity, and malleability (or ability to be shaped), copper has become the standard material for electrical wiring and switching. Certain types of low-iron silicates, such as muscovite and pyrophyllite, are naturally occurring electrical insulators. Glass or porcelain insulators, made from such minerals as quartz and feldspar, keep high-voltage power-transmission lines from touching their poles. Pyrolusite is the naturally occurring mineral version of manganese oxide, which is inside every non-rechargeable alkaline battery. Gasoline-powered articles start their engines with a jolt of electricity from lead-acid batteries, which get their lead from the mineral galena. Other rechargeable batteries contain nickel, cadmium, or other metals, found in a variety of ores.