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・ Tetramoera schistaceana
・ Tetramolopium
・ Tetramolopium arenarium
・ Tetramolopium capillare
・ Tetramolopium filiforme
・ Tetramolopium lepidotum
・ Tetramolopium remyi
・ Tetramolopium rockii
・ Tetramoriini
・ Tetrahedral-icosahedral honeycomb
・ Tetrahedral-octahedral honeycomb
・ Tetrahedral-square tiling honeycomb
・ Tetrahedral-triangular tiling honeycomb
・ Tetrahedrally diminished dodecahedron
・ Tetrahedrane
Tetrahedrite
・ Tetrahedroid
・ Tetrahedron
・ Tetrahedron (journal)
・ Tetrahedron in Bottrop
・ Tetrahedron Letters
・ Tetrahedron packing
・ Tetrahedron Prize
・ Tetrahedron Provincial Park
・ Tetrahemihexahedron
・ Tetraheptagonal tiling
・ Tetrahexagonal tiling
・ Tetrahydrate
・ Tetrahydro-2-furoic acid
・ Tetrahydroberberine oxidase


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Tetrahedrite : ウィキペディア英語版
Tetrahedrite

Tetrahedrite is a copper antimony sulfosalt mineral with formula: . It is the antimony endmember of the continuous solid solution series with arsenic-bearing tennantite. Pure endmembers of the series are seldom if ever seen in nature. Of the two, the antimony rich phase is more common. Other elements also substitute in the structure, most notably iron and zinc, along with less common silver, mercury and lead. Bismuth also substitutes for the antimony site and ''bismuthian tetrahedrite'' or ''annivite'' is a recognized variety. The related, silver dominant, mineral species freibergite, although rare, is notable in that it can contain up to 18% silver.
Tetrahedrite gets its name from the distinctive tetrahedron shaped cubic crystals. The mineral usually occurs in massive form, it is a steel grey to black metallic mineral with Mohs hardness of 3.5 to 4 and specific gravity of 4.6 to 5.2.
It occurs in low to moderate temperature hydrothermal veins and in some contact metamorphic deposits. It is a minor ore of copper and associated metals. It was first described in 1845 for occurrences in Freiberg, Saxony, Germany.
== Applications ==

California-based Alphabet Energy announced plans to offer a thermoelectric device based on tetrahedrite to turn heat into electricity. The company claimed that other thermoelectrics typically produce about 2.5 percent efficiency, while tetrahedrite could achieve 5 to 10 percent.
Other thermoelectrics are either scarce, expensive ($24-146/kg vs $4 for tetrahedrite) and/or toxic. Working with a natural material also reduces manufacturing costs, which otherwise chemically process pure materials.〔

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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