| Sulfur is known since ancient times. In the first Book of Moses (Genesis), part of the Pentateuch (Five Books of Moses completed, about 440 BC.), There is the story of Sodom and Gomorrah, which the Lord destroyed because of the vicious life of its inhabitants by fire and sulfur. This event will be a ... moreSulfur is known since ancient times. In the first Book of Moses (Genesis), part of the Pentateuch (Five Books of Moses completed, about 440 BC.), There is the story of Sodom and Gomorrah, which the Lord destroyed because of the vicious life of its inhabitants by fire and sulfur. This event will be about 4,500 years have taken place before our era. |
| Calcite is one of the most abundant natural minerals. It is found in very different shapes, both compact as limestone as well as sinter in caves and in the crystalline state. But even in our daily life calcite is always present: in some regions it blockes water pipes as "chalk", we build our houses ... moreCalcite is one of the most abundant natural minerals. It is found in very different shapes, both compact as limestone as well as sinter in caves and in the crystalline state. But even in our daily life calcite is always present: in some regions it blockes water pipes as "chalk", we build our houses with it, it is in our food chain and without it we could not stand upright. Calcite is not rare, but the varied mineral on Earth. The variety of forms and variations of the forms of calcite are unmatched in the world of mineralogy. By 2009, more than 800 Calcit forms have been described. |
| Betrachtet man die Struktur von Kristallen, erkennt mam meistens verschiedene Arten von Symmetrien, wie Translationen, Spiegelungen oder Drehsymmetrien. Der Grund für das Auftreten dieser Symmetrien liegt darin, daß bestimmte Atomanordnungen in der Struktur besonders stabil sind; eine hohe Symmetrie ... moreBetrachtet man die Struktur von Kristallen, erkennt mam meistens verschiedene Arten von Symmetrien, wie Translationen, Spiegelungen oder Drehsymmetrien. Der Grund für das Auftreten dieser Symmetrien liegt darin, daß bestimmte Atomanordnungen in der Struktur besonders stabil sind; eine hohe Symmetrie erlaubt dann die ständige Wiederholung dieser besonders stabilen Konfigurationen in der Struktur. Die Beschäftigung mit der Symmetrie von Kristallen in der Kristallographie ist aus mehreren Gründen besonders wichtig - Ein Beitrag von Erik Hock |