Mineralienatlas (name for mineral atlas) is the platform for people interested in mineralogy, geology, palaeontology and mining since 2001. We operate a significant database for minerals, fossils, rocks and their localities. Mineralienatlas is not limited to a section. We bring together information and inform comprehensive.

To complete our information constantly, we need your support. With us, everyone can and should participate. Currently Mineralienatlas is used and expanded by 10531 members. Every month hundreds of thousands of visitors use our website as an information source.
 
Geolitho Foundation non-profit GmbH
Geolitho Foundation non-profit GmbH is the non-profit supporter of the Mineral Atlas (Mineralienatlas), the Lithotheque, the Geolitho Collection Management and the Marketplace and Store by collectors for collectors. The Foundation promotes public education in the field of mineralogy, geology, paleontology and mining by operating, maintaining and further expanding earth science projects.
 
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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.
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The Al­ten­berg tin mine is well known for its huge sur­face break left by the min­ing ac­tiv­i­ties. Among min­er­al col­lec­tors the mine is fa­mous as well for its unique Py­c­nite de­posit, a va­ri­e­ty of to­paz oc­cur­ring in mas­sive colum­nar ag­gre­gates up to a length of 30 cm.

The min­ing start­ed in 1440 and c ... moreThe Altenberg tin mine is well known for its huge surface break left by the mining activities. Among mineral collectors the mine is famous as well for its unique Pycnite deposit, a variety of topaz occurring in massive columnar aggregates up to a length of 30 cm.

The mining started in 1440 and continued, with several ups and downs and some total shut-down periods, until 1991. The mining activities aimed for a plutonic granite body (350 to 400 metre in diameter and hydrothermally mineralized mainly with cassiterite and smaller amounts of wolframite, molybdenite, arsenopyrite, bismuth and others) and managed to extract a total sum of 37 million tons of ore. The huge surface break, called "The Altenberger Pinge", is the result of several roof collapses caused by excessive ore excavation and later on the continued drawing of caved material from the bottom of the fracture zone.

Collectible minerals were rare and small, so the Altenberg tin mine became never as famous as the Freiberg or Ehrenfriedersdorf districts, but its unique geology and mining technology made it quite interesting and worth a closer look.

(Full text in german)
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... ist ein spezielles Licht­mikroskop, welch­es lin­ear po­larisiertes Licht mit Po­larisa­toren erzeugt und analysiert. So wird die Dop­pel­brechung bei op­tisch ani­sotropen Min­eralen deut­lich sicht­bar, aber auch op­tische Ak­tiv­itäten kön­nen bes­timmt wer­den.. Es di­ent Pet­ro­graphen für die kris­tal­lop­tische A ... more... ist ein spezielles Lichtmikroskop, welches linear polarisiertes Licht mit Polarisatoren erzeugt und analysiert. So wird die Doppelbrechung bei optisch anisotropen Mineralen deutlich sichtbar, aber auch optische Aktivitäten können bestimmt werden.. Es dient Petrographen für die kristalloptische Analyse (das mikroskopische Studium) der Gesteine, ihrer Minerale und ihres Gefüges.

Durchsichtige Minerale der Gesteine werden in Dünnschliffen (ca. 0,02 mm) oder als Pulver untersucht. Zu den optischen Eigenschaften, die in dem zu untersuchenden Mineral bestimmt werden können, gehört neben dem Brechungsindex oder den Hauptbrechungsindizes auch die Doppelbrechung (Birefringenz), welche mit Hilfe des Polarisationsmikroskopes im durchfallenden Licht bestimmt wird.

Wichtiges Zubehör ist der Universaldrehtisch mit Achse (u.a. 4-achsig) normal zum Schliff, Hilfs-, Vertikal- und Horizontalachse. Mit dieser Methode können selbst kleinste Kristallkörner von einigen hundertstel Millimetern, die in Dünnschliffen als durchsichtige Einschlüsse vorkommen, genau ...
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