Chondrite

Hold a piece of history 4.56 billion years old in your collection
Chondrites were formed exactly 4.56 billion years ago, a few million years after the birth of the solar system, making them among the oldest known material in the solar system. Over their entire existence, they have undergone no changes, allowing us to picture the material from which planets were formed - including ours.
Available pieces
Although chondrites are the most common meteorites found on Earth, every piece is unique. The final leg of its journey was the toughest, and passing through the atmosphere caused many changes to its surface—giving you clear proof that the stone is indeed of extraterrestrial origin.
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Exclusive pieces
They bear the unmistakable marks of their dramatic journey through space and flight through our atmosphere. Proof of their extraterrestrial origin is the dark fusion crust, created in the fiery heat during entry into Earth's atmosphere. The surface of these meteorites is also decorated with fascinating regmaglypts—fingerprint-like indentations formed by turbulent hot airflow during atmospheric entry. Owning such a specimen means holding an authentic fragment of primordial matter that survived a journey spanning billions of years.
View offerMeteorites under €40 / 1000 CZK
Chondrite pieces at affordable prices. Available to everyone and ideal as a gift for your loved ones.
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CV3 Carbonaceous chondrites
These carbonaceous chondrites were not exposed to higher temperatures, so they remain largely unaltered by thermal processes. They are compounds that appeared early from the primeval solar nebula, condensed, and represent the oldest minerals formed in the solar system. They contain a relatively high proportion of carbon (up to 3%) in the form of graphite, carbonates, and organic compounds, including amino acids. Additionally, they contain water and minerals that were altered by the presence of water.
View offerAl Haggounia 001 Meteorites
A rare "fossil" enstatite chondrite that, after more than 10,000 years in the sands of the Western Sahara, remains a fascinating witness to the birth of our Solar System. Its unique low-iron mineralogy and traces of impact melting reveal the turbulent processes in early planetesimals, where the foundations of our planetary system were born. Today, this piece of history represents a unique collector's item combining scientific depth with an aesthetic appreciated by every space lover.
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