A newly discovered singular diamond caught the attention of scientists eternity ring.

A newly discovered singular diamond caught the attention of scientists eternity ring. The diamond contained a cavity with a smaller diamond that could roll around. How is this unusual structure formed? Scientists are very confused about this. Scientists can only rely on the analysis of the diamond itself, which is brought to the surface when the volcano erupts, and the volcanic eruption will ignite the deep-melting rock, the magma of the kimberlite eternity ring. As can be seen in the driven graph, smaller diamonds move in larger diamonds eternity ring. Researchers at the Gemological Institute of the United States hope to find clues to their formation by studying this strange gem. Cratongen is an ancient and hard rock belt beneath the Earth’s plate eternity ring. These diamond production areas are far beyond the scope of human exploration; the world’s deepest geological borehole is only 12 kilometers deep eternity ring. Therefore, in order to study the peculiar conditions of diamond formation, perhaps this double diamond has a drop of salty liquid that forms this diamond eternity ring. This liquid can easily leak from holes or cracks in the larger diamond casing. Other experts have concluded that this cavity was once filled with minerals from the mantle, such as brown-green olivine or dark red garnet. The molten rock or hot fluid may come into contact with the fill and liquefy the mantle mineral. Experts believe that this shift may occur on the surface of the Earth. Water can erode the diamond’s filling, first turning it into a weaker, softer mineral, and then maybe dissolving it. However, neither of these methods is likely to remove the entire cavity. By studying the world of eccentric minerals, researchers can learn more about the formation of diamonds, and perhaps the environment and chemicals that diamonds encounter in the depths of the earth. Wang Wuyi will be responsible for the analysis of this diamond at the Gemological Institute of the United States. They will use high-resolution scanning CT to observe the three-dimensional structure of the diamond. Wang Wuyi wants to check the shape of the cavity and find possible leak paths for possible mineral filling. We may have to pay special attention to manual processing. Although it is unclear how the double drill is cleaned after mining, many treatments include cleaning with highly corrosive substances such as hydrofluoric acid. He also hopes to study the chemical properties of diamonds to find clues about substances that might have existed in this vacuum. To really solve this problem, researchers may only need to find more references, and the ultimate goal is to find a diamond that is still filled with fillers. That is all happy. As the sea floor drops, the temperature rises, which forces the fluid to flow out of the rock and sediment. The resulting salty, carbon-rich, thick liquid that penetrates deep underground creates diamond crystals. But this does not seem to explain how the newly discovered diamonds crystallize. This small diamond is not made up of a single piece of ore, but wrapped in a larger diamond.

 

 

https://www.iprimo.hk/en/eternity/rings/