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Carbon transforms into diamonds through natural processes when extreme heat and pressure deep within the Earth cause carbon atoms to bond together in a specific arrangement, forming the crystal structure of a diamond. This process typically occurs in the Earth's mantle, where the conditions are just right for diamond formation over millions of years.

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How do you extract diamonds from the earth?

Diamonds are extracted from the Earth through mining processes such as open-pit mining or underground mining. Once the diamond-containing ore is mined, it is processed to separate the diamonds from the surrounding rock and soil. This typically involves crushing and sorting the ore to extract the diamonds.


A geologist would consider a manufactured diamond to be a real diamond?

A geologist would differentiate between a natural diamond -- formed by a geological process, and a synthetic diamond -- formed by a man-made process. Both diamonds are 'real diamonds'. Read more about synthetic diamonds, below.


How are industrial diamonds formed?

Industrial diamonds are typically formed under very high pressure and temperature conditions in the Earth's mantle. They are formed when carbon atoms are subjected to these extreme conditions and transform into diamond crystals. These diamonds are then brought to the surface through volcanic eruptions.


How do diamonds end up in streambeds?

Diamonds are erupted to the surface of earth by volcanic pipes. When water flows over these pipes, diamonds are tumbled out and can be found in stream beds. They can also be found at the mouths of rivers that empty into the sea. These diamonds are called alluvial diamonds. These diamonds have been removed from the kimberlite material that erupted with them, and are eroded by the flowing water. Often, this process takes millions of years.


How long does it take for a canyon to form through natural erosion processes?

The time it takes for a canyon to form through natural erosion processes can vary greatly, but it typically ranges from thousands to millions of years.

Related Questions

What is 100 percent natural diamonds?

100 percent natural diamonds are diamonds that are formed in the earth's mantle over millions of years through natural processes without any human intervention or enhancement. They are not synthetic or lab-grown diamonds.


Why aren't diamonds made in a laboratory considered minerals?

Lab-grown diamonds have the same chemical composition and crystal structure as natural diamonds, but they are not considered minerals because they are not formed through natural geological processes. Minerals are naturally occurring inorganic substances with a specific chemical composition and crystal structure.


Are the pink diamonds natural or are they colored by man?

Pink diamonds can occur naturally and are rare and valuable. Their pink color is a result of unique conditions during their formation deep within the Earth's crust. However, pink diamonds can also be treated or enhanced through various processes, such as irradiation or high-pressure, high-temperature treatments.


What are Industrial Diamonds?

Industrial diamonds are diamond particles that are used in various industries for cutting, grinding, and drilling. These diamonds are typically synthetic rather than natural and are produced through high-pressure, high-temperature processes. They are valued for their extreme hardness and durability, making them ideal for industrial applications.


Why are diamonds that are made in laboratory considered to be minerals?

Diamonds that are made in a laboratory are known as lab-grown diamonds . These diamonds are considered minerals since they are optically and chemically similar to mined diamonds, formed by the same mineral known as carbon. The only difference between mined and lab-grown diamonds is where carbon is crystallized- the earth's crust or the lab. CVD diamonds look exactly like mined diamonds and sparkle like natural diamonds, which is why they are known as minerals. There is no chemical or visual difference between lab-created and mined diamonds.


How do you extract diamonds from the earth?

Diamonds are extracted from the Earth through mining processes such as open-pit mining or underground mining. Once the diamond-containing ore is mined, it is processed to separate the diamonds from the surrounding rock and soil. This typically involves crushing and sorting the ore to extract the diamonds.


A geologist would consider a manufactured diamond to be a real diamond?

A geologist would differentiate between a natural diamond -- formed by a geological process, and a synthetic diamond -- formed by a man-made process. Both diamonds are 'real diamonds'. Read more about synthetic diamonds, below.


Energy sources replaced through ongoing natural processes are called?

natural energy sources


How are industrial diamonds formed?

Industrial diamonds are typically formed under very high pressure and temperature conditions in the Earth's mantle. They are formed when carbon atoms are subjected to these extreme conditions and transform into diamond crystals. These diamonds are then brought to the surface through volcanic eruptions.


How do diamonds end up in streambeds?

Diamonds are erupted to the surface of earth by volcanic pipes. When water flows over these pipes, diamonds are tumbled out and can be found in stream beds. They can also be found at the mouths of rivers that empty into the sea. These diamonds are called alluvial diamonds. These diamonds have been removed from the kimberlite material that erupted with them, and are eroded by the flowing water. Often, this process takes millions of years.


A natural resource that has never been alive?

Diamonds, Limestone, Water, Wind, Sun, Copper, Tin, Bauxite, etc.


How does Archaebacteria transform energy and matter?

Archaebacteria transform energy through a process called chemosynthesis, where they use inorganic molecules such as hydrogen sulfide or ammonia to create energy. They transform matter through metabolic processes that involve breaking down organic compounds for nutrients and building new cellular components for growth and reproduction.