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'''Carbon''' is a [[Chemical elements|chemical element]] with the symbol C and atomic number 6. It is nonmetallic and tetravalent—its atom making four electrons available to form covalent chemical bonds. Carbon is the 15th most abundant element in the Earth's crust, and the fourth most abundant element in the universe by mass after [[hydrogen]], [[helium]], and [[oxygen]].  Carbon's abundance, its unique diversity of organic compounds, and its unusual ability to form polymers at the temperatures commonly encountered on Earth, enables this element to serve as a common element of all known life.
'''Carbon''' is a [[Chemical elements|chemical element]] with the symbol C and atomic number 6. It is nonmetallic and tetravalent—its atom making four electrons available to form covalent chemical bonds. Carbon is the 15th most abundant element in the Earth's crust, and the fourth most abundant element in the universe by mass after [[hydrogen]], [[helium]], and [[oxygen]].  Carbon's abundance, its unique diversity of organic compounds, and its unusual ability to form polymers at the temperatures commonly encountered on Earth, enables this element to serve as a common element of all known life.


The atoms of carbon can bond together in diverse ways, resulting in various allotropes of carbon. Well-known allotropes include graphite, [[diamond]], amorphous carbon and fullerenes. The physical properties of carbon vary widely with the allotropic form. For example, graphite is opaque and black while diamond is highly transparent; graphite is soft enough to form a streak on [[paper]], while diamond is the hardest naturally occurring material known; and while graphite is a good electrical conductor, diamond has a low electrical conductivity.  
The atoms of carbon can bond together in diverse ways, resulting in various allotropes of carbon. Well-known allotropes include [[graphite]], [[diamond]], amorphous carbon and fullerenes. The physical properties of carbon vary widely with the allotropic form. For example, graphite is opaque and black while diamond is highly transparent; graphite is soft enough to form a streak on [[paper]], while diamond is the hardest naturally occurring material known; and while graphite is a good electrical conductor, diamond has a low electrical conductivity.  


The largest sources of inorganic carbon are [[limestone]]s, dolomites and [[carbon dioxide]], but significant quantities occur in organic deposits of [[coal]], [[peat]], [[oil]], and [[methane]] clathrates.
The largest sources of inorganic carbon are [[limestone]]s, dolomites and [[carbon dioxide]], but significant quantities occur in organic deposits of [[coal]], [[peat]], [[oil]], and [[methane]] clathrates.
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*[[Peat]]
*[[Peat]]
**'''Carbon'''
**'''Carbon'''
**[[Graphite]]
**[[Nitrogen]]
**[[Nitrogen]]
***[[Cyanide]]
***[[Cyanide]]

Revision as of 00:22, 9 January 2023

Position of carbon in the periodic table.

Carbon is a chemical element with the symbol C and atomic number 6. It is nonmetallic and tetravalent—its atom making four electrons available to form covalent chemical bonds. Carbon is the 15th most abundant element in the Earth's crust, and the fourth most abundant element in the universe by mass after hydrogen, helium, and oxygen. Carbon's abundance, its unique diversity of organic compounds, and its unusual ability to form polymers at the temperatures commonly encountered on Earth, enables this element to serve as a common element of all known life.

The atoms of carbon can bond together in diverse ways, resulting in various allotropes of carbon. Well-known allotropes include graphite, diamond, amorphous carbon and fullerenes. The physical properties of carbon vary widely with the allotropic form. For example, graphite is opaque and black while diamond is highly transparent; graphite is soft enough to form a streak on paper, while diamond is the hardest naturally occurring material known; and while graphite is a good electrical conductor, diamond has a low electrical conductivity.

The largest sources of inorganic carbon are limestones, dolomites and carbon dioxide, but significant quantities occur in organic deposits of coal, peat, oil, and methane clathrates.

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See also

References

This article uses material from the Wikipedia article Carbon, which is released under the Creative Commons Attribution-ShareAlike 3.0 Unported License (view authors). Wikipedia logo