
What is the chemical formula for diamond?
Answer
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Hint :We know that Allotropy is the property of any element to exist in more than one form. Diamond, graphite, coke, etc. are called allotropes of carbon. The structure and the position of the atoms in the diamond lattice tell us the molecular formula of diamond and the nature of its bonds.
Complete Step By Step Answer:
Allotropes are the different forms that are possessed by an element that has different structural variations and chemical variations. The most common allotropes can be seen in carbon. Carbon possesses allotropy and has different forms like, graphite, diamond, coke, graphenes, fullerenes, etc. These forms consist of carbon as a sole atom which has different arrangement patterns in their respective crystal lattice.
Diamond is one of the allotropes of carbon that is a crystalline, solid, and homogenous form of carbon. Diamond consists of a $ 3\text{ } $ dimensional structure of carbon network. The carbon atoms are hybridized and form a tetrahedral geometry. Each carbon atom is linked with four other carbon atoms which are again linked with four carbons, which forms a network. These carbons are linked together with covalent bonds. The structure of diamond is:
Diamond is one form of carbon; the other is graphite. To distinguish them, we write:
-diamond: $ C $ (diamond)
-graphite: $ C $ (graphite)
The s stands for solid. Both diamond and graphite are allotropes of carbon. There are other exotic allotropes of carbon (graphenes and fullerenes among them) but they are much less common. A diamond consists of a giant three-dimensional network of carbon atoms. In effect, a diamond is one giant molecule. All we can do is write its empirical formula, which is $ C. $
Note :
Remember that In diamond carbon is linked with 4 other carbons, so it has a $ C\text{ }\text{ }4 $ arrangement, while in graphite, the carbon atoms are linked with 6 other carbons, so it has a $ C\text{ }\text{ }6 $ arrangement. These are the crystalline allotropes of carbon. While coke, coal and soot are termed as amorphous allotropes of carbon.
Complete Step By Step Answer:
Allotropes are the different forms that are possessed by an element that has different structural variations and chemical variations. The most common allotropes can be seen in carbon. Carbon possesses allotropy and has different forms like, graphite, diamond, coke, graphenes, fullerenes, etc. These forms consist of carbon as a sole atom which has different arrangement patterns in their respective crystal lattice.
Diamond is one of the allotropes of carbon that is a crystalline, solid, and homogenous form of carbon. Diamond consists of a $ 3\text{ } $ dimensional structure of carbon network. The carbon atoms are hybridized and form a tetrahedral geometry. Each carbon atom is linked with four other carbon atoms which are again linked with four carbons, which forms a network. These carbons are linked together with covalent bonds. The structure of diamond is:
Diamond is one form of carbon; the other is graphite. To distinguish them, we write:
-diamond: $ C $ (diamond)
-graphite: $ C $ (graphite)
The s stands for solid. Both diamond and graphite are allotropes of carbon. There are other exotic allotropes of carbon (graphenes and fullerenes among them) but they are much less common. A diamond consists of a giant three-dimensional network of carbon atoms. In effect, a diamond is one giant molecule. All we can do is write its empirical formula, which is $ C. $
Note :
Remember that In diamond carbon is linked with 4 other carbons, so it has a $ C\text{ }\text{ }4 $ arrangement, while in graphite, the carbon atoms are linked with 6 other carbons, so it has a $ C\text{ }\text{ }6 $ arrangement. These are the crystalline allotropes of carbon. While coke, coal and soot are termed as amorphous allotropes of carbon.
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