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What rock is made up of carbon atoms?

Diamond is a rock made up of carbon atoms. Its structure is a repeating pattern of carbon atoms bonded together in a strong, three-dimensional network.


What is the symbol of the non metal diamond?

C. Diamond is carbon in a pure form, a network of just carbon atoms


Why diamond is a non metal?

Diamond is classified as a non-metal because it is composed of carbon atoms arranged in a covalent network structure. Unlike metals, which have free electrons that can move throughout the material, diamond's carbon atoms are held together by strong covalent bonds, making it a non-metal.


In diamond carbon atoms are bonded together by extended covalent bonds. What type of solid is diamond?

Diamond is a type of covalent network solid due to its structure where each carbon atom is covalently bonded to four other carbon atoms in a three-dimensional lattice. This results in a very strong and rigid structure, making diamond one of the hardest naturally occurring substances.


How many atoms are in a diamond?

A diamond is composed of carbon atoms. The crystal structure of a diamond contains carbon atoms bonded together in a repeating pattern, with each carbon atom forming four covalent bonds with surrounding carbon atoms. This means that a diamond contains a very large number of carbon atoms, typically on the order of 10^23 atoms.


How are atoms arranged in a network solid such as a diamond?

covalent bonds join all the atoms tightly together


What is an example of a network solid?

A crystalline solid held together by covalent bonds


What structural units make up network solids?

Nonmetal atom


What are 3 examples of allotropes of carbon?

Three examples of allotropes of carbon are diamond, graphite, and graphene. Diamond consists of a three-dimensional network of carbon atoms, graphite has a layered structure, and graphene is a single layer of carbon atoms arranged in a hexagonal lattice.


What is the type of covalent bond that is found in a diamond?

These are giant molecular lattice structures. This implies that strong covalent bonding holds their atoms together in a highly regular extended network. The bonding between the atoms goes on and on in three dimensions. Melting requires the separation of the species comprising the soild state, and boiling the separation of the species comprising the liquid state. Because of the large amount of energy needed to break huge numbers of covalent bonds, all giant covalent network structures have high melting points and boiling points and are insoluble in water. Diamond, graphite (allotropes of carbon) and quartz (silicon(IV) oxide, SiO2) are examples.


Can you remove carbon from a diamond?

No, carbon cannot be removed from a diamond as it is a pure form of carbon. The structure of a diamond is a tightly bonded network of carbon atoms, and it is not possible to chemically or physically remove the carbon without altering the structure of the diamond.


What is the ionic bonding of diamond?

Diamond does not contain ionic bonds. It is composed of carbon atoms arranged in a tetrahedral lattice structure held together by strong covalent bonds. Each carbon atom shares electrons with four neighboring carbon atoms, creating a network of covalent bonds throughout the entire crystal structure.