=>diamond is not conducting electricity and heat.
=>it is hardest natural substances known.
=>it occurs naturally free state.
=>graphite is soft and greasy to touch.
=>it doesn't conduct heat an electricity.
=>it occurred naturally and manufactured artificially.
=>buckminsterfullerene is used in medicines.
=>it is used in treatment of cancer.
carbon black N330
Carbon has many allotropes. The system of carbon allotropes spans an astounding range. Source: Wikipedia
Graphite is one of the numerous allotropes of the element carbon. For allotropes of carbon please visit the link located underneath the answer.
If they are in different physical form they are ALLOTROPES. If they are in different atomic form they are ISOTOPES. e.g. Allotropes [ Graphite, diamond and buckyballs* buckminster Fullerene) are allotropes of carbon. They appear different because the arrangment of the atomis is different. Isotopes Carbon 12 , Carbon-13, Carbon-14 are isotopes of carbon , because they have a different number of neutrons in the nucleus.
They are known as allotropes, for example, the allotropes of carbon are graphite and diamond.
The three different allotropes of carbon are: -Diamond-Graphite-Buckminsterfullerene
Carbon.
Carbon can form many allotropes.
carbon black N330
Three allotropes of carbon are diamond, graphite, and amorphous carbon. Diamond has a rigid three-dimensional lattice structure, graphite has a layered structure with weak van der Waals forces between layers, and amorphous carbon lacks a specific crystal structure.
Carbon has many allotropes. The system of carbon allotropes spans an astounding range. Source: Wikipedia
Carbon, (C).
Graphite is one of the numerous allotropes of the element carbon. For allotropes of carbon please visit the link located underneath the answer.
noAnother AnswerAll diamonds are allotropes of carbon: there is no diamond if there is no carbon.
diamond graphite and graphene
No, organic compounds are diverse because carbon can form up to four covalent bonds with virtually any other nonmetal and can easily form double and triple bonds.aslo, the bonds formed by carbon are very stable, allowing carbon to form long, chain-like molecules. This same versatility in bonding is also the reason carbon as many allotropes.
Both are allotropes of carbon.