aiaiaiai
This is because the carbon atoms are arranged differently in diamond and graphite. In a diamond, the carbon atoms are in a three dimensional crystal lattice structure. In graphite, the carbon atoms are arranged in a two dimensional sheet.
Graphite is made up of layers of carbon atoms arranged in a 2-dimensional network bonded together by strong covalent bonds within the layers, but there are weak van der Waals forces between the layers. This structure allows the layers to slide over each other easily, giving graphite its lubricating properties.
Yes, graphite has a two-dimensional layered structure. It consists of layers of carbon atoms arranged in a hexagonal lattice, with weak van der Waals forces between the layers. This allows the layers to slide over one another easily, giving graphite its lubricating properties and making it useful in applications like pencils and lubricants. The two-dimensional nature of the layers also contributes to its electrical conductivity.
A 2-dimensional figure. A 2-dimensional figure. A 2-dimensional figure. A 2-dimensional figure.
its two dimensional sheets
A2. Graphite is an allotrope of Carbon, and has a crystal form of regular hexagons arranged in a two dimensional sheet.A1. no because it is a rock that has been thinned to be made into our led that we use to write
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.
2
Graphite and diamond are different because of their molecular structures. Graphite has layers of carbon atoms arranged in sheets, allowing it to be soft and slippery. Diamond, on the other hand, has a rigid, three-dimensional structure of carbon atoms, making it the hardest natural substance.
3-dimensional
3-dimensional
The net of a 2 dimensional shape can be folded into a 3 dimensional shape