An sp4 bond exists between the carbon atoms in diamonds.
Yes - carbon dioxide is 3 atoms and is O=C=O.
There are 9.33 moles of carbon in 5.62 atoms of carbon.
Hypothetically, if you could isolate the carbon in human hair(all living tissue has a carbon base, but most contains other elements in at least trace amounts) if you could generate enough pressue you could compress it into a diamond. However, while this is hypothetical possible, the tools to actually do so do not exist, and it would take a truly absurd amount of hair to make a diamond.
No, it is a compound. Compounds are made up of elements, and elements are made up of atoms.
Butyne, which is an alkyne with four carbon atoms and one carbon-carbon triple bond, has the chemical formula C₄H₆. It can exist in two isomeric forms: 1-butyne (where the triple bond is at the end of the carbon chain) and 2-butyne (where the triple bond is between the second and third carbon atoms). Both forms share the same molecular formula, C₄H₆.
Yes - carbon dioxide is 3 atoms and is O=C=O.
A covalent bond typically exists between carbon and oxygen. This bond involves the sharing of electrons between the two atoms.
No more than 3 bonds (A triple bond) may exist between two carbon atoms.
Yes, CH3OH (methanol) is a covalent compound. It consists of covalent bonds between carbon and hydrogen atoms, as well as carbon and oxygen atoms.
There are 9.33 moles of carbon in 5.62 atoms of carbon.
There are 13 atoms in C6H4Cl2: 6 carbon atoms, 4 hydrogen atoms, and 2 chlorine atoms.
Nominally an atom. However, some element's atoms combine with one another as molecules. For example, carbon is usually extant as C2. In diamonds carbon exists as C4 molecules. Such compounds that exist as elements in different forms are called allotropes.
Energy in glucose is contained in the chemical bonds between the atoms, mostly in the carbon-carbon bonds. during the oxidation of glucose oxygen atoms are inserted into the carbon-carbon bonds. Since the oxygen-carbon bonds exist at a lower energy level than the carbob-carbon bonds, the excess energy is released.
Diamonds form in the Earth's mantle due to the combination of high pressure and high temperature conditions that exist at significant depths within the planet. Under these extreme conditions, carbon atoms can crystallize and bond together to form diamond structures over long periods of time.
No, breathing out diamonds in their gas state is not possible. Diamonds are a solid form of carbon and cannot exist as a gas in the way that oxygen, nitrogen, or other gases do. This concept does not align with the properties of diamonds.
There are 12 carbon atoms in a molecule of maltose. Each carbon atom forms a total of four bonds, which include bonds with other carbon atoms, hydrogen atoms, or oxygen atoms. With 12 oxygen atoms present, these atoms would be accounted for in the molecular structure of maltose as well.
The given compound does not exist if there are twelve carbon atoms before hydrogen atoms then it will be the formula for sugar.