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The only way a carbon atom becomes stable is if they gain or lose electrons. Typically carbon will bond with other elements to do this.
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The most stable combination of carbon and oxygen atoms is carbon dioxide (CO2). Each carbon atom forms a double bond with two oxygen atoms, resulting in a stable molecule with a linear geometry.
A covalent bond is formed between a carbon atom and a sulfur atom. Both atoms share electrons to achieve a stable electron configuration.
A covalent bond exists between a carbon atom and a chlorine atom when they share electrons to achieve a stable electron configuration. Chlorine is more electronegative than carbon, so the shared electrons are pulled closer to the chlorine atom.
It is a 1:1 ratio because in a Carbon-12 atom there are 6 neutrons and 6 protons.
A covalent bond exists between an atom of carbon and an atom of fluorine. In this type of bond, the atoms share a pair of electrons to achieve a stable electron configuration.
The most stable carbocation is the tertiary carbocation, which has three alkyl groups attached to the positively charged carbon atom.
The strongest and most stable bonds involve carbon (C) to carbon bonds. C in sp, sp2, and sp3 hybridization, that is single, double and triple bonds, are the most stable.
Any carbon atom can form a covalent bond with nitrogen. In hydrogen cyanide, HCN, the carbon atom forms a triple covalent bond with the nitrogen atom. In amino acids, the carbon atom forms a single bond with a nitrogen atom.
There are six electrons in two shells.In order to stable carbon, it take electrons from nearest noble gas to stable the carbon.It order to stable carbon it gain -4 electrons from the nearest noble gas Neon.
CBr (carbon monobromide) is a covalent compound. It is composed of a carbon atom bonded to a bromine atom via a covalent bond, where they share electron pairs to form a stable molecule.