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Why does carbon forms large number of compounds?

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math teacher

There are lots of reasons why carbon does forms large number of carbon compounds .I’m giving U few of them. The properties which carbon forms many compound is also know as Catenation. Catenation: The tendency of an element to form chains of identical atoms is called catenation. This tendency is observed...
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There are lots of reasons why carbon does forms large number of carbon compounds .I’m giving U few of them. The properties which carbon forms many compound is also know as Catenation. Catenation: The tendency of an element to form chains of identical atoms is called catenation. This tendency is observed in the case of non-metals showing covalency of two or more. However, this property is maximum in carbon as it can combine with other carbon atoms by single, double or triple covalent bonds. The bonding can be extended to form long open chain (straight or branched) or closed ones. Catenation property depends upon the value of bond energy which is maximum in the case of carbon. Bond: C-C Si-Si S-S P-P N-N O-O Bond energy: 83 54 54 50 39 35 (approximately) (kcal/mol) The stability or the strength of the bond decreases as the bond energy decreases. Hence, the tendency of catenation decreases in the following manner; C> Si ~ S > P > N > O Tendency to combine with other non-metals: Carbon has the ability to form strong covalent bonds with many other atoms such as H, O, S, N, Cl, Br, I, etc. The C-C bond energy is approximately equals to the magnitude of bond energies between carbon and various other atoms. Bond C-C C-H C-O C-Cl C-N C-Br Bond energy 83.0 97.0 86.0 81.0 73.0 68.0 (approximately) (kcal/mol) Isomerism is one of the reason also. Finally The conclusion is ... There are two main reasons: It forms a large number of bonds with other atoms(4 per carbon atom) and it really likes bonding to other carbon atoms. This forms a long chain of carbons(often called the skeleton of the molecule) which can be very long. And each carbon can have 2 more atoms attached to it besides the carbons in the chain. read less
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Carbon is the only element that can form so many different compounds because each carbon atom can form four chemical bonds to other atoms, and because the carbon atom is just the right, small size to fit in comfortably as parts of very large molecules. Having the atomic number 6, every carbon atom has...
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Carbon is the only element that can form so many different compounds because each carbon atom can form four chemical bonds to other atoms, and because the carbon atom is just the right, small size to fit in comfortably as parts of very large molecules. Having the atomic number 6, every carbon atom has a total of six electrons. Two are in a completed inner orbit, while the other four are valance electrons—outer electrons that are available for forming bonds with other atoms. The carbon atom's four valence electrons can be shared by other atoms that have electrons to share, thus forming covalent (shared-electron) bonds. They can even be shared by other carbon atoms, which in turn can share electrons with other carbon atoms and so on, forming long strings of carbon atoms, bonded to each other like links in a chain. Silicon (Si), another element in group 14 of the periodic table, also has four valence electrons and can make large molecules called silicones, but its atoms are too large to fit together into as great a variety of molecules as carbon atoms can. Carbon's ability to form long carbon-to-carbon chains is the first of five reasons that there can be so many different carbon compounds; a molecule that differs by even one atom is, of course, a molecule of a different compound. The second reason for carbon's astounding compound-forming ability is that carbon atoms can bind to each other not only in straight chains, but in complex branchings, like the branches of a tree. They can even join "head-to-tail" to make rings of carbon atoms. There is practically no limit to the number or complexity of the branches or the number of rings that can be attached to them, and hence no limit to the number of different molecules that can be formed. The third reason is that carbon atoms can share not only a single electron with another atom to form a single bond, but it can also share two or three electrons, forming a double or triple bond. This makes for a huge number of possible bond combinations at different places, making a huge number of different possible molecules. And a molecule that differs by even one atom or one bond position is a molecule of a different compound. The fourth reason is that the same collection of atoms and bonds, but in a different geometrical arrangement within the molecule, makes a molecule with a different shape and hence different properties. These different molecules are called isomers. The fifth reason is that all of the electrons that are not being used to bond carbon atoms together into chains and rings can be used to form bonds with atoms of several other elements. The most common other element is hydrogen, which makes the family of compounds known as hydrocarbons. But nitrogen, oxygen, phosphorous,sulfur, halogens, and several other kinds of atoms can also be attached as part of an organic molecule. There is a huge number of ways in which they can be attached to the carbon-atom branches, and each variation makes a molecule of a different compound. read less
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Tutor

The atomic number of Carbon is 6, of which four are free to form bolds. Hence each carbon atom can form 4 bonds. Carbon also as High catenation power, meaning it can form long chains of carbon-carbon bonds. This is due to its ability to form sp hybrid orbitals.
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mathematician

Hybridization basically we can say.
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Tutor

Carbon is a smallest element of periodic table which has very special property which is not having any other. The properties are as follows.. 1. 4 valence electrons means carbon make 4 covalent bond with others. 2. Carbon have very special property is catenation means C can make covalent bonds with several...
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Carbon is a smallest element of periodic table which has very special property which is not having any other. The properties are as follows.. 1. 4 valence electrons means carbon make 4 covalent bond with others. 2. Carbon have very special property is catenation means C can make covalent bonds with several other C atoms which is unique property. 3. The C make bonding with H,S,O,F,Cl,N in 99% of organic compounds. 4. C is an element which makes = bond & triple bonds with many other C & other constituents elements. 5. C is an element which will show hybridisation & isomeric structure means ISOMERS & ISOMERISM etc.... These are the very special property of C which is not found in the other elements. read less
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