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Locant
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== Numeric locants == {{multiple image | align = right | image1 = 2-Pentanone.svg | width1 = 120 | alt1 = | caption1 = Pentan-2-one or [[2-pentanone]] | image2 = 3-Pentanone.png | width2 = 120 | alt2 = | caption2 = pentan-3-one or [[3-pentanone]] | footer = }} The [[International Union of Pure and Applied Chemistry]] (IUPAC) recommends the use of numeric prefixes to indicate the position of substituents, generally by identifying the [[parent hydrocarbon chain]] and assigning the carbon atoms based on their substituents in [[IUPAC_nomenclature_of_organic_chemistry#Order_of_precedence_of_group|order of precedence]]. For example, there are at least two [[isomer]]s of the linear form of [[pentanone]], a [[ketone]] that contains a chain of exactly five [[carbon]] atoms. There is an [[oxygen]] atom bonded to one of the middle three carbons (if it were bonded to an end carbon, the molecule would be an [[aldehyde]], not a ketone), but it is not clear where it is located. In this example, the carbon atoms are numbered from one to five, which starts at one end and proceeds sequentially along the chain. Now the position of the oxygen atom can be defined as on carbon atom number two, three or four. However, atoms two and four are exactly equivalent - which can be shown by turning the molecule around by 180 degrees. The locant is the number of the carbon atom to which the oxygen atom is bonded. If the oxygen is bonded to the middle carbon, the locant is 3. If the oxygen is bonded to an [[atom]] on either side (adjacent to an end carbon), the locant is 2 or 4; given the choice here, where the carbons are exactly equivalent, the lower number is always chosen. So the locant is either 2 or 3 in this molecule. <br> The locant is incorporated into the name of the molecule to remove ambiguity. Thus the molecule is named either [[2-Pentanone|pentan-2-one]] or [[3-pentanone|pentan-3-one]], depending on the position of the oxygen atom. <!--SPLIT INTO NEW SECTION IF LONG ENOUGH--> Any side chains can be present in the place of oxygen and it can be defined as simply the number on the carbon to which any thing other than a hydrogen is attached.
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