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Ch. 3 - An Introduction to Organic Compounds: Nomenclature, Physical Properties, and Structure
Bruice - Organic Chemistry 8th Edition
Bruice8th EditionOrganic ChemistryISBN: 9780135213711Non è quello che usi tu?Cambia libro di testo
Capitolo 3, Problema 80c,d

What is each compound’s systematic name?
c.
d.

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1
Identify the longest carbon chain in the compound. This will determine the base name of the compound according to the number of carbon atoms it contains.
Number the carbon atoms in the longest chain starting from the end nearest to the first substituent encountered. This ensures the lowest possible numbers for the substituents.
Identify and name the substituents attached to the main carbon chain. Use prefixes like 'methyl-', 'ethyl-', etc., based on the number of carbon atoms in the substituent.
Assign a number to each substituent based on its position on the main chain. If there are multiple identical substituents, use prefixes such as 'di-', 'tri-', etc., to indicate their quantity.
Combine the names of the substituents with the base name of the compound, placing the substituents in alphabetical order and using hyphens to separate numbers from letters. Ensure the systematic name reflects the correct IUPAC nomenclature.

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IUPAC Nomenclature

IUPAC nomenclature is a systematic method for naming organic chemical compounds. It provides a set of rules to create unique names based on the structure of the molecule, including the longest carbon chain, functional groups, and stereochemistry. Understanding these rules is essential for accurately identifying and communicating the identity of compounds.
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The different parts of an IUPAC name

Functional Groups

Functional groups are specific groups of atoms within molecules that are responsible for the characteristic chemical reactions of those molecules. Recognizing functional groups is crucial for determining the properties and reactivity of organic compounds, as they dictate how the compound behaves in chemical reactions and influence its systematic name.
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Identifying Functional Groups

Structural Isomerism

Structural isomerism occurs when compounds have the same molecular formula but different structural arrangements of atoms. This concept is important in organic chemistry because different isomers can have vastly different properties and names. Understanding how to identify and name these isomers is key to providing the correct systematic names for compounds.
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Monosaccharides - D and L Isomerism