Convert the following condensed structures into skeletal structures: a. CH3CH2CH2CH2CH2CH2OH
Verified step by step guidance
1
Identify the main chain of the molecule. In this case, the condensed structure CH3CH2CH2CH2CH2CH2OH represents a six-carbon chain with a hydroxyl (-OH) group attached to the terminal carbon.
Draw the backbone of the molecule as a zigzag line to represent the six-carbon chain. Each vertex in the zigzag represents a carbon atom, and the ends of the zigzag represent terminal carbons.
Add the hydroxyl (-OH) group to the terminal carbon at the end of the chain. This is indicated by the 'OH' in the condensed structure.
Ensure that each carbon atom has the correct number of bonds (four bonds total). Add implicit hydrogens to the skeletal structure where necessary to satisfy the valency of each carbon.
Double-check the structure to confirm that it matches the original condensed formula and that all atoms and bonds are correctly represented.
Verified video answer for a similar problem:
This video solution was recommended by our tutors as helpful for the problem above
Play a video:
0 Comments
Key Concepts
Here are the essential concepts you must grasp in order to answer the question correctly.
Condensed Structures
Condensed structures are a way of representing organic molecules where the connectivity of atoms is shown without explicitly drawing all the bonds. In these structures, groups of atoms are often grouped together, such as CH3 for a methyl group or CH2 for a methylene group, making it easier to visualize larger molecules without clutter.
Skeletal structures, also known as line-angle structures, are a simplified way of drawing organic molecules. In these diagrams, carbon atoms are represented by the ends and intersections of lines, while hydrogen atoms attached to carbons are usually omitted for clarity. This method emphasizes the overall shape and connectivity of the molecule, making it easier to identify functional groups and molecular frameworks.
Functional groups are specific groups of atoms within molecules that are responsible for the characteristic chemical reactions of those molecules. In the given structure, the hydroxyl group (-OH) is a functional group that indicates the molecule is an alcohol. Recognizing functional groups is essential for understanding the reactivity and properties of organic compounds.