3-Methylbutanal is a compound that is found in low concentrations in many types of food - Scottish Highers Chemistry - Question 4 - 2018
Question 4
3-Methylbutanal is a compound that is found in low concentrations in many types of food. The structure of 3-methylbutanal is shown.
(a) Draw a structural formula fo... show full transcript
Worked Solution & Example Answer:3-Methylbutanal is a compound that is found in low concentrations in many types of food - Scottish Highers Chemistry - Question 4 - 2018
Step 1
Draw a structural formula for a ketone that is an isomer of 3-methylbutanal.
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Answer
The structural formula for a ketone that is an isomer of 3-methylbutanal is 3-methylbutan-2-one, which can be represented as:
O
||
H3C-C-CH3
|
H
This structure demonstrates the ketone functional group located at the second carbon.
Step 2
Name a reagent which could be used to distinguish between 3-methylbutanal and a ketone.
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Answer
A reagent that can be used to distinguish between 3-methylbutanal (an aldehyde) and a ketone is Fehling's solution. This reagent will react with the aldehyde group in 3-methylbutanal, causing a color change that indicates the presence of the aldehyde.
Step 3
Name the strongest intermolecular force that occurs between 3-methylbutanal molecules.
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Answer
The strongest intermolecular force that occurs between 3-methylbutanal molecules is permanent dipole-permanent dipole interactions. This is due to the polar nature of the carbonyl group in 3-methylbutanal.
Step 4
Explain fully what can happen to 3-methylbutanal that will cause the olive oil to develop an unpleasant taste.
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3-Methylbutanal can undergo oxidation when exposed to oxygen. This oxidation can lead to the formation of byproducts such as carboxylic acids, which can impart undesirable flavors to the olive oil. When the concentration of these byproducts increases, it can result in an unpleasant taste, often described as rancid or off-flavor.
Step 5
Explain why step 1 is described as a condensation reaction.
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Step 1 is described as a condensation reaction because it involves two molecules combining to form a larger molecule, with the loss of a small molecule, which in this case is water (H2O). This type of reaction typically occurs in the formation of larger organic molecules from smaller precursors.
Step 6
Give the systematic name for product A.
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Answer
The systematic name for product A is 6-methylheptan-2-one. This name describes the seven-carbon chain with a methyl group at the sixth position and a ketone functional group at the second carbon.
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