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dehydration synthesis in each example of dehydration synthesis, show ho…

Question

dehydration synthesis
in each example of dehydration synthesis, show how the removal of the water molecule(s) takes place by drawing a box around the components of water. then, draw the structural formula of each product.
synthesis of a fat
h
|
h - c - oh
|
h - c - oh
|
h - c - oh
|
h
+
o
||
ho - c - c h₁₅ h₃₁
||
ho - c - c h₁₅ h₃₁
||
ho - c - c h₁₅ h₃₁
1 glycerol molecule + 3 fatty acid molecules → 1 fat molecule + 3 water molecules
formation of a peptide bond
h h o

n - c - c - oh
| |
h h
+
h h o

n - c - c - oh
| |
h h
amino acid + amino acid → dipeptide + water

Explanation:

Step1: Analyze synthesis of a fat

In the synthesis of a fat from glycerol and fatty - acids, each hydroxyl group ($-OH$) of glycerol reacts with the carboxyl group ($-COOH$) of a fatty - acid. The components of water ($H$ from glycerol and $OH$ from fatty - acid) are removed.
For glycerol ($C_3H_8O_3$) with three $-OH$ groups and three fatty - acids (each with a $-COOH$ group), three water molecules are removed. The structural formula of the fat (a triglyceride) is formed by ester bonds between the glycerol and the fatty - acid chains.

Step2: Analyze formation of a peptide bond

In the formation of a peptide bond between two amino acids, the amino group ($-NH_2$) of one amino acid reacts with the carboxyl group ($-COOH$) of another amino acid. The components of water ($H$ from the amino group and $OH$ from the carboxyl group) are removed. The resulting product is a dipeptide with a peptide bond ($-CO - NH-$) connecting the two amino - acid residues.

Answer:

For the synthesis of a fat:

  1. Box around the $H$ from glycerol's $-OH$ group and the $OH$ from the fatty - acid's $-COOH$ group for each of the three reactions.
  2. The structural formula of the fat (triglyceride) has glycerol connected to three fatty - acid chains via ester bonds ($-CO - O-$).

For the formation of a peptide bond:

  1. Box around the $H$ from the amino group of one amino acid and the $OH$ from the carboxyl group of the other amino acid.
  2. The structural formula of the dipeptide has a peptide bond ($-CO - NH-$) connecting the two amino - acid residues.