Triglyceride
Three water molecules are formed when a glycerol molecule combines with three fatty acid molecules in a condensation reaction. Each fatty acid molecule contributes a water molecule when it reacts with the glycerol molecule to form a triglyceride.
Yes, a molecule is the smallest unit of a substance that retains all of the chemical properties of that substance. In a chemical reaction, molecules may rearrange or combine with other molecules, but they themselves are not broken down into smaller parts.
The formation of glycerol tributyate, an ester derived from glycerol and butyric acid, involves the reaction of one glycerol molecule with three butyric acid molecules. During this esterification process, three water molecules are produced as byproducts, one for each of the three ester bonds formed. Therefore, a total of three water molecules are produced in the formation of glycerol tributyate.
Three molecules of water are lost when a triglyceride is formed. Each water molecule is released during the condensation reaction between a glycerol molecule and three fatty acid molecules to form a triglyceride.
a condensation reaction or a dehydration reaction
Three water molecules are formed when a glycerol molecule combines with three fatty acid molecules in a condensation reaction. Each fatty acid molecule contributes a water molecule when it reacts with the glycerol molecule to form a triglyceride.
Three fatty acid molecules can combine with one glycerol molecule in a lipid synthesis reaction to form a triacylglycerol molecule. Each of the three hydroxyl groups of glycerol can form an ester bond with a fatty acid molecule.
The chemical reaction is hydrolysis, where fatty acids and glycerol molecules are produced from the breakdown of a triglyceride molecule by water. This reaction is catalyzed by enzymes called lipases.
Dehydration.
Yes, a molecule is the smallest unit of a substance that retains all of the chemical properties of that substance. In a chemical reaction, molecules may rearrange or combine with other molecules, but they themselves are not broken down into smaller parts.
The formation of glycerol tributyate, an ester derived from glycerol and butyric acid, involves the reaction of one glycerol molecule with three butyric acid molecules. During this esterification process, three water molecules are produced as byproducts, one for each of the three ester bonds formed. Therefore, a total of three water molecules are produced in the formation of glycerol tributyate.
Three molecules of water are lost when a triglyceride is formed. Each water molecule is released during the condensation reaction between a glycerol molecule and three fatty acid molecules to form a triglyceride.
When fat undergoes a hydrolysis reaction, it is broken down into glycerol and fatty acids. Glycerol is a three-carbon alcohol, and fatty acids are long hydrocarbon chains with a carboxylic acid group at one end.
A monoglyceride is made up of glycerol and one long chain fatty acid, connected to the glycerol by an ester bond. If you break this down to the free fatty acid and glycerol, the process or reaction is known as hydrolysis, or ester hydrolysis.
a condensation reaction or a dehydration reaction
Three water molecules will be removed to form a triglyceride composed of three fatty acid chains and one glycerol molecule. One molecule of water is removed for each bond between a fatty acid and the glycerol molecule, for a total of three water molecules removed.
A triglyceride molecule may be formed by dehydration synthesis of fatty acid and glycerol molecules. During this process, a water molecule is removed to form an ester bond between the fatty acids and the glycerol, resulting in the formation of the triglyceride.