Dehydration synthesis occurs primarily between organic molecules. Organic molecules are made of almost exclusively nonmetals. Therefore the bond is covalent.
Ionic bond.
A triglyceride forms when a glycerol molecule combines with three fatty acids through dehydration synthesis. Triglycerides are a type of lipid that serves as a storage form of energy in organisms.
A polar covalent bond is formed between hydrogen and chlorine. This bond is formed by the unequal sharing of electrons, with chlorine attracting the electrons more strongly than hydrogen.
Water is one product of every dehydration synthesis.The reason is that during this kind of reaction, one molecule (say, of glucose) loses a hydrogen atom (H) and thus makes a bond available for reaction with another molecule (say, a second glucose). This second molecule loses a hydroxyl group (-OH) to make a bond available.The two reactant molecules can now combine, and the H and -OH themselves combine to form a molecule of water. Since the overall result is effectively a loss of water from the reactants, it is called dehydration.
When a bond is formed by atoms by sharing the electrons, the bond is called a covalent bond.
Water is removed during dehydration synthesis. A covalent bond is produced by dehydration synthesis. Hydrolysis, the addition of water, can break apart this bond.
dehydration synthesis
The reaction is called "Dehydration Synthesis".
triglyceride
triglyceride
triglyceride
A covalent bond would be formed
triglyceride
lilbittybitch
triglyceride
triglyceride
triglyceride