condensation/dehydration :)
heat
The process is called dehydration synthesis or condensation reaction. In this process, a water molecule is removed from the smaller organic molecules, allowing them to bond together to form a larger molecule. This reaction requires energy input to overcome the energy barrier for the molecules to react.
The synthesis reaction you're referring to is called a dehydration synthesis reaction. In this process, a water molecule is removed when two monomers join together to form a larger molecule. This reaction is commonly seen in the formation of macromolecules like proteins and carbohydrates.
Water is removed during dehydration synthesis. A covalent bond is produced by dehydration synthesis. Hydrolysis, the addition of water, can break apart this bond.
During dehydration synthesis, a molecule of water is removed as two monosaccharides join together to form a disaccharide. In the case of joining 5 monosaccharides to form a polysaccharide, four water molecules would be removed in total. A covalent bond, known as a glycosidic bond, forms between the monosaccharides to create the polysaccharide.
Yes, dehydration synthesis releases energy. During this process, a water molecule is removed as two compounds bond together, resulting in the release of energy that drives the formation of the new bond.
heat
The process is called dehydration synthesis or condensation reaction. In this process, a water molecule is removed from the smaller organic molecules, allowing them to bond together to form a larger molecule. This reaction requires energy input to overcome the energy barrier for the molecules to react.
The synthesis reaction you're referring to is called a dehydration synthesis reaction. In this process, a water molecule is removed when two monomers join together to form a larger molecule. This reaction is commonly seen in the formation of macromolecules like proteins and carbohydrates.
Water molecule is removed during dehydration synthesis.
The chemical process by which a molecule of water is removed from the reactants to join the reactants together. Dehydration synthesis takes place when the monomers of organic compounds join together by a chemical reaction to make polymers. Hydrolysis its the opposite reaction of breaking up polymers and is accomplished also by chemical reaction. "The joining of two molecules associated with the removal of a water molecule" -Fundamentals of Anatomy and Physiology 7th ed.
Water is removed during dehydration synthesis. A covalent bond is produced by dehydration synthesis. Hydrolysis, the addition of water, can break apart this bond.
During dehydration synthesis, a molecule of water is removed as two monosaccharides join together to form a disaccharide. In the case of joining 5 monosaccharides to form a polysaccharide, four water molecules would be removed in total. A covalent bond, known as a glycosidic bond, forms between the monosaccharides to create the polysaccharide.
Sugar molecules can be bonded together through a process called dehydration synthesis, where a water molecule is removed to form a glycosidic bond between the molecules. This process results in the formation of a disaccharide or polysaccharide.
When two amino acids are linked together to form a peptide bond, a molecule of water (H2O) is removed. This process is known as dehydration synthesis or condensation reaction.
A hydrolysis reaction. Water is added. Dehydration synthesis is when two water molecules join together. Hydrolysis is the separation of two water molecules.
Dehydration synthesis occurs to form larger molecules by removing water molecules from smaller molecules. This process helps to bond monomers together to form polymers, such as proteins, nucleic acids, and carbohydrates.