no
Polymers of carbohydrates, fats, and proteins are all synthesized from monomers through the process of dehydration synthesis or condensation reaction. In this process, monomers are joined together by removing a water molecule, which forms a covalent bond between the monomers, resulting in the formation of a polymer.
Oxidising - reducing reactions are important for the synthesis and breakdown of biological molecules?
The common pathway in the production of biological polymers involves the polymerization of monomer units. Monomers are joined together through chemical reactions to form long chains known as polymers. This process is facilitated by enzymes and occurs in the cells of organisms.
Yes, polymers can be made by dehydration reactions. In polymerization, monomers are linked together by removing water molecules during the chemical bonding process. This results in the formation of long chains or networks of repeating units, known as polymers.
The chemical reaction that links monomers together to form polymers is called polymerization. During polymerization, monomers undergo a process where their chemical bonds are broken and new bonds are formed between the monomer units, resulting in a chain-like structure of repeating units known as a polymer. This process can be initiated by heat, light, or the addition of a catalyst.
Polymers of carbohydrates, fats, and proteins are all synthesized from monomers through the process of dehydration synthesis or condensation reaction. In this process, monomers are joined together by removing a water molecule, which forms a covalent bond between the monomers, resulting in the formation of a polymer.
They are (generally) opposite reactions. Dehydration (condensation) reactions build polymers from monomers by removing water while hydrolysis reactions break polymers into monomers by adding water.
dehydration synthesis is when water is formed when combining two molecules. hydrolysis is adding water to make one molecule into two separate molecules.
Oxidising - reducing reactions are important for the synthesis and breakdown of biological molecules?
Because macromolecules are large molecules and are insoluble. It is easier to store them and use them when they have been hydrolysed to smaller molecules and are made soluble.
In most biological polymers, it is water. This is called dehydration synthesis
Yes! Dehydration is the combining of two or more molecules while producing water. Hydrolysis is the addition of water to a molecule to split it up into smaller molecules. Hydrolysis is to Degradation as Dehydration is to Synthesis. Matter of fact, it is usually called Dehydration Synthesis!
The type of chemical reaction that connects polymers together is dehydration synthesis.
Dehydration synthesis or condensation
Dehydration synthesis, also called condensation, is the type of reaction that builds polymers by removing water.
The common pathway in the production of biological polymers involves the polymerization of monomer units. Monomers are joined together through chemical reactions to form long chains known as polymers. This process is facilitated by enzymes and occurs in the cells of organisms.
Yes, polymers can be made by dehydration reactions. In polymerization, monomers are linked together by removing water molecules during the chemical bonding process. This results in the formation of long chains or networks of repeating units, known as polymers.