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Hydrolysis reaction typically produces monosaccharides from disaccharides or polysaccharides by breaking the glycosidic bonds between the sugar units. This reaction involves the addition of water molecules to break these bonds.
A condensation reaction occurs to link alpha-linked monosaccharides. In this reaction, a water molecule is eliminated and a glycosidic bond is formed between the two monosaccharides. This results in the formation of a disaccharide.
A disaccharide is formed when two monosaccharides are joined together by a reaction known as a dehydration, or condensation, synthesis. In this type of reaction water is removed, thus the name "dehydration". A new molecule is formed or "synthesized" from the two previously separate ones.
There are several ways to answer that question. First, if two monosaccharides C6H12O6 are used to form a disaccharide, the resulting disaccharide would be C6H22O11 because we would have C6*2 H12*2-2 O6*2-1 (subtract 2H and 1O because this reaction is a dehydration synthesis reaction, aka condensation reaction that result in the release of one water molecule per reaction). The second way to answer this question is that disaccharides are carbohydrates and carbohydrates always have their H and O atoms at a 2 to 1 ratio (hence the name 'hydrate'), and C12H22O12, though possible to create, is not a carbohydrate and therefore not a disaccharide.
Hydrolisis
Hydrolysis reaction typically produces monosaccharides from disaccharides or polysaccharides by breaking the glycosidic bonds between the sugar units. This reaction involves the addition of water molecules to break these bonds.
When two monosaccharides undergo a dehydration synthesis reaction, a disaccharide molecule is formed. This type of reaction involves the removal of a water molecule, leading to the joining of the monosaccharides through a glycosidic bond.
A condensation reaction occurs to link alpha-linked monosaccharides. In this reaction, a water molecule is eliminated and a glycosidic bond is formed between the two monosaccharides. This results in the formation of a disaccharide.
When two monosaccharides link together by Glycosidic bond (type of covalent bond formed by sugar molecule with others) they form a disaccharide. Example of disaccharides: Sucrose - glucose + Fructose Lactose - Galasctose + Glucose
A disaccharide is formed when two monosaccharides are joined together by a reaction known as a dehydration, or condensation, synthesis. In this type of reaction water is removed, thus the name "dehydration". A new molecule is formed or "synthesized" from the two previously separate ones.
A monosaccharide is just one carbon ring and is very soluble , example : glucose. A disaccharide consists of 2 carbon rings and is partially soluble , example : lactose ( galactose + glucose = lactose)
There are several ways to answer that question. First, if two monosaccharides C6H12O6 are used to form a disaccharide, the resulting disaccharide would be C6H22O11 because we would have C6*2 H12*2-2 O6*2-1 (subtract 2H and 1O because this reaction is a dehydration synthesis reaction, aka condensation reaction that result in the release of one water molecule per reaction). The second way to answer this question is that disaccharides are carbohydrates and carbohydrates always have their H and O atoms at a 2 to 1 ratio (hence the name 'hydrate'), and C12H22O12, though possible to create, is not a carbohydrate and therefore not a disaccharide.
What type of reaction produces the most dangerous radioactive waste?
Lactose is a disaccharide composed of two monosaccharides, glucose and galactose, linked by a beta-glycosidic bond. This bond type is a specific type of covalent bond that forms between the two sugar molecules.
Monosaccharides are combined to make disaccharides and polysaccharides through dehydration synthesis, which is an anabolic reaction that requires energy to build the bonds, and water is removed from the bonds and released into the environment.
The type of reaction that involves oxygen and produces light and heat is a combustion reaction.
Hydrolisis