Starch is a carbohydrate made up of one monomer, which is glucose. Nucleic acids are proteins, which are composed of four monomers.
Carbohydrates: starch Lipids: Glycerol Proteins: polypeptides nucleic acid: nucleotides
Polymer: DNA, Monomer: nucleotides Polymer: Proteins, Monomer: amino acids Polymer: Polysaccharides, Monomer: monosaccharides
Starch is composed of two main subunits: amylose and amylopectin. Amylose is a linear chain of glucose molecules bonded by alpha-1,4 glycosidic linkages, while amylopectin is a branched chain with additional alpha-1,6 glycosidic linkages. These subunits of glucose polymers make starch a complex carbohydrate.
Sulfur is found in protein but not in nucleotides. Sulfur-containing amino acids, such as cysteine and methionine, contribute to the structure and function of proteins through the formation of disulfide bonds. Nucleotides, on the other hand, consist of a phosphate group, a sugar molecule, and a nitrogenous base, but do not contain sulfur.
its made up of nucleotides
The single units of polymers such as proteins, starch and DNA are called monomers.
Carbohydrates: starch Lipids: Glycerol Proteins: polypeptides nucleic acid: nucleotides
Polymer: DNA, Monomer: nucleotides Polymer: Proteins, Monomer: amino acids Polymer: Polysaccharides, Monomer: monosaccharides
Starch is composed of two main subunits: amylose and amylopectin. Amylose is a linear chain of glucose molecules bonded by alpha-1,4 glycosidic linkages, while amylopectin is a branched chain with additional alpha-1,6 glycosidic linkages. These subunits of glucose polymers make starch a complex carbohydrate.
Yes, nucleotides pair with specific complementary nucleotides based on their chemical properties.
Sulfur is found in protein but not in nucleotides. Sulfur-containing amino acids, such as cysteine and methionine, contribute to the structure and function of proteins through the formation of disulfide bonds. Nucleotides, on the other hand, consist of a phosphate group, a sugar molecule, and a nitrogenous base, but do not contain sulfur.
Thymine is found on DNA nucleotides but not on RNA nucleotides. In RNA, thymine is replaced by uracil.
Purine nucleotides differ from pyrimidine nucleotides in their structure due to the number of nitrogen-containing rings they have. Purine nucleotides have a double-ring structure, while pyrimidine nucleotides have a single-ring structure.
nucleotides.
its made up of nucleotides
of the choices: proteins starches nucleotides lipids nucleotides are not macromolecules
DNA nucleotides. Note that adenine, thymine, cytosine and guanine are NOT nucleotides, but they are only the bases which make the nucleotides different.