Hydrogen bonds hold the nitrogenous base pairs together.
Hydrogen bonds hold nitrogen-containing bases together in DNA. These bonds form between adenine and thymine (A-T) and between cytosine and guanine (C-G) in a DNA double helix.
Sodium and nitrogen do not form a molecular compound together. Sodium is a metal and nitrogen is a nonmetal, so they would form an ionic compound, such as sodium nitride (Na3N).
Nitrogen triiodide - a very unstable and sensitive contact explosive.
Hydrogen bonds hold the nitrogen bases together in the DNA strand. These bonds form between specific pairs of bases (adenine-thymine and guanine-cytosine) and help stabilize the double helix structure of DNA.
Hydrogen bonds connect the nitrogen bases to one another in DNA. These bonds form between complementary bases (A-T and C-G) and help stabilize the double helix structure of DNA.
Describe how each of the DNA nitrogen bases pair together
The nitrogen bases are held together in the center of the DNA molecule by hydrogen bonds. These bonds form between specific base pairs: adenine (A) with thymine (T), and guanine (G) with cytosine (C). The hydrogen bonds provide stability to the DNA double helix structure.
The nitrogen bases, adenine, uracil, guanine, thymine and cytosine are joined to each other via phosphodiester bonds. Hydrogen bonds hold the nitrogen bases in complementary DNA and RNA strands. Polypeptide bonds are formed between an amide and ketone, and these join amino acids in proteins. However, they do not hold nitrogen bases together.
Hydrogen bonds hold nitrogen-containing bases together in DNA. These bonds form between adenine and thymine (A-T) and between cytosine and guanine (C-G) in a DNA double helix.
The two chains are connected by hydrogen bonding between nitrogen bases to form a long double-stranded molecule.So hydrogen bonding determines which nitrogen bases form pairs of DNA.
Hydrogen bonds hold the bases together in pairs in DNA. These bonds form between the nitrogenous bases adenine and thymine, and guanine and cytosine in a complementary manner, contributing to the overall stability and structure of the DNA molecule.
Hydrogen bonds hold the nitrogen bases together in DNA. These bonds form between complementary base pairs, such as adenine-thymine (A-T) and cytosine-guanine (C-G), stabilizing the DNA double helix structure.
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DNA strands are held together by hydrogen bonds that form between the nitrogen bases of both strands.
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Nitrogen bases in DNA bond together through hydrogen bonds. Adenine pairs with thymine through two hydrogen bonds, while guanine pairs with cytosine through three hydrogen bonds. These base pairs form the rungs of the DNA ladder structure.
The nitrogen bases are held together by hydrogen bonds.