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Hydrogen bonds are formed between bases.Between adenine and thymine ,cytosine and Guanine.

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∙ 12y ago

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What is Hydrogen bonding necessary for?

Hydrogen bonding is necessary for forming double-stranded DNA molecules.


A type of pairing that holds together DNA?

DNA is held together by hydrogen bonding (aka H-bonding).


What holds the strands of DNA together?

Hydrogen bonding.


What type of bonding holds the two strands of DNA together and why is this important?

hydrogen bonding between the two bases present on two strands of dna hold the two strands. If there was no hydrogen bonding then doublex helix structure of dna would not be possible


Which enzyme is responsible for facilitating the hydrogen bonding between nucleotides in a new molecule?

the DNA polymerase III


Where does hydrogen bonding occur in the DNA?

between the nitrogen bases of the two strands of DNA


What connects the base together at the center of DNA?

Hydrogen bonding.


What is in the bonding of nitrogenous bases?

The bonding of nitrogenous bases in DNA involves hydrogen bonds. Adenine pairs with thymine (or uracil in RNA) through two hydrogen bonds, while guanine pairs with cytosine through three hydrogen bonds. These hydrogen bonds help to stabilize the double helix structure of DNA.


The number of cytosine in a DNA molecule equals the number of?

The number of guanine. In DNA, cytosine always pairs with guanine through hydrogen bonding. This relationship forms one of the complementary base pairs in the double helix structure of DNA.


Where in the DNA molecule does hydrogen bonding occur?

Hydrogen bonding occurs between the nitrogenous bases in the DNA molecule. Specifically, hydrogen bonds form between adenine and thymine (or uracil in RNA), as well as between guanine and cytosine. These hydrogen bonds are important for maintaining the double helix structure of DNA.


What type of bonding holds the two strands of DNA together?

hydrogen bonds


What types of bonds form between the complimentary base pairs?

DNA is a double-stranded molecule twisted into a helix (think of a spiral staircase). Each spiraling strand, comprised of a sugar-phosphate backbone and attached bases, is connected to a complementary strand by non-covalent hydrogen bonding between paired bases. The bases are adenine (A), thymine (T), cytosine (C) and guanine (G) so pretty much complementary bases are connected by a hydrogen bonding.