Double Helix unwound and each strand acts as a template. Bases are matched to synthesize the new strand.
the DNA molecule splits down the middle, or unzips, into two strands.
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each strand serves as a template or model, to produce the new strands.
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two new DNA strands are produced, following the rules of base pairing.
a. replication
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∙ 8y agoIn DNA replication, the DNA molecule unwinds and separates into two strands. Each strand serves as a template for the synthesis of a new complementary strand, resulting in two identical DNA molecules. This process ensures that each new cell receives a complete set of genetic information.
Transcription.
replication
DNA Replication
DNA replication produces a copy of the DNA. At the same time the cell in which the DNA is to be found splits into two with a copy of the DNA in each. DNA replication is caused by cell replication during the process of mitosis.
The process of duplicating a DNA molecule is called DNA replication. This process involves unwinding the double helix structure of the DNA molecule, synthesizing new strands complementary to the original strands, and proofreading for errors. DNA replication ensures that each daughter cell receives an identical copy of the genetic information during cell division.
Transcription.
DNA is copied during a process called DNA replication. This process occurs in the nucleus of a cell and involves making an exact copy of the original DNA molecule. DNA replication is essential for cell division and passing genetic information from one generation to the next.
DNA synthesis or DNA replication
Replication is the term used to describe the process of copying DNA. Or perhaps transcription.
No, DNA replication is the process of duplicating the DNA molecules, resulting in two identical copies. Mitosis, on the other hand, is a type of cell division that specifically involves the separation of replicated chromosomes into two identical daughter cells.
DNA replication.
No, replication does not require oxygen. Replication is the process of copying DNA or RNA, which can occur in the absence of oxygen. Oxygen is not directly involved in the process of DNA replication itself.
The enzyme DNA dependent DNA polymerase is essential for DNA replication
replication
DNA replication begins with the separation of the double helix into two single strands by helicase. Primase then synthesizes RNA primers on the single strands. DNA polymerase adds complementary nucleotides to each template strand, synthesizing new DNA strands. Finally, DNA ligase joins the Okazaki fragments on the lagging strand and the new strands are proofread for accuracy.
Replication.
replication