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Page "Biopolymer" ¶ 11
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Nucleic and acid
* Nucleic acid thermodynamics, includes the annealing of DNA or RNA pairing by hydrogen bonds to a complementary sequence, forming a double-stranded polynucleotide
Nucleic acid, so called because of its prevalence in cellular nuclei, is the generic name of the family of biopolymers.
Nucleic acid amplification tests ( NAAT ), such as polymerase chain reaction ( PCR ), transcription mediated amplification ( TMA ), and the DNA strand displacement amplification ( SDA ) now are the mainstays.
* Nucleic acid analogues
Nucleic acid strands realign when " normal " conditions are restored during annealing.
Nucleic acid molecules are separated by applying an electric field to move the negatively charged molecules through an agarose matrix.
* Nucleic acid
Nucleic acids were named for their initial discovery within the nucleus, and for the presence of phosphate groups ( related to phosphoric acid ).
Nucleic acid types differ in the structure of the sugar in their nucleotides-DNA contains 2 '- deoxyribose while RNA contains ribose ( where the only difference is the presence of a hydroxyl group ).
Nucleic acid molecules are usually unbranched, and may occur as linear and circular molecules.
* Nucleic acid simulations
* Nucleic acid structure
* Nucleic acid methods
* Nucleic acid thermodynamics
simple: Nucleic acid
# REDIRECT Nucleic acid
* Nucleic acid
* Nucleic acid sequence
Nucleic acid vaccines are still experimental, and have been applied to a number of viral, bacterial and parasitic models of disease, as well as to several tumour models.
* Nucleic acid double helix, a double-stranded molecule of DNA or RNA
* Nucleic acid simulations
* Nucleic acid structure
* Nucleic acid analogues
* Nucleic acid analogues

Nucleic and sequence
# REDIRECT Nucleic acid sequence
# REDIRECT Nucleic acid sequence
# REDIRECT Nucleic acid sequence
# REDIRECT Nucleic acid sequence

Nucleic and can
Nucleic acids can vary in size, but are generally very large molecules.

Nucleic and be
Nucleic acids may not be the only biomolecule s in the Universe capable of coding for life processes.
Nucleic acid molecules which are to be analyzed are set upon a viscous medium, the gel, where an electric field induces the nucleic acids to migrate toward the anode, due to the net negative charge of the sugar-phosphate backbone of the nucleic acid chain.
However, Watson and Crick found Fraser's model to be too ill-defined to comment specifically on its inadequacies in their publication in " Nature " ( 1953 ): Molecular Structure of Nucleic Acids.

Nucleic and electrophoresis
Nucleic acid electrophoresis is an analytical technique used to separate DNA or RNA fragments by size and reactivity.

Nucleic and .
* 1953 – Francis Crick and James D. Watson publish " Molecular Structure of Nucleic Acids: A Structure for Deoxyribose Nucleic Acid " describing the double helix structure of DNA.
Nucleic acids are the molecules that make up DNA, an extremely important substance that all cellular organisms use to store their genetic information.
Nucleic acids are found in all living cells and viruses.
Confirmation and clarity came a year later in 1953, when James D. Watson and Francis Crick correctly hypothesized, in their journal article " Molecular Structure of Nucleic Acids: A Structure for Deoxyribose Nucleic Acid ", the double helix structure of DNA, and suggested the copying mechanism by which DNA functions as hereditary material.
Nucleic acids were not formed within the reaction.
Nucleic acids are biological molecules essential for known forms of life on Earth.
Nucleic acids were discovered by Friedrich Miescher in 1869.
Nucleic acids are also generated within the laboratory, through the use of enzymes ( DNA and RNA polymerases ) and by solid-phase chemical synthesis.
Nucleic acids are linear polymers ( chains ) of nucleotides.
* Wolfram Saenger, Principles of Nucleic Acid Structure, 1984, Springer-Verlag New York Inc.
Nucleic acids are polymeric macromolecules made from nucleotide monomers.

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