
Are nucleic acids soluble in water?
Answer
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Hint: We have to know that nucleic acids are biopolymers, or huge biomolecules, fundamental for all known types of life. They are made out of nucleotides, which are the monomers made of three parts: a 5-carbon sugar, a phosphate bunch and a nitrogenous base.
Complete answer:
We need to know that the nucleic acids are biopolymers, or huge biomolecules, vital for all known types of life. They are made out of nucleotides, which are the monomers made of three parts: a 5-carbon sugar, a phosphate bunch and a nitrogenous base. The two principal classes of nucleic acids are deoxyribonucleic acid (DNA) and ribonucleic acid (RNA). In the event that the sugar is ribose, the polymer is RNA; if the sugar is the ribose subordinate deoxyribose, the polymer is DNA.
Nucleic acids are natural synthetic compounds that fill in as the essential data conveying particles in cells and contributing to the hereditary material. Nucleic acids are found in plenitude in every single living thing, where they make, encode, and afterward store data of each living cell of each living thing on Earth. Thus, they have the capacity to send and communicate that data inside and outside the cell core to the inside activities of the cell and eventually to the up and coming age of each living being. The encoded data is contained and passed on by means of the nucleic acid arrangement, which gives the 'stepping stool step' requesting of nucleotides inside the atoms of RNA and DNA. They assume a particularly significant part in coordinating protein amalgamation.
We have to know that nucleic acids are soluble in water. They are soluble in water because of their polar nature. The individual nucleotides are exceptionally water solvent contrasted with nucleosides that have lesser water dissolvability. As the primary chain is ionized with charges it makes them water solvent.
Note:
We have to know that molecules of DNA are double stranded and RNA atoms are single-stranded. There are various exemptions, notwithstanding—some viruses contain genomes made of double stranded RNA and other viruses have single- stranded DNA genomes, and, in certain conditions, nucleic acid structures with three or four strands can produce.
Complete answer:
We need to know that the nucleic acids are biopolymers, or huge biomolecules, vital for all known types of life. They are made out of nucleotides, which are the monomers made of three parts: a 5-carbon sugar, a phosphate bunch and a nitrogenous base. The two principal classes of nucleic acids are deoxyribonucleic acid (DNA) and ribonucleic acid (RNA). In the event that the sugar is ribose, the polymer is RNA; if the sugar is the ribose subordinate deoxyribose, the polymer is DNA.
Nucleic acids are natural synthetic compounds that fill in as the essential data conveying particles in cells and contributing to the hereditary material. Nucleic acids are found in plenitude in every single living thing, where they make, encode, and afterward store data of each living cell of each living thing on Earth. Thus, they have the capacity to send and communicate that data inside and outside the cell core to the inside activities of the cell and eventually to the up and coming age of each living being. The encoded data is contained and passed on by means of the nucleic acid arrangement, which gives the 'stepping stool step' requesting of nucleotides inside the atoms of RNA and DNA. They assume a particularly significant part in coordinating protein amalgamation.
We have to know that nucleic acids are soluble in water. They are soluble in water because of their polar nature. The individual nucleotides are exceptionally water solvent contrasted with nucleosides that have lesser water dissolvability. As the primary chain is ionized with charges it makes them water solvent.
Note:
We have to know that molecules of DNA are double stranded and RNA atoms are single-stranded. There are various exemptions, notwithstanding—some viruses contain genomes made of double stranded RNA and other viruses have single- stranded DNA genomes, and, in certain conditions, nucleic acid structures with three or four strands can produce.
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