It is the amino functional group
amine
This is the group amine.
The functional group of amines is the amino group (-NH2). It consists of a nitrogen atom bonded to one or more alkyl groups or hydrogen atoms. Amines are commonly found in biological molecules, pharmaceuticals, and dyes.
The functional group in lysine is an amino group (-NH2) which is part of its side chain.
NH2 group is an amino group. It is a functional group that consists of a nitrogen atom bonded to two hydrogen atoms.
The functional group of Glutamic acid is a carboxylic acid group (-COOH) and an amino group (-NH2), which are key components of amino acids.
The functional group is the NH2. It is an amino functional group.
This is the group amine.
The functional group of amines is the amino group (-NH2). It consists of a nitrogen atom bonded to one or more alkyl groups or hydrogen atoms. Amines are commonly found in biological molecules, pharmaceuticals, and dyes.
The functional group in lysine is an amino group (-NH2) which is part of its side chain.
The corresponding functional group is amine, and is shown is by -NH2.
urea has a carbonyl functional group present in it i.e C=O
NH2 group is an amino group. It is a functional group that consists of a nitrogen atom bonded to two hydrogen atoms.
The NH2 functional group is known as the amino group. It consists of a nitrogen atom bonded to two hydrogen atoms and is commonly found in organic compounds such as amino acids, proteins, and nucleic acids. It plays a crucial role in the structure and function of biological molecules.
1)There are 2 alcohol groups (-OH) 2) An Aromatic group (cyclo) 3) An amine group (CH2-NH2).
The functional group of Glutamic acid is a carboxylic acid group (-COOH) and an amino group (-NH2), which are key components of amino acids.
The NH2 functional group of this organic compound, is called an Amine. this is a basic sidebranch, which when in solution will give an overall basic (alkalinic as some know it) presence. This could be identified, on this particular compound (Ethanamine/ethylamine/aminoethane) by addition of an acid, which will trigger an acid base reaction by which the NH2 group can be identified.
Amide bonds involve a carbonyl group (C=O) and an amino group (NH2) functional group.