Examples of 'asymmetric carbon atoms' in a sentence

Meaning of "asymmetric carbon atoms"

Asymmetric carbon atoms, also known as chiral carbon atoms, are carbon atoms that are bonded to four different groups. They are important in organic chemistry as they give molecules a non-superimposable mirror image, resulting in different properties and interactions

How to use "asymmetric carbon atoms" in a sentence

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asymmetric carbon atoms
The molecule has two asymmetric carbon atoms.
Asymmetric carbon atoms can be present.
They may contain two asymmetric carbon atoms.
Asymmetric carbon atoms may be present in the compounds described.
The compound has two asymmetric carbon atoms.
Additional asymmetric carbon atoms is present in a substituent such as an alkyl group.
The compounds possess one or more asymmetric carbon atoms.
Other asymmetric carbon atoms may exist in substituents such as in an alkyl.
The compounds of the invention have asymmetric carbon atoms.
Compounds having asymmetric carbon atoms may exist in stereoisomeric forms.
The compounds of the invention optionally contain asymmetric carbon atoms.
Formoterol has two asymmetric carbon atoms in the molecule.
The compounds of this invention may include asymmetric carbon atoms.
Additional asymmetric carbon atoms may be present in a substituent such as a loweralkyl group.
Some of the compounds of the invention have asymmetric carbon atoms.

See also

Additional asymmetric carbon atoms can be present in a substituent such as an alkyl group.
Some of the compounds of the invention possess asymmetric carbon atoms.
It has two asymmetric carbon atoms in the molecule making four stereoisomers possible.
The compounds of the invention contain one or more asymmetric carbon atoms.
Some sorbitol dehydrogenase inhibitors have asymmetric carbon atoms and therefore are enantiomers or diastereomers.
The compounds of the present invention may contain asymmetric carbon atoms.
GVG contains asymmetric carbon atoms and thus is capable of existing as enantiomers.
The compounds of the invention have one or two asymmetric carbon atoms.
EDDS has two asymmetric carbon atoms.
The compounds used in the invention may contain asymmetric carbon atoms.
Preferably both asymmetric carbon atoms have the R absolute stereochemical configuration.
The compounds of this invention may have asymmetric carbon atoms in their structure.
Asymmetric carbon atoms in the compounds of the present invention are denoted as a, b, c and d.
Some of the compounds of the invention possess one or more asymmetric carbon atoms.
ACPA is a compound that has three asymmetric carbon atoms and thus eight stereoisomers.
The menthane carboxamides employed in the present invention contain asymmetric carbon atoms.
The present compounds have one or more asymmetric carbon atoms and there exist stereoisomers.
The substituted cyclopentyl amide group contains two additional asymmetric carbon atoms.
The compounds of Formula I contain asymmetric carbon atoms in the alphatic ring moieties.
Those spacer linker and releasable linkers also may include asymmetric carbon atoms.
Some compounds of Formula I have asymmetric carbon atoms and therefore are enantiomers or diastereomers.
Similar considerations apply in relation to starting materials exhibiting asymmetric carbon atoms as mentioned.
Additional asymmetric carbon atoms may be present in a substituent, such as an alkyl group.
The compounds of the invention comprise two asymmetric carbon atoms in their structure.
It also has two asymmetric carbon atoms in the molecule, making four stereoisomers possible.
The compound of the present invention has asymmetric carbon atoms in its structure.
The compound ( I ) has asymmetric carbon atoms in its molecule and thus includes optical isomers.
The compounds of the invention may have several asymmetric carbon atoms in their structure.
Further other asymmetric carbon atoms are possible in the groups R2.
The compounds prepared and used in this invention include one or more asymmetric carbon atoms.
The compounds according to Formula I have asymmetric carbon atoms and can exist as optical isomers.
The formula I compounds of the present invention possess four asymmetric carbon atoms.
In the above formula ( I ) the two asymmetric carbon atoms are marked by asterisks.
The compounds of the Formula II can contain one or several asymmetric carbon atoms.
The compounds of formula ( I ) comprise asymmetric carbon atoms and have stereoisomeric forms.

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