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Isomers

122 Sentences | 7 Meanings

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The two isomers of butane are n-butane and isobutane.
The two isomers of a molecule may have different boiling points, making them easy to separate.
The difference between the two isomers is their three-dimensional shape.
The two isomers of glucose are alpha-glucose and beta-glucose.
The two isomers of dichlorobenzene are ortho-dichlorobenzene and para-dichlorobenzene.
The two isomers of limonene are d-limonene and l-limonene.
Isomers can have different biological activities even though they have the same molecular formula.
These two molecules are isomers of each other because they have the same molecular formula.
Isomers of a compound can have different physical properties, such as boiling point and melting point.
The presence of isomers can complicate the synthesis and purification of organic compounds.
Isomers are important in the study of materials science and nanotechnology.
Isomers of amino acids can have different properties and play different roles in biological systems.
Isomers can have different melting points and boiling points.
Glucose and fructose are isomers of each other.
Isomers are compounds that have the same molecular formula but different structures.
Isomers can have different boiling points and melting points.
There are two isomers of propene: 1-propene and 2-propene.
Ethanol and dimethyl ether are isomers of each other.
Chemists use a variety of techniques to distinguish between isomers.
The existence of isomers makes the synthesis of some compounds more challenging.
Isomers can have different physical and chemical properties due to differences in their molecular structure.
Isomers of amino acids can have different biological functions.
The presence of isomers in a mixture can complicate chemical reactions and analysis.
The concept of isomers is important in understanding the structure and function of complex organic molecules such as proteins and nucleic acids.
Isomers of amino acids have different properties and can affect the function of proteins.
Isomers have different physical and chemical properties despite having the same chemical formula.
The two compounds are isomers of each other, which means they have the same molecular formula but a different arrangement of atoms.
The two isomers of tartaric acid rotate plane-polarized light in opposite directions.
Isomers are important in drug design because they can have different biological activities.
The discovery of new isomers can lead to the development of new drugs or materials.
The process of identifying isomers in a sample involves various analytical techniques such as chromatography and spectroscopy.
Scientists use various methods to distinguish between isomers.
The two isomers have different physical properties despite having the same chemical formula.
The two isomers of alanine are L-alanine and D-alanine.
The two isomers of this molecule are mirror images of each other and are called enantiomers.
Isomers can exhibit different physical and chemical properties even though they have the same chemical formula.
Enantiomers are isomers that are mirror images of each other.
Isomers can have different reactivity and biological activity.
There are two isomers of butane: n-butane and isobutane.
There are three isomers of pentane: n-pentane, isopentane, and neopentane.
Isomers can have different names depending on their structures.
The two compounds have the same molecular formula but different properties because they are isomers.
The study of isomers has played a crucial role in the field of organic chemistry.
Isomers of glucose are important in biochemistry and are involved in many metabolic pathways.
Isomers are important in drug design, as slight differences in molecular structure can lead to different therapeutic effects.
The two isomers of dichlorobenzene have different melting points.
Identifying isomers is crucial in drug development to ensure the desired effect and minimize side effects.
These two compounds are isomers, which means they have the same chemical formula but a different structure.
The two isomers of glucose have different arrangements of atoms.
The two isomers of 1,2-dichloroethene have different dipole moments.
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