For a molecule to be chiral it must have non-superimposable mirror images. Here is a drawing of the two mirror images for 2-bromobutane.
The chiral carbon atom is denoted by an asterisk. In the case of 2-bromobutane there are 4 different substituents attached to it. The molecule is chiral, you can't pick up one of the mirror images and superimpose it on the other.
Note to think about:
4 different substituents may make an atom chiral, but the molecule as a whole may still be achiral
For a molecule to be chiral it must have non-superimposable mirror images. Here is a drawing of the two mirror images for 2-bromobutane.
The chiral carbon atom is denoted by an asterisk. In the case of 2-bromobutane there are 4 different substituents attached to it. The molecule is chiral, you can't pick up one of the mirror images and superimpose it on the other.
Note to think about:
4 different substituents may make an atom chiral, but the molecule as a whole may still be achiral
For a molecule to be chiral it must have non-superimposable mirror images. Here is a drawing of the two mirror images for 2-bromobutane.
The chiral carbon atom is denoted by an asterisk. In the case of 2-bromobutane there are 4 different substituents attached to it. The molecule is chiral, you can't pick up one of the mirror images and superimpose it on the other.
Note to think about:
For example meso compounds
image source
For example, compounds with axial chirality such as chiral allenes (1,3-dimethylallene), chiral biphenyls, chiral helicenes, etc.
image source
image source
image source
For a molecule to be chiral it must have non-superimposable mirror images. Here is a drawing of the two mirror images for 2-bromobutane.
The chiral carbon atom is denoted by an asterisk. In the case of 2-bromobutane there are 4 different substituents attached to it. The molecule is chiral, you can't pick up one of the mirror images and superimpose it on the other.
Note to think about:
For example meso compounds
image source
For example, compounds with axial chirality such as chiral allenes (1,3-dimethylallene), chiral biphenyls, chiral helicenes, etc.
image source
image source
image source
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VOTE
Yes, it is chiral because there are 4 different groups on the second carbon, H, Br, methyl and ethyl.
Maybe you are looking at a planar depiction.
Yes, it is chiral because there are 4 different groups on the second carbon, H, Br, methyl and ethyl.
Maybe you are looking at a planar depiction.
More
VOTE