11. Look at the two structures shown below to answer questions a-g H a. Build 2 different molecules with the substituents listed below using your modeling kit. You should use a carbon as the central atom. Insert the pictures here. 小小 Br CI Br b. Are these two molecules the same? c. Can these 2 molecules be laid over each other in a way that allows all of the atoms in the molecule to line up with each other? d. Stereoisomers are 2 molecules with chiral carbons that have the same molecular formula but differ in the three-dimensional arrangement of the atoms in space. Are these two structures stereoisomers?

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Chapter1: Chemical Foundations
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11. Look at the two structures shown below to answer questions a-g
a. Build 2 different molecules with the substituents listed below using your
modeling kit. You should use a carbon as the central atom. Insert the pictures here.
CI
F
小小
H
Br
CI
Br
b. Are these two molecules the same?
c. Can these 2 molecules be laid over each other in a way that allows all of the
atoms in the molecule to line up with each other?
d. Stereoisomers are 2 molecules with chiral carbons that have the same molecular
formula but differ in the three-dimensional arrangement of the atoms in space. Are
these two structures stereoisomers?
e. Enantiomers are stereoisomers that are mirror images of each other and cannot be
superimposed on each other no matter how they are rotated. Are these 2 structures
enantiomers?
f. Diastereomers are stereoisomers that are not mirror images of each other and
cannot be superimposed on each other no matter how they are rotated. Are these 2
structures diastereomers?
g. Based on the definitions given in E and F, is it possible for a pair of molecules to
be both enantiomers and diastereomers?
Transcribed Image Text:11. Look at the two structures shown below to answer questions a-g a. Build 2 different molecules with the substituents listed below using your modeling kit. You should use a carbon as the central atom. Insert the pictures here. CI F 小小 H Br CI Br b. Are these two molecules the same? c. Can these 2 molecules be laid over each other in a way that allows all of the atoms in the molecule to line up with each other? d. Stereoisomers are 2 molecules with chiral carbons that have the same molecular formula but differ in the three-dimensional arrangement of the atoms in space. Are these two structures stereoisomers? e. Enantiomers are stereoisomers that are mirror images of each other and cannot be superimposed on each other no matter how they are rotated. Are these 2 structures enantiomers? f. Diastereomers are stereoisomers that are not mirror images of each other and cannot be superimposed on each other no matter how they are rotated. Are these 2 structures diastereomers? g. Based on the definitions given in E and F, is it possible for a pair of molecules to be both enantiomers and diastereomers?
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