Molecules HOM HOM HOHHOH HỌ HỌ HỌ HỌ H3C CH3 CI Br- Br. H CH3 CH3 HO CH3 HO CH3 CH3 CH3 H₂C Br H3C Br CH3 CH3 CH3 OH CH3 CH3 HO CH3 CH3 Туре Are they constitutional isomers, conformational isomers, enantiomers, diastereomers, or identical? Separations Are they separable or inseparable by SiO₂ chromatography?
Complete the following table. In the second column, assign each set of molecules as constitutional isomers, conformational isomers, enantiomers, diastereomers, or identical. For the third column, based on that analysis, indicate for each set of molecules if they are separable or inseparable by SiO2 chromatography.
![Molecules
HỌ H HỌ H
MAON
H₂C
CI.
Br.
H CH3
CH3
BỊ HỌ CHÍCH,
Br.
CI
CH3
HO CH3
H
H3C
HỌ H HỌ H
CH3 Br.
Br.
CI, CH3
H3C CH3
H
CI
CH3
OH
H
CH3
HO CH3
CH3
CH3
Туре
Are they constitutional
isomers, conformational
isomers, enantiomers,
diastereomers, or identical?
Separations
Are they
separable or
inseparable by
SiO₂
chromatography?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff26a788a-d14e-42e7-a1ad-e7a1405ef83f%2Ff57b929f-5a1b-4e1e-baf0-9782f12e7e36%2Fh35bjgq_processed.png&w=3840&q=75)
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Constitutional or structural isomers : Molecules with same molecular formula but different connectivity between atoms.
Conformational isomers : Molecules that have the same molecular formula but a completely different arrangement of the atoms in space.
Diastereoisomers : Molecules with same molecular formula and bonding connectivity but are not mirror images of each other.
Enantiomers : Molecules with same molecular formula and bonding connectivity but are mirror images of each other.
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