3.39 The following are representations of two forms of glucose. The six-membered ring is known to exist in a chair conformation in each form. Draw clear representations of the most stable conformation of each. Are they two different conformations of the same molecule, or are they stereoisomers that cannot be interconverted by rotation about single bonds? Which substituents (if any) occupy axial sites? HOCH₂ HOCH₂ HO HO -OH OH HO- HO OH OH
3.39 The following are representations of two forms of glucose. The six-membered ring is known to exist in a chair conformation in each form. Draw clear representations of the most stable conformation of each. Are they two different conformations of the same molecule, or are they stereoisomers that cannot be interconverted by rotation about single bonds? Which substituents (if any) occupy axial sites? HOCH₂ HOCH₂ HO HO -OH OH HO- HO OH OH
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Chapter1: Chemical Foundations
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
Transcribed Image Text:3.39 The following are representations of two forms of glucose. The six-membered ring is
known to exist in a chair conformation in cach form. Draw clear representations of the
most stable conformation of each. Are they two different conformations of the same
molecule, or are they stereoisomers that cannot be interconverted by rotation about
single bonds? Which substituents (if any) occupy axial sites?
HOCH₂
HOCH₂
HO
HO
OH
OH
HO-
HO
OH
OH
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