D-and L- designations are used to distinguish between the two possible enantiomers of the monosaccharide, galactose. From the Fischer projection, determine the designation of this monosaccharide.

Chemistry for Today: General, Organic, and Biochemistry
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Chapter21: Nucleic Acids And Protein Synthesis
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Problem 21.58E
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D- and L- designations are used to distinguish between the two possible
enantiomers of the monosaccharide, galactose.
From the Fischer projection, determine the designation of this
monosaccharide.
Glucose is the most abundant monosaccharide. In energy metabolism it
is the most important source of energy for most organisms.
a) D- and L- designations are used to distinguish between the two possible
isomers of the monosaccharide. What is the relationship between D-glucose
and L-glucose?
b) Dotermine the designation of this enantiomer of glucose.
c) How many chiral centers are present in the straight chain fom of glucose?
d) How many stereoisomers are possible for the straight chain form of glucose?
e) How many chiral centers are present in the cyclic form of glucose?
) Including the different configurations of the anomeric carbon, how many
cyclic isomers of D-glucose can be formed?
Transcribed Image Text:D- and L- designations are used to distinguish between the two possible enantiomers of the monosaccharide, galactose. From the Fischer projection, determine the designation of this monosaccharide. Glucose is the most abundant monosaccharide. In energy metabolism it is the most important source of energy for most organisms. a) D- and L- designations are used to distinguish between the two possible isomers of the monosaccharide. What is the relationship between D-glucose and L-glucose? b) Dotermine the designation of this enantiomer of glucose. c) How many chiral centers are present in the straight chain fom of glucose? d) How many stereoisomers are possible for the straight chain form of glucose? e) How many chiral centers are present in the cyclic form of glucose? ) Including the different configurations of the anomeric carbon, how many cyclic isomers of D-glucose can be formed?
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