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Q.Represent α\alpha-D-(+)-glucopyranose and β\beta-D-(+)-glucopyranose by Haworth structure.

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2026Subjective· 2mImportance★★★★★
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The Haworth structures are six-membered pyranose rings differing only at C-1 (anomeric carbon): α\alpha has the C-1 −OH-OH below the ring, β\beta has it above the ring.

Concept. In aqueous solution, open-chain D-glucose cyclises: the C-5 −OH-OH adds across the C-1 aldehyde group to form a six-membered (pyranose) ring. This creates a new stereocentre at C-1, the anomeric carbon, giving two anomers — α\alpha and β\beta.

Haworth representation. Draw a flat hexagonal ring with the ring oxygen at the top-right between C-1 and C-5. The convention:

  • Groups on the right in the Fischer projection are drawn below the ring; groups on the left are drawn above the ring.
  • The −CH2OH-CH_2OH group (C-6) is drawn above the ring plane (for D-sugars).

α\alpha-D-(+)-glucopyranose: at C-1 the −OH-OH is below the ring plane (trans to the CH2OHCH_2OH, i.e. on the opposite side of the reference −CH2OH-CH_2OH).

Ring positions (clockwise from C-1):

  • C-1: −OH-OH down, −H-H up
  • C-2: −OH-OH down, −H-H up
  • C-3: −OH-OH up, −H-H down
  • C-4: −OH-OH down, −H-H up
  • C-5: −CH2OH-CH_2OH up, −H-H down; ring O joins C-5 to C-1. …

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