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- E). Provide the absolute configuration of each chiral center (R, S or none). i) Lowest CIP priority group back ii) Lowest CIP priority group front F SHE Dod Et NH₂E). Provide the absolute configuration of each chiral center (R, S or none). i) Lowest CIP priority group back OMe Et MeE). Provide the absolute configuration of each chiral center (R, S or none). i) Lowest CIP priority group back (4) H (3) cew (3) (s) (1) CI н (ч) (3) (8) (3) H(4) a (¹) F (2) (s) (NH₂ (4) H (5) (9) (25) C (R) (4) Koy (2) (R)
- CHALLENGE: Br Assign absolute 11100 configuration NH₂ to all chiral centers.(Please correct answer and don't use hend raiting) Can you please list all the chiral centres within each compound. :) OA. OC. OE. B. OD.F) Circle the letter corresponding to the relationship of each pair of structures: Identical (I), Conformers (C), Enantiomers (E) (enantiomers can have different conformations). FIRST... determine the absolute configuration of chiral centers. H. ІН' I H | H с H Me E Me
- Locate chiral centers and identify the configuration. I need help understanding which direction the carbon bonded to the dashed CH2 and wedged CH3 is. (Please don't use hend raiting)F) Circle the letter corresponding to the relationship of each pair of structures: Identical (1), Conformers (C), Enantiomers (E) (enantiomers can have different conformations). FIRST... determine the absolute configuration of chiral centers. I OH с OH EDetermine the absolute configuration of the chiral C in this molecule. Choices: A. R/S not applicableB. SC. R
- Assign the absolute configuration to each chiral centers (signed with *).3. Give the relationship between the following molecules. Your options are enantiomers, diastereomers, or the same molecule. Determine R/S configurations of any chiral a. b. C. centers. H₂C-Si- H H CH3 COOH H -OH H-OH H -OH CH₂OH H₂ Br CH3 CO₂H Br H CH₂OH and HO H- HO H CH₂OH H -ОН H COOH and H₂C H H- Br Si CH3 CH3 CO₂H -Br -H CH2OHDo you expect each boxed molecule to be chiral or not?