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- 4. (a) Draw all possible isomers of C4H3CI2. (b) Indicate which pairs of compounds are enantiomers of one another. (c) Indicate which pairs of compounds are diastereomers of one another. (d) Indicate which compounds would have optical rotations of 0°. (e) Assign R and S configurations to all chirality centers of the compounds in part (a).(a) assign R or S configuration to each chiral center, (b) Which compound are enantiomers? (c) Which compounds are diastereomers?2. Draw all possible stereoisomers for the following molecule. Once drawn, assign the configuration at each chiral center as R or S. Give the relationship between each stereoisomer that was drawn as enantiomers, diastereomers, or meso compound. You may build a table to give the relationship between each stereoisomer. OH ОН
- Indicate which atoms in the following compound are chiral centers. H3C. HO a H3C CH2 (Provide a list of letters without spacing. Alphabetize your list (abcd).) Chiral centers: How many stereoisomers do you expect for this compound?5. Consider the following pairs of structures. Identify the relationship between them (enantiomers, diastereomers, or identical compounds. HOH2C H OH H OH HO H Br H3C Н H H₂CH₂C CI Br H CHO CH3 I CH3 OH OHC Н H OH H OH Bell!! H3C, HO H Н.С H CH₂CH3 CH3 CI HỌ,H CH₂OH BrUse models (or drawings) to determine which of the following compounds are stable chiral molecules at room temperature. For those that are chiral, draw three-dimensional ( perspective) diagrams of the enantiomeric forms. H OMe OMe Bu Bu (HO2C)HC=C=CH(CO2H) HO₂C NH₂ CO₂H NH₂ (HO2C)HC=C=C=CH(CO2H)
- For molecule CH3CH2CH(OH)CH3 I. Identify chiral centre II. Draw a pair of enantiomers using 3-dimensional structure1. Draw all possible stereoisomers for the following molecule. Once drawn, assign the configuration at each chiral center as R or S. Give the relationship between each stereoisomer that was drawn as enantiomers, diastereomers, or meso compound. You may build a table to give the relationship between each stereoisomer. ОН NH2Draw a 3-D structure of a molecule with a molecular formula of C4H9Cl containing one chiral center and draw its mirror image.
- Draw the optical isomers of CH3-CHOH-CHOH-CH3. Indicate the absolute configuration of each chiralcenter. From the drawn isomers, determine which are enantiomers and which are diastereomers, and identify if there are meso compounds. Please draw first the optical isomers before detemining.Two structures are shown. Identify the asymmetric carbons in each structure, classify as chiral or achiral, and identify the number of stereocenter(s). H. „CH3 H3C CH3 H H. CH3 compound A compound B Which image shows the asymmetric carbon(s) in compound A highlighted in red? CI H H3C CH3 H,C CH3 O Neither. There are no asymmetric carbons in compound A. H. H3C -CH3 C H3C CH3 Compound A is . There are stereocenters in compound A. Which image shows the asymmetric carbon(s) in compound B highlighted in reď? .CH3 H H. CH3 H3C.C H O Neither. There are no asymmetric carbons in compound B. Compound B is There are stercocenters in compound B. *Please explain all the questionsFor molecule CH3CH2CH(OH)CH3a. Identify chiral centreb. Draw a pair of enantiomers using 3-dimensional structure