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- 1. How many chiral carbon atoms are in the following compound? CHCIBRCH2CHBRCH3 a) 0 b) 1 c) 2 d) 3 4. Which of the following compounds will not show optical activity? a) CH2CICHBRCI b) CH;CH(OH)CH3 c) CH;CH2CHĆICH3 d) CH2(OH)CH(NH2)COOH 2. How many chiral carbon atoms are in the following compound? 5. Three of the following projection formulas are the same compound. The other is the enantiomer. Which is the enantiomer? CH2(OH)CH(OH)CH(OH)CH(OH)CH2OH CH,OH c=0 a) 1 b) 2 c) 3 d) 4 ОН Н H-C=0 a) НО -H 3. The maximum number of ČHHOH stereoisomers theoretically possible for the compound below is: b) H-C =0 -CH2OH CH2(OH)CH(OH)CH(OH)CH(OH)CHO c) CH2OH a) 8 b) 6 c) 16 d) 4 H. - OH d) H-C=0How many chiral carbons does this molecule contain?1. Follow IUPAC rules to name the following molecule. a. Circle or highlight the longest chain b. Number the chain according to the rules c. List all substituents H3C- H₂C. H₂C CH3 d. Determine absolute configuration of chiral centers e. Write the full name of the molecule OCH 3 CH3 CH 3 H3C F Br CH3
- Chiral Carbons print/draw the expanded structure of 4-bromo-4-ethylhept-1-ene. Determine if your molecule contains any chiral carbons. If there are chiral carbons in your molecule, circle or highlight all of them. If your molecule does not contain any chiral carbons explain why none of the carbons are chiral.For example, alanine is a chiral amino acid that has two enantiomers: (+)-alanine and (-)-alanine. These two are optical isomers. NH2 NH2 4. One of the most important properties of chiral molecules in solution is their effect on plane- polarized light, this effect is called optical activity. -C H 2 COOH HOOC CH When an enantiomer rotates a plane-polarized light in the positive direction or clockwise, it is dextrorotary (+ or d), while for a negative direction or counterclockwise, it is levorotary (- or l) (+)-Alanine (-)-Alanine Alanine is a chiral amino acid that has two enantiomers: (+)-alanine and ()-alanine. These two are optical isomers.Pls help ASAP. Pls circle the final answer
- Organic Chemistry HW: CANNOT BE HAND DRAWN 2,6-dimethyloct-2-ene Provide a detailed typed explanation of Stereoisomers show the expanded structure of your molecule. Calculate the maximum number of possible stereoisomers of your molecule using the following formula: Maximum number of possible stereoisomers = 2n (where n= the number of chiral carbons in your molecule). This calculation does not include E- or Z- isomers for any compounds containing double bonds Type or using a computer program "draw" the possible stereoisomers of the molecule. Note that E-, Z- isomers of each stereoisomer are also possible and would not be accounted for by the formula above; draw any E- or Z- isomers.Can u explain ur answer why u choose that one ?thank uWhat is the relationship of these two structures?