Circle all the Chical carbons in this Compound and assign the absolute configuration as R ors. 0 H On the Chair template provided draw ( (15,35)-1-bromo-3-methyl cyclohexane.
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- ? Modify the given carbon skeleton to draw the major product(s). If a racemic mixture of enantiomers is expected, draw both enantiomers. Note: you can select a structure and use Copy and Paste to save drawing time. C A z + : 1) OsO4 2) NaHSO,/ H₂O H3C CH3 H с N O P S LL F CI Br I iE). 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)à ezto.mheducation.com/ext/map/index.html?_con=con&external_browser=D0&launchUr IÓN: CARBOHIDRATOS i Saved 2 attempts left Check my work Be sure to answer all parts. Complete the following Fischer projection by assigning the groups to the correct positions. ok H. Но nt 1: H 2:| СНО 1 3 3: CH, CH, 4: raw ill < Prev 11 of 20 Type here to search O:
- KMnO, NaOH Cold Modify the given carbon skeleton to draw the major product(s). If a racemic mixture of enantiomers is expected, draw both enantiomers. Note: you can select a structure and use Copy and Paste to save drawing time. OH OH Edit Drawing 52. Identify the relationship between each pair of structures. Always be as specific as possible. Your choices are: constitutional isomers, enantiomers, diastereomers (not epimers), epimers, anomers, identical, or not isomers. a) b) :O FO c) OH OH Но- -OH Но OH но- OH Но Но- -OH -O- OH OH -OH -OH -O- LOH -OH OH -OH -O- OH D-xylose D-arabinose D-xylose D-lyxose D-ribulose D-ribose f) d) OH OH OH FOH HO HO Но— OH Но- HO —ОН OH Но- OH OH Но OH OH OH НО HO OH g) h) OH -OH HOCH2 HOCH, OH H H o OH H -Он НО OH H он H OH -OH Но ÓH но H -OH OH ÓH D-ribose D-gulose i) j) CH,OH Он но OH OH но- CH,OH он OH -он но- OH но- -OH но OH H H. OH H.AVORS ACKET D SWALLOW DR INHALE WARNING: Inten- tional misuse by deliberately concen trating and Inhaling contents can be harmful or fatal. OG SPINACH 7. Convert each of the following dimensional formulas to an equivalent Fischer Projection Figure ry22 b) CH2CH3 -Br a) CH2CH3 TRUE FALSH CH2CH3 Dl. H,C=HC| Cl CCH3 Br H. d) c) F CH3 CH3 CH,CH3 CH,CH3 CH3 H H;CO BRH2C H. H2N 8. Identify the stereochemical relationship between the structural pairs shown below as (A) identical structures that are not meso; (B) identical structures that ARE meso; (C) structures that are enantiomers; or (D) structures that are diastereomers. H.
- Draw the Newman projection so that it corresponds to the molecule and conformation shown when viewed down the red bond in the direction of t Your projection should be oriented as shown by the arrow marked up. So the CH₂OH group on the front carbon should be below the H and I grou which template you use. up * HO. H Ph CH Select a template to begin. XExtra_task 2: Mark the relationships between the following structures as either "same”, “enantiomers”, or "diastereomers”. 51. 53. 55. HCI H H CI CI H 부인 팻 HCI 보 H3C H CI 52. 54. 56. Hyday H CI CI H CI H CI H H. CI CI H8.35g H₂C 1) RCO₂H 2) H₂O+ ? Modify the given carbon skeleton to draw the major product(s). If a racemic mixture of enantiomers is expected, draw both enantiomers. Note: you can select a structure and use Copy and Past to save drawing time. Save for Later Edit Drawing CH3 80 F6 8 F7 Jubmit Answer Attempts: 0 of 10 used Submit Answ DII F8 F9
- v Question Completion Status: QUESTION 20 How many stereogenic centers are present in following compound? CH3 H¿C H3C. CH3 ČH3 ČH3 04 05 Click Save and Submit to save and submit. Cick Saue All Answers to save all answers. Type here to search CO CODraw a structural formula of the RR configuration of the compound shown below. Mastered R OH R AFFIL CH3 • Use the wedge/hash bond tools to indicate stereochemistry where it exists. • Include H atoms at chiral centers only. • If a group is achiral, do not use wedged or hashed bonds on it. Sn [F ? ChemDoodle ⓇHO CH3 a. Label with asterisks (*) all of the stereocentres in the molecule shown above. b. How many stereoisomers are possible? c. Draw the structures of one pair of enantiomers for the above molecule. (Hint: You should draw two structures using wedge and dashed wedge bonds.)