Consider the product of the following SN 2 reactions. Part 1 of 2 Draw the major organic product obtained from the reaction of the following alkyl halide with hydrosulfide. Be sure to include the correct stereochemistry. of Br H Click and drag to start drawing a structure. # : ☐ ☑ Add one or more lone pairs
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- Draw the major organic product of each reaction. Indicate the stereochemistry a. Draw product 1. If the C−OC−O bond breaks, assume inversion of configuration. b. Draw product 2.Draw the products of the reaction shown below. Use wedge and dash bonds to indicate stereochemistry. Ignore inorganic byproducts. 1. Os04 2. NaHSO3, H3O Select to Draw Select to DrawFf.130.
- Predict the major substitution products of the following reaction. Br. H Na OAc HOAC • Use the wedge/hash bond tools to indicate stereochemistry where it exists. • If there is more than one major product possible, draw all of them. H.C. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate multiple products using the sign from the drop-down menu. Q24 DO-Sall ⒸY 981 BEH O. IFDraw products A and BFor the given SN2 reaction, draw the organic and inorganic products of the reaction, and identify the nucleophile, substrate, and leaving group. Include wedge-and-dash bonds and draw hydrogen on a stereocenter. Hmm.. CEN + CI Organic product Inorganic product
- Draw the structure of the major organic product of the reaction below. CH₂ + CHCI 3 KOH Use the wedge/hash bond tools to indicate stereochemistry where it exists. Show stereochemistry in a meso compound. If the reaction produces a racemic mixture, just draw one stereoisomer. O. #[ ] در ? ChemDoodleⓇpls helpDraw the product of an SN2 reaction shown below. Use wedge and dash bonds to indicate stereochemistry where appropriate. Indicate inorganic byproducts.
- Draw the least stable resonance form for the intermediate in the following electrophilic substitution reaction. CF3 CF3 Br₂/FeBr3 . You do not have to consider stereochemistry. . Include all valence lone pairs in your answer. Br • In cases where there is more than one answer, just draw one. Θ Sn F ChemDoodleN(CH2CH3)3 + HNO3 --------> a.) rewrite the reaction using bond-line structure of reagents and products of the reaction b.) supply the curved arrows explaining the mechanism of the reactionThe reaction of HBr with 1-butene produces only one product, 2- bromobutane. Why does this product form instead of 1-bromobutane? Select one: O A. Br bonds to the C-2 alkene carbon in the first step, forming the more stable carbon anion with (-) charge on C-1, followed by - bonding of H* electrophile to (-) charged C-1. OB. There is less steric hindrance if Br binds to C-2 and H* bonds to C-1. O C. H bonds to the C-1 alkene carbon in the first step, forming the more stable carbocation, with (+) charge on C-2, followed by bonding of Br nucleophile to positively charged C-2. O D. H and Br know what the "EL-NM" rule is and dutifully comply with it.