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- Draw structural formulas for organic products A and B in the window below. ● ● ● -CH₂CI Li pentane Cul ChemDoodleⓇ Draw only products having the organic portion of the original alkyl halide. Draw carbon-lithium bonds using the single bond tool. If a structure has a copper-lithium bond, do not draw the lithium. Separate products from different steps using the → sign from the drop-down menu. B Sn [FDraw structural formulas for organic products A and B in the window below. H₂O Mg ether ● ● ● H3CC=CH₂ Br *8 Draw only products having the organic portion of the original alkyl halide. Draw carbon-lithium bonds using the single bond tool. If a structure has a copper-lithium bond, do not draw the lithium. Separate products from different steps using the → sign from the drop-down menu. ? A Ⓡ ChemDoodle B Sn [FPlease don't provide handwriting solution
- Draw the organic product you would expect to isolate from the nucleophilic substitution reaction between the molecules shown. Note: You do not need to draw any of the side products of the reaction, only the substitution product. H × 5 Br + HO + 1 Click and drag to start drawing a structure.4. A CHEM 245 student wants to synthesize some ethylene glycol to use as antifreeze in his radiator this winter. He proposes the following reaction to his instructor, who quickly explains that this reaction won't work as proposed due to the student's choice of reagent. 1) NaH 2) H20 OH Но a) Why can't sodium hydride (NaH) be used as the nucleophile in the reaction above? b) Propose an alternate reagent that COULD be used with the ethylene oxide to successfully give the desired ethylene glycol product.Draw the organic product you would expect to isolate from the nucleophilic substitution reaction between the molecules shown. Note: You do not need to draw any of the side products of the reaction, only the substitution product. □ + HO 1 + X S Click and drag to start drawing a structure.
- Draw a Lewis structure of sodium ethyl mercaptide (NaSC2H5), showing all relevant lone pairs and formal charges. Based on the structure you drew, do you expect that it would act as a good nucleophile? Do you expect it to act as a strong base?Do not give handwriting solution.Consider the following SN2 reaction. Identify the electrophile and/or nucleophile combination that initially attracted one another and caused the reaction to start. Br CNO 2 Select one: O 1 = electrophile; 3 = nucleophile O 1 = electrophile; 2 = electrophile O 1 = nucleophile; 2 = nucleophile O 1 = nucleophile; 2 = electrophile. 1 = electrophile; 2 = nucleophile. CN 3
- Draw the organic product you would expect to isolate from the nucleophilic substitution reaction between the molecules shown. Note: You do not need to draw any of the side products of the reaction, only the substitution product. D xx + H₂O + X Click and drag to start drawing a structure.Substitution Reactions Predicting the product of a nucleophilic substitution reaction Draw the organic product you would expect to isolate from the nucleophilic substitution reaction between the molecules shown. Note: You do not need to draw any of the side products of the reaction, only the substitution product. HO + + Br xx X S C Click and drag to start drawing a structure.The acid-catalyzed hydrolysis of an ester converts an ester into a carboxylic acid. Although there are two O atoms that can be protonated, the first step in the mechanism is believed to be protonation of the oxygen in the C=0 group. Based on charge stability, why is it favorable to protonate that oxygen? Hint: Draw out the products of each protonation. + Hо HO, НО Carboxylic acid Ester Alcohol