Add the necessary reagents and reaction conditions above and below the arrow in this organic reaction. (You don't need to specify a solvent.) If this transformation can't be done in a single step, check the box under the drawing area instead. T 5 છે OH ... Can't be done in one step.
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- Draw the first step in the mechanism for the acid-catalyzed hydrochlorination of the alkene in the drawing area below. . Be sure you draw only the first step. It's OK if the product of this step is a short-lived intermediate. • You can add any necessary small molecule reactants on the reactant side of the step. • You can leave out any small molecule byproducts on the product side of the step. . Be sure to draw in any lone pairs that are moved by curved arrows. Click and drag to start drawing a structure.None. One of these reactions occurs rapidly while the other is so slow that substitution products are not observed. Determine which reaction is which and explain the difference in rate using structural drawing and a few words. Br + 'Br +
- Add the necessary reaction conditions above or below the arrow in this organic reaction. Also if a major product is missing from the right-hand side, draw it in.. 0 :0 + I OHYou are trying to determine whether the following organic reaction can be done in a single synthesis step. If so, add any missing reagents or conditions in the drawing area below. If it isn't possible to do this reaction in a single synthesis step, check the box below the drawing area instead. Note for advanced students: if you have a choice of reagents to add, you should choose the least reactive and most economical reagents possible. Cl It isn't possible to do this reaction in a single synthesis step. + T OHConsider this organic reaction: ... OH CI Draw the major products of the reaction in the drawing area below. If there won't be any major products, because this reaction won't happen at a significant rate, check the box under the drawing area instead. ☐ No Reaction. Click and drag to start drawing a structure. : а
- H₂C H H₁C Br NBS CH, CH₂ CC, hv **You may assume that Br-Br is formed by a side reaction that occurs (which we discussed in class). This is useful for one of the steps of the mechanism.Consider the reaction below. a) Predict the reaction mechanism that is likely to operate between these reactants. b) Draw the structure of the major organic product. c) Complete the mechanism for this reaction by adding curved arrows and products. Add steps as necessary, and be sure to include lone pairs and charges where relevant.Add the missing nucleophile to the substitution reaction in the drawing area below. Note for advanced students; You can assume the correct solvent conditions are used in this reaction. III... + X 5 IIIII ... OH
- For each reaction below, decide if the first stable organic product that forms in solution will create a new CC bond, and check the appropriate box. Next, for each reaction to which you answered "Yes" to in the table, draw this product in the drawing area below. Note for advanced students: for this problem, don't worry if you think this product will continue to react under the current conditions - just focus on the first stable product you expect to form in solution. ? Will the first MgBr product that forms in this reaction create a new CC bond? olo ? OH جمله O Yes Ⓒ No MgCl ? Will the first product that forms in this reaction create a new CC bond? Click and drag to start drawing a structure. Yes No X ☐ : ☐ टे PHDraw the products of the reaction shown. Electron flow is indicated with curved arrows.Edit the reaction by drawing all steps in the appropriate boxes and connecting them with reaction arrows. Add charges where needed. Electron flow arrows should start on an atom or a bond and should end on an atom, bond, or location where a new bond should be created.

