Determine the mechanism and product for the given reaction by adding atoms, bonds, nonbonding electron pairs, and curved arrows. Acid and water are added in the second step. H CH₂CH₂MgBr product
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- Draw a mechanism for this reaction. H₂C- CH3 -0- Interactive 3D display mode -CH3 H₂C CH₁₂ H₂C-O i 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.A H2N. Figure 9: Multi-step reaction sequenceConsider this reaction: Br CH3OH Br-Br H3CO The mechanism proceeds through a first cationic intermediate, intermediate 1. Nucleophilic attack leads to intermediate 2, which goes on to form the final product. In cases that involve a negatively charged nucleophile, the attack of the nucleophile leads directly to the product. H. Br + CH;OH Br Intermediate 2 (product) Intermediate 1 In a similar fashion, draw intermediate 1 and intermediate 2 (final product) for the following reaction. OH + Br2 + HBr Br racemic mixture
- Add curved arrows to show the forming and breaking of bonds in the reaction below. C с Ċ Add/Remove stepConsider this reaction: Br CH;OH Br-Br H3CO The mechanism proceeds through a first cationic intermediate, intermediate 1. Nucleophilic attack leads to intermediate 2, which goes on to form the final product. In cases that involve a negatively charged nucleophile, the attack of the nucleophile leads directly to the product. Br + CH3OH Br Intermediate 1 Intermediate 2 (product) In a similar fashion, draw intermediate 1 and intermediate 2 (final product) for the following reaction. OH + Br2 + HBr Br racemic mixtureHow might nucleophilic catalysis work?Draw out a possible mechanism.
- Consider the given reaction in which NC−NC− is the nucleophile and CH3CNCH3CN is the solvent. The reactant molecule has a structure with solid and dashed wedge bonds. A solid wedge () is used to show the bond that is above the plane of the paper, and a dashed wedge () is used to show the bond that is behind the plane of the paper. Draw the product of the following reaction:Your answer is incorrect. Predict the relative rates of these reactions. That is, select 1 next to the reaction with the fastest rate, 2 next to the reaction with the next fastest rate, and so on. Note for advanced students: you may assume these reactions all take place in a polar aprotic solvent, like DMSO. Incorrect Your answer is incorrect. Predict the relative rates of these reactions. That is, select I next to the reaction with the fastest rate, 2 next to the reaction with the next fastest rate, and so on. Note for advanced students: you may assume these reactions all take place in a polar aprotic solvent, like DMSO. Reaction Relative Rate G + H₂O - OH₂ 2 Br + H₂S - + Br 3 + H₂S SHI + ci I (fastest) Br + H₂O OM₂ + Br 4 (slowest)3. Predict the products of the following acid-base reaction. Draw the mechanism of the forward reaction. Predict which direction is favored in the reaction. yu OH qo OH
- Complete this mechanism for an acid-base reaction by adding curved arrows. H H ön %+/ ●● N Add/Remove step HIN Η X Ś HOPlease explain why this reaction will NOT WORK. NO2 1. HNO3, H2SO4, 2. EtCI, AICI3Part A Draw a reasonable mechanism for this reaction. Interactive 3D display mode Ph Ph -P=CH, CH2 Ph 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. D 5 C Q Q Q H x" iim H CI Br P F P Pearson