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6. (12 points total) Mechanism: Provide a detailed mechanism for the following reaction. Use curved arrows...
3. provide a detailed stepwise mechanism for the following transformation. use curved arrows to show the movement of electrons. (level- mechanism master) 3. Provide a detailed, stepwise mechanism for the following transformation. Use curved arrows to show the movement of electrons. (LEVEL-Mechanism Master) non lo Me 10 nsloo le O mCPBA Me Y ОН OH
3. Mechanisms: Provide a detailed, stepwise mechanism for the following transformations. Use curved arrows to show the movement of electrons. Me Me Me TSOH -Me Me 120 °C OH
what's the mechanism? 3. Provide a detailed, stepwise mechanism for the following transformation. Use curved arrows to show the movement of electrons. (LEVEL-Mechanism Master) OH
6. Provide a detailed, stepwise mechanism for the following transformation. Use curved arrows to show the movement of electrons. ...OH ..OH 1. Oz then SMez 2. NaBH4 . MeOH 3. TsOH Meo
3. Mechanisms: Provide a detailed, stepwise mechanism for the following transformations. Use curved arrows to show the movement of electrons. do 10.♡.
1. Advanced Electron Pushing!! Provide a detailed, stepwise mechanism for the following transformations. Use curved arrows to show the movement of electrons. Ph NaOMe lelic:01 1 OMe
Provide the detailed stepwise mechanism using curved arrows to show electron movement that accounts for the formation of the products shown . НО* ОН COOH
(3) [12 points] Present a detailed mechanism for this reaction. Use curved arrows to show the motion of electrons. You may use the symbol “+ H" and "taut" above reaction arrows to represent a protonation-deprotonation sequence and a tautomerization, respectively. هر) + H20 + H H
(a) Draw a stepwise, detailed mechanism for the following reaction. Used curved arrows to show the movement of electrons. Br CN NaCN DMF NaBr (b) Assign the configuration (Ror S) of the chiral centre in the substrate and product (c) List the bonds broken and formed in this reaction (d) Assume that this is an endothermic reaction. Draw an energy diagram for this reaction. Label the axes, reactants, products, E, and AH. Draw the structure for both transition states.
10. Provide a detailed mechanism for the following transformation. Be sure to use curved arrows, correct reaction arrows, Show all relevant lone pairs and bonds, formal charges and all intermediates. Think about what your components are and what would happen first. (5 points) HBr Me on me mé Br + Ho Me