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- Draw a curved arrow mechanism for the reaction. You can assume that all reactants and products are shown. Add/Remove step CN :C=N:Draw the reactant of the following reaction. ? OH heatAdd curved arrows to the reactants in this reaction. A double-barbed curved arrow is used to represent the movement of a pair of electrons. Draw curved arrows. Select Draw Rings More Erase | : 0 H-O: H OH
- Classify each reaction as either a proton transfer reaction, or a reaction of a nucleophile with an electrophile. Use curved arrows to show how the electron pairs move.Complete this mechanism for an acid-base reaction by adding curved arrows. H H ön %+/ ●● N Add/Remove step HIN Η X Ś HOAdd curved arrows to show the forming and breaking of bonds in the reaction below. C с Ċ Add/Remove step
- Draw the mechanism for the reaction of an alkyl halide with sodium azide followed by reduction. Complete the mechanism of the initial step of the reaction, then identify the key intermediate and the product. Step 1: Draw curved arrows. o z + Na + || : z: I Step 2: Complete the intermediate. Na +It is not necessary for a nucleophile to have an unshared electron pair. O True O FalseFor the following reaction: 2) Draw both the organic and inorganic intermediate species. Include nonbonding electrons and charges, where applicable. 1) Add curved arrows for the first step. СHз Н H Нзс н н :ci: Нас- -CHз H н
- Draw the reaction mechanism for the reaction between an aldehyde and water under acidic conditions. (H') H,0Where do the arrows for this are suppose to go? (Intermediate) Reactant Mechanism Explorer: Sketch and Submission (Intermediate) Reactant Tip: Only add curved arrows in this sketcher Mechanism Explorer: Sketch and Submission (Intermediate) Reactant CH H H₂O Tip: Only add curved arrows in this sketcher leDraw the product of nucleophilic substitution with attached neutral nucleophile. When the initial substitution product can lose a proton to form a neutral product, draw the product after proton transfer.