The following product is classified as a(an) only need to write ONE option. رم product (Michael, Aldol, or Claisen). The bond to first disconnect with retrosynthesis is (i.e., C9-C10). If you can disconnect more than one bond, you
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- The following product is classified as a (an) you only need to write ONE option. product (Michael, Aldol, or Claisen). The bond to first disconnect with retrosynthesis is (i.e., C9-C10). If you can disconnect more than one bond,The following product is classified as a(an) disconnect with retrosynthesis is only need to write ONE option. th 3 product (Michael, Aldol, or Claisen). The bond to first (i.e., C9-C10). If you can disconnect more than one bond, youPlease complete the following self-Claisen and self-aldol reactions by drawing structures for the missing reactants or products as needed. Thank you!
- This reaction is an example of conjugate addition of a nucleophile to an a,ẞ-unsaturated carbonyl. O CH3CH2CH2CH=CHCSCOA H₂O OH CH3CH2CH2CHCH2CSCOA Draw the two resonance structures of the enolate anion intermediate for this reaction. • Draw an R1 group in place of COA. The R group tool is located in the charges and lone pairs drop-down menu. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate resonance structures using the symbol from the drop-down menu. ->> 90-87 O + ? ChemDoodle >This reaction is an example of conjugate addition of a nucleophile to an a,ẞ-unsaturated carbonyl. H3C LOCH3 H₂O H3C OCH3 OCH3 Draw the two resonance structures of the enolate anion intermediate for this reaction. • Draw an R1 group in place of CoA. The R group tool is located in the charges and lone pairs drop-down menu. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate resonance structures using the symbol from the drop-down menu. • O H CH3 ? [F1. Draw a curved arrow mechanism and predict a competing final product structure for each reaction sequence. Circle and label the appropriate structures "end of reaction #1" and "end of reaction # 2" in the mechanism. 1. Br₂, H₂O 2. NaH 3. H₂SO4, EtOH OH (another stereoisomer of product would also form- draw it in the box at the right, but only show the mechanism leading to the stereoisomer above) (structure of the other product stereoisomer)
- Draw the major product of this aldol addition reaction. Ignore inorganic byproducts. 1. LDA 2. CH3CH2CH2CHO 3. Neutralizing work-upBe sure to answer all parts. What aldol product is formed when two molecules of butanal react together in the presence of base? draw structure ... What reagents are needed to convert this product to the following compound? HO. (+ Z isomer) [1] OH ; [2] NaBH4, CH3OH [1] MCPBA; [2] OH, H,0 [1] (CH),CuLi; [2] H,0 O ] CH,MgBr; [2] H,06. Draw the complete mechanism for the following transformation. OH
- Draw the major organic product or products for this reaction. Be sure to include stereochemistry where appropriate. Assume it takes place in the most appropriate solvent. Br: Please answer fast I give you upvote.Complete the mechanism for the reaction of butanone with NaBH, followed by the addition of aqueous acid. 1. NABH4 final product 2. H3O* Step 2: Draw the charged organic intermediate product. Include nonbonding electrons and Step 1: draw curved arrows. Select Draw Rings More Erase charges. Omit the counterion. HB Na o C Select Draw Rings More Erase C H В :0 : H. H, O* H - B Na + ↑4. Draw a stepwise detailed reaction mechanism for the following reaction. HO + C6H5CHO -C3H5 H20 +