1. Draw all reasonable elimination products to the right of the arrow. 2. In the box below the reaction, redraw any product you expect to be a major product. NaOH
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- 1. Draw all reasonable elimination products to the right of the arrow. 2. In the box below the reaction, redraw any product you expect to be a major product. Ö Br □ + X NaOH SFor the reaction below: 1. Draw all reasonable elimination products to the right of the arrow. 2. In the box below the reaction, redraw any product you expect to be a major product. + NaOH Click and drag to start drawing a structure.Draw the major product of this reaction. Ignore inorganic byproducts. 1. CrO3, H2SO4 2. Neutralizing work-up Select to Draw H
- Draw the major organic product of the Bronsted acid-base reaction. Include all lone pairs and charges as appropriate. Ignore any counterions. ] NaH OHConsider the following reaction and draw all products (two products) and circle the major product H Br NaOHThis 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 ? [F
- 5. Draw the mechanism that produces the major product for the following reactions. Do not draw minor products. Include resonance structures of the intermediates. Make sure you add all arrows! For both the reagents reacting together and resonance structures. Lone pairs must be shown on atoms that have charges. This includes the nitro group when drawn out. Arrows either start at electrons and end on at atom or start in the middle of a bond and end on the atom. 1) 2) CI NO₂ H₂N-CH3 (one major product) CI-CI1. 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)Hi, having trouble figuring out these reactions, if you could show both a and b that would be great.
- Be sure to answer all parts. This is a two-part question. First, draw the minor alkene product that should be formed in the reaction. Second, draw a stepwise mechanism that shows the formation of the major product: Part 1 out of 3 Br CH3OH draw structure ... major product minor product1. Draw the starting structure that would lead to this major product 2. Draw the major product of this reaction. Ignore inorganic 3. Draw the major product of this reaction. Ignore inorganic under these conditions. byproducts. byproducts. H3O* H3O* H3O* НО2. Draw the structures and explain why CH3CH₂O and CH3CO₂ are good nucleophiles but CH3SO3, water, and alcohols (R-OH) are poor nucleophiles. Propose a 'cutoff' for the amount of negative charge needed to be a good nucleophile. CH3CH₂O CH3CO₂ CH3SO3 H₂O CH₂OH