How many organic products are there in the reaction of 1,3-cyclohexadiene with HBr? (note: be sure to draw out the possibilities before deciding; remember that only the more stable cation is formed) O O three one two four HBr ?
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- 5.) cyclopentane Why slightly soluble in water? Why insoluble in HCl? Why completely soluble in NaOH? Why insoluble in NaHCO?9. There are several possible forms of a trisubstituted cyclohexane with the formula C10H200. I have drawn four of them. From these, which one do you think is most commonly naturally occurring, and why? Which is least commonly occurring and why? HO HO" НО HODraw structural formulas for the major organic product of the reagents shown. CH3 • NO2 H2SO4 + HNO3 You do not have to consider stereochemistry. • Apply formal charges to any nitro groups. • If there is more than one major product possible, draw all of them. • • Separate multiple products using the + sign from the drop-down menu. ? √n [F ChemDoodleⓇ
- why cyclohexane does not react with potassium permanganate? (combustion test) what happens if I ignite a sample of Toluene?4-methyl-3-hexanol was prepared by reacting an alkene with either hydroboration-oxidation or oxymercuration-reduction. Draw the structure of the alkene that was used to prepare the alcohol in highest yield. • You do not have to consider stereochemistry. • Indicate the method of preparation by drawing either BH3 (for . If there is more than one alkene that can be used for a given method, draw all of them. If either hydroboration-oxidation or oxymercuration-reduction can be used, just give the structures for one method. Separate structures with + signs from the drop-down menu. ● 981 -- 26224 ? ChemDoodle Y hydroboration-oxidation), or Hg (for oxymercuration-reduction), in a separate sketcher. Sn [1d) when you react ammonia with a halogenated alkane will you get only one organic product? Why or why not? (do not talk about inorganic products)
- What is(are) the major Organic product(s) in the following reaction? CH; CH; H₂C-C-0-CBr; CBr; CH; H₂C-C-0-CH; CH; CB13 Br3C C 0-CH₂ HBr (SNI) HC CH; H₂C-C-0-H CH, (b) CH; CH; Br CH;Br CH₂OH H;C CH, H₂C C | CH; CH; C CH; (c) H CH + CH₂Br CH; 0—C—CH; -CH:OCH:Draw the product that would form when 3-ethyl-2-pentene reacts with bromine. • You do not have to consider stereochemistry. • You do not have to explicitly draw H atoms. . In cases where there is more than one answer, just draw one. + HAVY ▼ Sn [F ? ChemDoodleDraw what would happen to 2,5-dimethyl-2-hexene in an alkyl halides and alkane reaction. This is for a concept map. So what would the alkene 2,5-dimethyl-2-hexene be as an alkyl halides and how to you go from an alkene to an alkane with 2,5-dimethyl-2-hexene. No bond lines. I know this much for alkene to alkane
- The addition of water to aldehydes and ketones occurs rapidly, although it is not thermodynamically favored. What would be the product for the reaction above? Hint: Think of the self-ionization of water and the polarity of the carbonyl group.Draw a resonance structure, complete with all formal charges and lone (unshared) electron pairs, that shows the resonance interaction of the chloro with the para position in chlorobenzene. 0 chlorobenzene • You do not have to consider stereochemistry. • Include all valence lone pairs in your answer. In cases where there is more than one answer, just draw one. . 99-85 On [F ChemDoodleⓇa) Give the molecular formula and draw the skeletal structure for 3-bromo-3- methylhexane. b) Name (including E/Z stereochemistry) the FIVE alkenes that can produce 3-bromo-3- methylhexane on reaction with HBr. Draw the skeletal structure of each molecule.??? c) Define the type of stereoisomerism present in 3-bromo-3-methylhexane. Name and draw the tetrahedral representation of the two stereoisomers?. d) For the base-catalysed hydrolysis of 3-bromo-3-methylhexane (i.e. reaction with the nucleophile OH-): i) ii) iii) iv) State whether the reaction is likely to proceed by an SN1 or SN2 mechanism, and explain your choice Give the likely rate law for the reaction. Explain your choice. For the reaction intermediate, draw its structure and give the VSEPR description of the geometry at the reaction centre Give the names and draw the structures of the two reaction products. Explain your conclusions