Determine the product of the reaction: CH3 CH3-CH=ċ-CH3 + HBr CH, a) CH,Br-CH=ċ-CH3 CH, b) CH;-CH;-CH-CH; CH3 c) CH3-CH-CH-CH3 Br CH3 d) CH;-CH,-C-CH, Br
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- As we learned in Chapter 4, monosubstituted cyclohexanes exist as an equilibrium mixture of two conformations having either an axial or equatorial substituent. When R = CH2CH3, Keq for this process is 23.When R = C(CH3)3, Keq for this process is 4000. a.When R = CH2CH3, which conformation is present in higher concentration? b.Which R shows the higher percentage of equatorial conformation at equilibrium? c. Which R shows the higher percentage of axial conformation at equilibrium? d. For which R is ΔGo more negative? e.How is the size of R related to the amount of axial and equatorial conformations at equilibrium?Can it also be 4-methyl-pent-1-al or no?1. Complete the following diagram so that it represents (R)-2-bromobutane.