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- 3)) Draw the most stable chair conformation of a 1,2,4-trimethylcyclohexane (Show all the hydrogens and indicate if the bond is axial or equatorial at the substitution).Please don't provide handwriting solution2)- Determine the total number of conformers of the tetra-substituted cyclohexane structure given below (L.e, Draw the chair conformers of A that are, 6-levels of stability from the most stable of A, the sixth most staat conformer ofA, 9-levels that is unstable from the most unstable of A, and 5-levels of insta from the most unstable of A and the conformers of A that is representative of B. Note, only a total of six structures should be written on your paper. Also, include hydrogen atoms wherever are substituents on all of your chair conformers. Note, a table listing is a requirement for this problerm Answer (Total # of Conformers of A): 6-Levels of stability from the most stable of A: The sixth most stable conformer of A: 9-Levels that is unstable from the most unstable of A 5-levels of instability from the most unstable of A 스 Conformers of A that is representative of B:
- Draw Newman projections for the anti, eclipsed, gauche and fully eclipsed conformations of Butane. Indicate their relative stabilities and the reasons for your ranking-need to discuss the stresses involved in each case. Using suitable specific conformers of specific structures as examples, explain the difference between (a) angle strain (b) torsional strain and (c) steric strain. Need to draw the confomers and structures 4) Draw the most stable conformers using chair structures of the following: (c) cis-1,2-Dibromocyclohexane (d) trans-1,2-Dibromocyclohexane (e) cis-Decalin (f) trans-Decalin . Draw the most stable conformers of trans-1-Bromo-4-methylcyclohexane and cis-1-Bromo-4-methylcyclohexane. Which is more stable? Explain the reason for your answer. Need to include a discussion of 1,3-Diaxial interactionSee image belowPlease don't provide handwriting solution
- dont provide handwriting solutiojn ....3) Draw a cyclohexane chair with 3 substituents in the most stable conformation. Explain why the conformation you've chosen is the most stable.4. (a) Draw a skeletal (line-bond) structure for 3,4-dimethylhexane. (b) Draw a sawhorse representation of any staggered conformation of this molecule looking down the carbon-3 to carbon-4 bond. (c) Draw a Newman projection looking down the carbon-3 to carbon-4 bond of the same conformation that you drew as a sawhorse representation.
- (B) Draw two chair conformations of the following substituted cyclohexane and identify the most stable conformation. Clearly show the axial and equatorial bonds.2. Convert the following bond-line structure to Newman projections that represents it lowest energy and highest energy conformations. Look down the indicated C2-C3 bond. lowest energy highest energyPlease do't provide handwritten solution .....