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6. Build two models of ehlorocyclohexane. On one model, replace the hydrogen labeled H,with a chlorine atom to make model A; on the other model,

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6. Build two models of ehlorocyclohexane. On one model, replace the hydrogen labeled H,with a chlorine atom to make model A; on the other model, replace the hydrogen labeled Hb, to produce model B. Now place both models in What is the configuration of each chirality center? A9 b3 C? D? Using the femplates provided, draw the planar representation (use wedges and dashesi) and both chair conformations of the models of 1.3-dichlorocyclobexane. Is one chair conformer lower in energy? If so, circle the appropriate conformation above. Are the two chlorine atoms cis-or trans- to each other? Can both chlorine atoms be axial in any chair conformation? Would a solution of model A rotate plane polarized light? Model B? Why or why not? Is model A a meso compound? Model B? Using the models as a reference, complete the Newman projections for the chair and boat conformations below, C-1 and C3 are the two carbons in the front of the projection. Is there an internal plane of symmetry in either

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