i did not haave enough to Make a Physical MO del w/ MY Kít. 6. Include a two photos methyl cyclohexane model one where methyl is axial and one where methyl has flipped/rotated to equatorial. Methylcyyohexane axial methyicyclonexane equatorial Now on the model replace the methyl with a space filling ethyl group, then a (1-methylethyl) group, and finally a t-butyl group. AG° for the equatorial-to-axial equilibrium has been measured for each of these compounds (below). Include a photo of the model after each change

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Chapter1: Chemical Foundations
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i did not haave enough to Make a
Physical MO del w/ MY Kít.
6. Include a two photos methyl cyclohexane model one where methyl is
axial and one where methyl has flipped/rotated to equatorial.
Methylcyyohexane
axial
methyicyclonexane
equatorial
Now on the model replace the methyl with a space filling ethyl group,
then a (1-methylethyl) group, and finally a t-butyl group. AG° for the
equatorial-to-axial equilibrium has been measured for each of these
compounds (below). Include a photo of the model after each change
Transcribed Image Text:i did not haave enough to Make a Physical MO del w/ MY Kít. 6. Include a two photos methyl cyclohexane model one where methyl is axial and one where methyl has flipped/rotated to equatorial. Methylcyyohexane axial methyicyclonexane equatorial Now on the model replace the methyl with a space filling ethyl group, then a (1-methylethyl) group, and finally a t-butyl group. AG° for the equatorial-to-axial equilibrium has been measured for each of these compounds (below). Include a photo of the model after each change
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