•PRACTICE PROBLEM 5.8 Write three-dimensional formulas and designate a plane of symmetry for all of the achiral molecules in Practice Problem 5.4. Note that in order to be able to designate a plane of symmetry you may need to write the molecule in an appropriate conformation.

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• PRACTICE PROBLEM 5.8
Write three-dimensional formulas and designate a plane of symmetry for all of the achiral
molecules in Practice Problem 5.4. Note that in order to be able to designate a plane of
symmetry you may need to write the molecule in an appropriate conformation.
Transcribed Image Text:• PRACTICE PROBLEM 5.8 Write three-dimensional formulas and designate a plane of symmetry for all of the achiral molecules in Practice Problem 5.4. Note that in order to be able to designate a plane of symmetry you may need to write the molecule in an appropriate conformation.
O PRACTICE PROBLEM 5.4
Some of the molecules listed here have a chirality center; some do not. Write three-
dimensional formulas for both enantiomers of those molecules that do have a chirality
center.
(i) 2-Methyl-2-pentene
(G) 1-Chloro-2-methylbutane
(e) trans-2-Butene
(a) 2-Fluoropropane
(b) 2-Methylbutane
(c) 2-Chlorobutane
(f) 2-Bromopentane
(g) 3-Methylpentane
(h) 3-Methylhexane
(d) 2-Methyl-1-butanol
Transcribed Image Text:O PRACTICE PROBLEM 5.4 Some of the molecules listed here have a chirality center; some do not. Write three- dimensional formulas for both enantiomers of those molecules that do have a chirality center. (i) 2-Methyl-2-pentene (G) 1-Chloro-2-methylbutane (e) trans-2-Butene (a) 2-Fluoropropane (b) 2-Methylbutane (c) 2-Chlorobutane (f) 2-Bromopentane (g) 3-Methylpentane (h) 3-Methylhexane (d) 2-Methyl-1-butanol
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