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- 3) Draw a molecule that has one S stereocenter. Do not duplicate your example from question 1.a) Draw one isomer of C6H14. b) Draw one isomer of C6H12- c) Draw one isomer of C6H140 that exhibits hydrogen bonding. d) Draw one isomer of C6H140 that is not capable of hydrogen bonding. BONUS: Show all locations of possible hydrogen bonding for the C6H140 isomer that you drew above in part c.Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under the table. 11... Molecule 1 TU Molecule 4 B... 0 none of the above Molecule 2 ... Molecule 5 0 Molecule 3 ***** Molecule 6 X 5
- Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under the table. HO Molecule 1 HO Molecule 4 ..... OH 0 Onone of the above Molecule 2 OH 0 Molecule 5 OH Molecule 3 HO n Molecule 6 HO... 0 X SCheck the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under the table.Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under the table. OH & .... Molecule 1 HO Molecule 4 OH -- none of the above Molecule 2 HO In.. Molecule 5 HO X Molecule 3 sil OH Molecule 6 ..... OH X Ś 000 Ar 18
- Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under. the table. Molecule 1 Molecule 4 none of the above Molecule 2 ******* Molecule 5 Molecule 3 Molecule 6 ? F olo Ar wCheck the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under the table. -... Molecule 1 Molecule 4 none of the above Molecule 2 Molecule 5 Molecule 3 Molecule 6 X ŚConstruct a model in which a tetrahedral carbon atom has four different colored model atoms attached to it- red, green, orange and white representing 4 different atoms attached to the central atom. a) Does the atom have a plane of symmetry? why or why not? b) Now replace the green atom in your model with a second orange atom. Now two of the groups attached to the carbon atom are identical. Does the model now have a plane of symmetry? Describe it. c)A carbon atom has four different groups attached to the stereogenic center. Draw structural formulas for the following compound and mark stereogenic centers with as asterisk: 1-bromobutane, 2-bromobutane, 1,2-dibromobutane, 1,4-dibromobutane, 2,3-dibromobutane.
- Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under the table. ... OH Molecule 1 OH Molecule 4 HO none of the above Molecule 2 U Molecule 5 HO.. OH □ Molecule 3 OH O Molecule 6 HO xCheck the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of the above box under the table. * Molecule 1 Molecule 4 q Onone of the above Molecule 2 Molecule 5 Molecule 3 Molecule 6 *** X 0Draw an exact 3-D representation of the molecule from the model.