Use these bonds and atoms to do the following: 1. Construct a model of methane. Write down its dash and condensed formulas. Can you make a second model of methane that is not superposable on your first one? If so, write down its dash and condensed formulas. 2. Repeat step 1 for chloromethane. 3. Repeat step 1 for bromochloromethane. 4. Repeat step 1 for ethane. (HINTS: eth- means 2 carbons. It is OK to rotate around single bonds when you try to superpose two molecules.) 5. Repeat step 1 for bromoethane. 6. Repeat step 1 for dibromoethane. 7. Repeat step 1 for iodopropane. (HINT: prop- means 3 carbons.) 8. Repeat step 1 for chloroethene. (HINT: -ene means that a carbon-carbon double bond, C=C, is present.) 9. Repeat step 1 for dichloroethene. When you do this, you will uncover an important concept, cis and trans isomers. Write the complete IUPAC name under the dash formula of your isomers of dichloroethene. 10. Explain why each of H. and represent different molecules while and H-

Organic Chemistry: A Guided Inquiry
2nd Edition
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Andrei Straumanis
Chapter2: Lewis Structures
Section: Chapter Questions
Problem 11E: Below each structure in the previous question is a “condensed structure” that tells you...
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Question
Orange
Purple
Bromine
lodine
Procedure
Use these bonds and atoms to do the following:
1. Construct a model of methane. Write down its dash and condensed formulas. Can make a
second model of methane that is not superposable on your first one? If so, write down its dash and
condensed formulas.
you
2. Repeat step 1 for chloromethane.
3. Repeat step 1 for bromochloromethane.
4. Repeat step 1 for ethane. (HINTS: eth- means 2 carbons. It is OK to rotate around single bonds
when you try to superpose two molecules.)
5. Repeat step 1 for bromoethane.
6. Repeat step 1 for dibromoethane.
7. Repeat step 1 for iodopropane. (HINT: prop- means 3 carbons.)
8. Repeat step 1 for chloroethene. (HINT: -ene means that a carbon-carbon double bond, C=C, is
present.)
9. Repeat step 1 for dichloroethene. When you do this, you will uncover an important
concept, cis and trans isomers. Write the complete IUPAC name under the dash formula of
each of your isomers of dichloroethene.
10. Explain why
F.
F
H.
C.
and
H.
represent different molecules while
H.
H.
H.
F.
F
H-
and
H-C-
C-H
Transcribed Image Text:Orange Purple Bromine lodine Procedure Use these bonds and atoms to do the following: 1. Construct a model of methane. Write down its dash and condensed formulas. Can make a second model of methane that is not superposable on your first one? If so, write down its dash and condensed formulas. you 2. Repeat step 1 for chloromethane. 3. Repeat step 1 for bromochloromethane. 4. Repeat step 1 for ethane. (HINTS: eth- means 2 carbons. It is OK to rotate around single bonds when you try to superpose two molecules.) 5. Repeat step 1 for bromoethane. 6. Repeat step 1 for dibromoethane. 7. Repeat step 1 for iodopropane. (HINT: prop- means 3 carbons.) 8. Repeat step 1 for chloroethene. (HINT: -ene means that a carbon-carbon double bond, C=C, is present.) 9. Repeat step 1 for dichloroethene. When you do this, you will uncover an important concept, cis and trans isomers. Write the complete IUPAC name under the dash formula of each of your isomers of dichloroethene. 10. Explain why F. F H. C. and H. represent different molecules while H. H. H. F. F H- and H-C- C-H
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