Provide the bond line structures for four constitutional isomers with the molecular formula C₂13C₂ following the directions shown below. Isomer #1: contains a tertiary alcohol and a secondary amine Isomer # 2: contains an amide romer #3: contains a primary alkyl halide and a Isomer #4: contains a cis alkene and a trans alkene

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### Constitutional Isomers of C6H13NOCl2

**Question**: Provide the bond line structures for four constitutional isomers with the molecular formula C6H13NOCl2 by following the directions shown below.

#### Isomer #1: Contains a Tertiary Alcohol and a Secondary Amine
[Graph/Diagram Description: This is a bond-line structure illustrating a carbon chain with designated branches representing a tertiary alcohol group (OH attached to a carbon with three neighboring carbons) and a secondary amine group (NH connected to a carbon that is bonded with two other carbons).]

#### Isomer #2: Contains an Amide
[Graph/Diagram Description: This image illustrates a bond-line structure showing a molecule with an amide group (R-C(O)-NR2, where R can be hydrogen or a variety of organic groups). The diagram shows the structural connectivity emphasizing the amine and carbonyl functional groups.]

#### Isomer #3: Contains a Primary Alkyl Halide and a Ketone
[Graph/Diagram Description: This image is a bond-line structure representing a carbon chain that includes a primary alkyl halide group (a halogen attached to a carbon which is connected to only one other carbon) and a ketone group (a carbon double-bonded to oxygen with two other carbons attached).]

#### Isomer #4: Contains a Cis Alkene and a Trans Alkene
[Graph/Diagram Description: This diagram showcases a bond-line structure with two types of alkenes. A cis alkene (where substituents on the double-bonded carbons are on the same side) and a trans alkene (where substituents on the double-bonded carbons are on opposite sides).]

These diagrams highlight the different structural arrangements that can be formed with the same molecular formula, demonstrating the concept of constitutional isomers in organic chemistry.
Transcribed Image Text:### Constitutional Isomers of C6H13NOCl2 **Question**: Provide the bond line structures for four constitutional isomers with the molecular formula C6H13NOCl2 by following the directions shown below. #### Isomer #1: Contains a Tertiary Alcohol and a Secondary Amine [Graph/Diagram Description: This is a bond-line structure illustrating a carbon chain with designated branches representing a tertiary alcohol group (OH attached to a carbon with three neighboring carbons) and a secondary amine group (NH connected to a carbon that is bonded with two other carbons).] #### Isomer #2: Contains an Amide [Graph/Diagram Description: This image illustrates a bond-line structure showing a molecule with an amide group (R-C(O)-NR2, where R can be hydrogen or a variety of organic groups). The diagram shows the structural connectivity emphasizing the amine and carbonyl functional groups.] #### Isomer #3: Contains a Primary Alkyl Halide and a Ketone [Graph/Diagram Description: This image is a bond-line structure representing a carbon chain that includes a primary alkyl halide group (a halogen attached to a carbon which is connected to only one other carbon) and a ketone group (a carbon double-bonded to oxygen with two other carbons attached).] #### Isomer #4: Contains a Cis Alkene and a Trans Alkene [Graph/Diagram Description: This diagram showcases a bond-line structure with two types of alkenes. A cis alkene (where substituents on the double-bonded carbons are on the same side) and a trans alkene (where substituents on the double-bonded carbons are on opposite sides).] These diagrams highlight the different structural arrangements that can be formed with the same molecular formula, demonstrating the concept of constitutional isomers in organic chemistry.
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