Derive an IUPAC name for the following (cyclo)alkenes. (Do not use cis/trans in your names. Use only the (E)/(Z) designations for double bond stereochemistry. It is not necessary to use italics in writing compound names.) (a) (b) nd x

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### Educational Content - Deriving IUPAC Names for (Cyclo)alkenes

#### Instructions:
Derive an IUPAC name for the following (cyclo)alkenes. 
(Note: Do not use cis/trans in your names. Use only the (E)/(Z) designations for double bond stereochemistry. It is not necessary to use italics in writing compound names.)

#### Compound Structures:

**(a)**  
- **Description**: The structure is a linear hydrocarbon chain with a double bond and several branching points.
- **Details**: The main chain consists of five carbon atoms with a double bond between the fourth and fifth carbons. A branch extends from the third carbon.

**(b)**  
- **Description**: The structure shows a cycloalkene, characterized by a closed ring with a double bond.
- **Details**: This compound consists of a ring with six carbon atoms, with two points having branches extending outward, creating a symmetrical structure.

For each structure, identify the longest carbon chain, determine the locations of any branching, and apply the (E)/(Z) notation as necessary to indicate the stereochemistry of the double bonds.
Transcribed Image Text:### Educational Content - Deriving IUPAC Names for (Cyclo)alkenes #### Instructions: Derive an IUPAC name for the following (cyclo)alkenes. (Note: Do not use cis/trans in your names. Use only the (E)/(Z) designations for double bond stereochemistry. It is not necessary to use italics in writing compound names.) #### Compound Structures: **(a)** - **Description**: The structure is a linear hydrocarbon chain with a double bond and several branching points. - **Details**: The main chain consists of five carbon atoms with a double bond between the fourth and fifth carbons. A branch extends from the third carbon. **(b)** - **Description**: The structure shows a cycloalkene, characterized by a closed ring with a double bond. - **Details**: This compound consists of a ring with six carbon atoms, with two points having branches extending outward, creating a symmetrical structure. For each structure, identify the longest carbon chain, determine the locations of any branching, and apply the (E)/(Z) notation as necessary to indicate the stereochemistry of the double bonds.
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