Draw a skeletal ("line") structure of this molecule: CH3 CH3 CH3-CH CH-CH3 CH2=CH-CH-CH-CH2-CH2-CH2-CH3

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**Organic Compounds and Structures: Drawing a Skeletal Structure from a Condensed Structure**

**Objective:** 
Learn how to draw the skeletal ("line") structure of a given molecule from its condensed structure.

**Description:**
In this exercise, you will convert the condensed structural formula of a molecule into its skeletal (or line-angle) structure. The condensed structure of the molecule provided here is:

\[ \text{CH}_3 - \text{CH} - \text{CH}(\text{CH}_3) - \text{CH}(\text{CH}_3) - \text{CH}_2 - \text{CH} = \text{CH}_2 - \text{CH}_2 -  \text{CH}_2 - \text{CH}_3 \]

**Diagram:**
The condensed structural formula is displayed as follows:
- The main chain consists of nine carbon atoms. 
- There are two methyl groups (\( \text{CH}_3 \)) attached to the central chain.

To draw the skeletal (line) structure:
1. Each vertex represents a carbon atom.
2. Hydrogen atoms bonded to carbon atoms are implied and not usually shown.
3. Double lines represent double bonds between carbon atoms.
4. Branches and substituents (like the \( \text{CH}_3 \) groups) are represented as lines branching off the main chain.

**Task:**
Using the outlined principles, reconstruct the given molecule's skeletal structure in the provided diagram space.

**Graph Explanation:**
The graph area is currently blank, and you are expected to draw the skeletal structure based on the given condensed structural formula.

**Buttons:**
- **Explanation:** Use this button to get a detailed explanation of how to convert condensed structures to skeletal structures.
- **Check:** After drawing the skeletal structure, click this button to verify the correctness of your drawn structure.

This exercise will help you to visually interpret and draw the skeletal structure, a crucial skill in organic chemistry for understanding and representing molecular frameworks.
Transcribed Image Text:**Organic Compounds and Structures: Drawing a Skeletal Structure from a Condensed Structure** **Objective:** Learn how to draw the skeletal ("line") structure of a given molecule from its condensed structure. **Description:** In this exercise, you will convert the condensed structural formula of a molecule into its skeletal (or line-angle) structure. The condensed structure of the molecule provided here is: \[ \text{CH}_3 - \text{CH} - \text{CH}(\text{CH}_3) - \text{CH}(\text{CH}_3) - \text{CH}_2 - \text{CH} = \text{CH}_2 - \text{CH}_2 - \text{CH}_2 - \text{CH}_3 \] **Diagram:** The condensed structural formula is displayed as follows: - The main chain consists of nine carbon atoms. - There are two methyl groups (\( \text{CH}_3 \)) attached to the central chain. To draw the skeletal (line) structure: 1. Each vertex represents a carbon atom. 2. Hydrogen atoms bonded to carbon atoms are implied and not usually shown. 3. Double lines represent double bonds between carbon atoms. 4. Branches and substituents (like the \( \text{CH}_3 \) groups) are represented as lines branching off the main chain. **Task:** Using the outlined principles, reconstruct the given molecule's skeletal structure in the provided diagram space. **Graph Explanation:** The graph area is currently blank, and you are expected to draw the skeletal structure based on the given condensed structural formula. **Buttons:** - **Explanation:** Use this button to get a detailed explanation of how to convert condensed structures to skeletal structures. - **Check:** After drawing the skeletal structure, click this button to verify the correctness of your drawn structure. This exercise will help you to visually interpret and draw the skeletal structure, a crucial skill in organic chemistry for understanding and representing molecular frameworks.
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