6b. Convert the line-angle formula below into condensed formula: Br

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Convert the line-angle formula below into condensed formula

**6b. Convert the line-angle formula below into condensed formula:**

**Line-Angle Formula Diagrams:**

1. **First Diagram:**
   - The structure begins with a cyano group (N≡C).
   - Following the carbon with the cyano group, there are five carbon atoms in a chain, each bonded to the next in a simple line. The third carbon from the cyano group has a bromine atom (Br) attached to it. The fifth carbon atom is attached to an oxygen atom which is connected to a carbon atom bearing two methyl groups.
   
   The condensed formula for this structure would be: 
   **N≡C-CH2-CH2-CH(Br)-CH2-O-CH(CH3)2**

2. **Second Diagram:**
   - The central structure is a ketone with a six-carbon chain.
   - The fourth carbon in the chain has an ethynyl group (C≡CH) attached to it. 
   - In addition, there is a methyl group attached to the second carbon and a ketone double-bonded oxygen (C=O) bonded to the third carbon atom. The sixth carbon of the chain has another attached methyl group.

   The condensed formula for this structure would be:
   **CH3-CO-CH(CH3)-CH2-C≡CH**

**Explanation of the Diagrams:**

- **First Diagram:** This depicts a complex organic molecule with multiple functional groups: a cyano group (N≡C) at one end, and an ether linkage with an isopropyl group (O-CH(CH3)2) at the other end of the carbon chain. The diagram indicates the presence of a bromine atom bonded to a carbon in the middle of the chain.

- **Second Diagram:** This shows another organic molecule featuring a ketone group (C=O) in the middle of the structure. The diagram also includes an ethynyl group (C≡CH) attached to the carbon adjacent to the ketone, and methyl groups attached to two other carbons in the chain. 

These detailed structures help in understanding organic chemistry, specifically in correlating line-angle diagrams with their corresponding condensed molecular formulas.
Transcribed Image Text:**6b. Convert the line-angle formula below into condensed formula:** **Line-Angle Formula Diagrams:** 1. **First Diagram:** - The structure begins with a cyano group (N≡C). - Following the carbon with the cyano group, there are five carbon atoms in a chain, each bonded to the next in a simple line. The third carbon from the cyano group has a bromine atom (Br) attached to it. The fifth carbon atom is attached to an oxygen atom which is connected to a carbon atom bearing two methyl groups. The condensed formula for this structure would be: **N≡C-CH2-CH2-CH(Br)-CH2-O-CH(CH3)2** 2. **Second Diagram:** - The central structure is a ketone with a six-carbon chain. - The fourth carbon in the chain has an ethynyl group (C≡CH) attached to it. - In addition, there is a methyl group attached to the second carbon and a ketone double-bonded oxygen (C=O) bonded to the third carbon atom. The sixth carbon of the chain has another attached methyl group. The condensed formula for this structure would be: **CH3-CO-CH(CH3)-CH2-C≡CH** **Explanation of the Diagrams:** - **First Diagram:** This depicts a complex organic molecule with multiple functional groups: a cyano group (N≡C) at one end, and an ether linkage with an isopropyl group (O-CH(CH3)2) at the other end of the carbon chain. The diagram indicates the presence of a bromine atom bonded to a carbon in the middle of the chain. - **Second Diagram:** This shows another organic molecule featuring a ketone group (C=O) in the middle of the structure. The diagram also includes an ethynyl group (C≡CH) attached to the carbon adjacent to the ketone, and methyl groups attached to two other carbons in the chain. These detailed structures help in understanding organic chemistry, specifically in correlating line-angle diagrams with their corresponding condensed molecular formulas.
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