Write the systematic names for each heterocyclic component. NH HN- NH

Pushing Electrons
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Chapter1: Lewis Structures
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Problem 13EQ: This is done by removing an unshared pair from each of two adjacent atoms and adding one electron...
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### Systematic Names for Heterocyclic Components

Below are structural diagrams of various heterocyclic compounds. A heterocyclic compound is a ring structure that contains at least one atom other than carbon within the ring. Please review the following structures and their systematic names:

1. **Structure 1**: A three-membered ring with one nitrogen atom.
   - **Systematic Name**: Aziridine

2. **Structure 2**: A four-membered ring with one nitrogen atom.
   - **Systematic Name**: Azetidine

3. **Structure 3**: A five-membered ring with one nitrogen atom.
   - **Systematic Name**: Pyrrolidine

4. **Structure 4**: A six-membered ring with one nitrogen atom.
   - **Systematic Name**: Piperidine

5. **Structure 5**: A six-membered ring with two nitrogen atoms at positions 1 and 3.
   - **Systematic Name**: Pyrimidine

These names correspond to the specific arrangement and number of atoms within the rings. Knowing these fundamental structures is crucial for the study of organic chemistry and pharmacology, as many drugs are based on such heterocyclic rings.
Transcribed Image Text:### Systematic Names for Heterocyclic Components Below are structural diagrams of various heterocyclic compounds. A heterocyclic compound is a ring structure that contains at least one atom other than carbon within the ring. Please review the following structures and their systematic names: 1. **Structure 1**: A three-membered ring with one nitrogen atom. - **Systematic Name**: Aziridine 2. **Structure 2**: A four-membered ring with one nitrogen atom. - **Systematic Name**: Azetidine 3. **Structure 3**: A five-membered ring with one nitrogen atom. - **Systematic Name**: Pyrrolidine 4. **Structure 4**: A six-membered ring with one nitrogen atom. - **Systematic Name**: Piperidine 5. **Structure 5**: A six-membered ring with two nitrogen atoms at positions 1 and 3. - **Systematic Name**: Pyrimidine These names correspond to the specific arrangement and number of atoms within the rings. Knowing these fundamental structures is crucial for the study of organic chemistry and pharmacology, as many drugs are based on such heterocyclic rings.
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