Which carbocation is least stable and which is most stable?  Which carbocation can't be rearranged into a tertiary carbocation

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Which carbocation is least stable and which is most stable? 

Which carbocation can't be rearranged into a tertiary carbocation?

The image contains four molecular structures, labeled A through D:

**A:** Cyclohexylmethyl cation.
- This structure features a hexagonal ring, representing a cyclohexane group, with a positively charged methyl group attached.

**B:** Cyclohexane radical.
- Contains a cyclohexane ring with a single electron (represented as a dot) indicating a radical at the methylene group.

**C:** Cyclohexylethyl cation.
- Again, a cyclohexane ring, this time with a positively charged ethyl group attached.

**D:** Cyclohexylethane radical.
- Displays a cyclohexane ring with an ethyl group featuring a single electron, indicating a radical.

Each structure illustrates variations of cyclohexane derivatives with different functional groups indicating either cations or radicals.
Transcribed Image Text:The image contains four molecular structures, labeled A through D: **A:** Cyclohexylmethyl cation. - This structure features a hexagonal ring, representing a cyclohexane group, with a positively charged methyl group attached. **B:** Cyclohexane radical. - Contains a cyclohexane ring with a single electron (represented as a dot) indicating a radical at the methylene group. **C:** Cyclohexylethyl cation. - Again, a cyclohexane ring, this time with a positively charged ethyl group attached. **D:** Cyclohexylethane radical. - Displays a cyclohexane ring with an ethyl group featuring a single electron, indicating a radical. Each structure illustrates variations of cyclohexane derivatives with different functional groups indicating either cations or radicals.
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