Which of the two compounds shown below is more basic? You must rationalize your answer based on compound structure;

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Which of the two compounds shown below is more basic? You must rationalize your answer based on compound structure;

This image displays three molecular structures, labeled A, B, and C. Each structure represents a different carbon-based anion.

1. **Structure A**: This is a linear molecule featuring a carbon with a negative charge. There is a triple bond between two carbon atoms, suggesting an alkyne anion.

2. **Structure B**: This shows a zigzag pattern typical of linear hydrocarbons. It depicts a carbon with a negative charge at the terminal end of a chain, and there are alternating single and double bonds likely representing an allene or similar structure.

3. **Structure C**: This structure has a linear appearance with all single bonds between carbons and a negatively charged carbon at the end, indicating an alkane anion.

These structures illustrate different types of carbon anions and their bonding arrangements, which are important for understanding reactivity and stability in organic chemistry contexts.
Transcribed Image Text:This image displays three molecular structures, labeled A, B, and C. Each structure represents a different carbon-based anion. 1. **Structure A**: This is a linear molecule featuring a carbon with a negative charge. There is a triple bond between two carbon atoms, suggesting an alkyne anion. 2. **Structure B**: This shows a zigzag pattern typical of linear hydrocarbons. It depicts a carbon with a negative charge at the terminal end of a chain, and there are alternating single and double bonds likely representing an allene or similar structure. 3. **Structure C**: This structure has a linear appearance with all single bonds between carbons and a negatively charged carbon at the end, indicating an alkane anion. These structures illustrate different types of carbon anions and their bonding arrangements, which are important for understanding reactivity and stability in organic chemistry contexts.
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