C. Consider compound GON whose structure is shown on the right. Experimental analysis revealed that the molecule has an unusually high dipole moment where the direction of the dipole is towards the five-membered ring. Explain this observation using a stable resonance structure of GON. Justify using the stability of aromátic rings and the Hückel rule. GON
C. Consider compound GON whose structure is shown on the right. Experimental analysis revealed that the molecule has an unusually high dipole moment where the direction of the dipole is towards the five-membered ring. Explain this observation using a stable resonance structure of GON. Justify using the stability of aromátic rings and the Hückel rule. GON
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![C. Consider compound GON whose structure is shown on the right. Experimental
analysis revealed that the molecule has an unusually high dipole moment where
the direction of the dipole is towards the five-membered ring. Explain this
observation using a stable resonance structure of GON. Justify using the stability
of aromåtic rings and the Hückel rule.
GON](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F50a7affa-20ee-4ea9-8e3c-ae300af28677%2F2c055900-4e79-4cd5-b15c-091e95245280%2Ficd1lb4_processed.jpeg&w=3840&q=75)
Transcribed Image Text:C. Consider compound GON whose structure is shown on the right. Experimental
analysis revealed that the molecule has an unusually high dipole moment where
the direction of the dipole is towards the five-membered ring. Explain this
observation using a stable resonance structure of GON. Justify using the stability
of aromåtic rings and the Hückel rule.
GON
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