Glue adhesion usually requires a dry surface, so studying the chemistry behind the attachment of mussels to wet rocks can lead to the development of new adhesive materials. Chemists used the compound shown to model the mussel foot proteins involved in the adhesion process (Science 2015, 349, 628-632). Some of the nitrogen atoms in this structure are believed to play a critical role in achieving the strong binding. Identify the number of lone pairs on each nitrogen atom in the following structure. но но N- ONH, NH3 10 H H. OH 9 он HO. H.N

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Glue adhesion usually requires a dry surface, so studying the chemistry behind the attachment of mussels to wet rocks can lead to
the development of new adhesive materials. Chemists used the compound shown to model the mussel foot proteins involved in the
adhesion process (Science 2015, 349, 628-632). Some of the nitrogen atoms in this structure are believed to play a critical role in
achieving the strong binding.
Identify the number of lone pairs on each nitrogen atom in the following structure.
но
но
8 H
N°
NH3
10
"Ne
6.
タール
OH
3.
HO
HO.
1 N:
6 N:
2 N:
7 N:
Transcribed Image Text:Glue adhesion usually requires a dry surface, so studying the chemistry behind the attachment of mussels to wet rocks can lead to the development of new adhesive materials. Chemists used the compound shown to model the mussel foot proteins involved in the adhesion process (Science 2015, 349, 628-632). Some of the nitrogen atoms in this structure are believed to play a critical role in achieving the strong binding. Identify the number of lone pairs on each nitrogen atom in the following structure. но но 8 H N° NH3 10 "Ne 6. タール OH 3. HO HO. 1 N: 6 N: 2 N: 7 N:
3 N:
8 N:
4 N:
9 N:
5 N:
10 N:
eTextbook and Media
Transcribed Image Text:3 N: 8 N: 4 N: 9 N: 5 N: 10 N: eTextbook and Media
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