Find the number of different kinds proton and carbon signals in the attached compound and write the spin multiplicity of each proton in these compounds?

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Find the number of different kinds proton and carbon signals in the attached compound and write the spin multiplicity of each proton in these compounds? 

 

This image displays a structural formula representing a chlorinated organic compound. Specifically, it is 2-chlorobutane.

In the illustration:
1. The backbone of the molecule consists of a four-carbon chain (butane).
2. The four carbon atoms are depicted as linked in a zigzag manner to illustrate the bond angles.
3. Each carbon atom has hydrogen atoms attached, represented by "H".
4. A chlorine (Cl) atom is attached to the second carbon atom in the chain, replacing one hydrogen atom. The chlorine atom is highlighted in green to distinguish it from the rest of the molecule.

The molecular formula for 2-chlorobutane can be written as C4H9Cl. This compound is a type of haloalkane, where one of the hydrogen atoms in an alkane (butane in this case) is replaced by a halogen (chlorine). The chlorine atom's position on the second carbon is indicated by the "2-" in the compound's name.
Transcribed Image Text:This image displays a structural formula representing a chlorinated organic compound. Specifically, it is 2-chlorobutane. In the illustration: 1. The backbone of the molecule consists of a four-carbon chain (butane). 2. The four carbon atoms are depicted as linked in a zigzag manner to illustrate the bond angles. 3. Each carbon atom has hydrogen atoms attached, represented by "H". 4. A chlorine (Cl) atom is attached to the second carbon atom in the chain, replacing one hydrogen atom. The chlorine atom is highlighted in green to distinguish it from the rest of the molecule. The molecular formula for 2-chlorobutane can be written as C4H9Cl. This compound is a type of haloalkane, where one of the hydrogen atoms in an alkane (butane in this case) is replaced by a halogen (chlorine). The chlorine atom's position on the second carbon is indicated by the "2-" in the compound's name.
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