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In the reaction given below, the product...

In the reaction given below, the product would be :
`CH_(3)-CH=CH-CH_(3)overset(H_(3)O^(+))(to)CH_(3)-CH_(2)-overset(OH)overset(|)(C)H-CH_(3)`

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In the reaction given below, the product would be : CH_3 -CH = CH - CH_3 overset(H_3 O^(+))to CH_3 - CH_2 - overset(OH) overset(|) (CH)-CH_3

CH_(3)-underset(CH_(3))underset(|)(CH)-CH=CH-CH_(2)-overset(O)overset(||)(C)-OH

CH_(3)-CH_(2)-CH_(2)-O-CH_(3) and CH_(3)-overset(CH_(3))overset(|)(C )H-O-CH_(3) are

CH_(3)-CH_(2)-CH_(2)-O-CH_(3) and CH_(3)-overset(CH_(3))overset(|)(C )H-O-CH_(3) are

Write IUPAC names of the following compounds : CH_(3)-overset(CH_(3))overset( |)(C)H-CH_(2)-CH_(2)-overset(CH_(3))overset(|)(C)H-CH_(3)

Write IUPAC names of the following compounds : CH_(3)-overset(CH_(3))overset( |)(C)H-CH_(2)-CH_(2)-overset(CH_(3))overset(|)(C)H-CH_(3)

An organic compound on reaction with O_(3) followed by Zn and H_(2)O gives CH_(3)-overset(O)overset(||)(C )-CH_(2)-CH_(2)-overset(O)overset(||)(C )-CH_(3) . The structures are:

The relative stability of the compunda given below is in the order CH_(3)-overset(CH_(3))overset(|)(C)=overset(CH_(3))overset(|)(C)-CH_(3) CH_(3)-overset(CH_(3))overset(|)C=CH-CH_(3) CH_(3)-CH=CH_(2) CH_(2)=CH_(2)