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If ‘n’ represents total number of asymmetric carbon atoms in a compound, the possible number of optical isomers of the compound is
  • a)
     2n
  • b)
     n2
  • c)
     2n
  • d)
    2n + 2
Correct answer is option 'C'. Can you explain this answer?
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If ‘n’ represents total number of asymmetric carbon atoms ...
The correct answer is Option C.
The general formula for calculating stereoisomers is: 2n, where n is the number of chiral centers.
Stereoisomers are compounds with the same chemical formula but different spatial arrangement and chiral centers are carbons that are bonded to 4 different groups. So, the possible no of optical isomers can be 2n.
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If ‘n’ represents total number of asymmetric carbon atoms ...
The correct answer is Option C.
The general formula for calculating stereoisomers is: 2n, where n is the number of chiral centers.
Stereoisomers are compounds with the same chemical formula but different spatial arrangement and chiral centers are carbons that are bonded to 4 different groups. So, the possible no of optical isomers can be 2n.
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If ‘n’ represents total number of asymmetric carbon atoms in a compound, the possible number of optical isomers of the compound isa)2nb)n2c)2nd)2n + 2Correct answer is option 'C'. Can you explain this answer?
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