$R$ and $S$ configuration of compound $(A)$ & $(B)$ will be

  • A
    $R, R$
  • B
    $R, S$
  • C
    $S, R$
  • D
    $S, S$

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Similar Questions

Which of the following statements best describes the stereochemical relationships of compounds $I$,$II$,and $III$ shown below?

The correct statement$(s)$ concerning the structures $E, F$ and $G$ is (are):
$E$: $CH_3CH_2CH(CH_3)COCH_3$
$F$: $CH_3CH_2C(OH)=C(CH_3)_2$ (enol form)
$G$: $CH_3CH_2C(CH_3)=C(OH)CH_3$ (enol form)
$(A)$ $E, F$ and $G$ are resonance structures
$(B)$ $E, F$ and $E, G$ are tautomers
$(C)$ $F$ and $G$ are geometrical isomers
$(D)$ $F$ and $G$ are diastereomers

$Ph-C(ClF_2)=C(F)_2 \xrightarrow{1\,eq. \, ^-OEt} A$ (major product),$A$ is

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The circle represents the most basic atom in these molecules. Which of the following is the correct representation?

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If a carbon atom is attached to $-H, -OH, -COOH$ and $-OCO^{-}C_2H_5$ groups,the number of chiral $C$ atoms in the molecule is:

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