MCQ
What is the relation between given compounds
  • A
    Enantiomers
  • Diastereomers
  • C
    Conformers
  • D
    Identical

Answer

Correct option: B.
Diastereomers
b

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

In an endothermic reaction, the value of $\Delta H$ is
Find product $(C)$ and $(E)$

$n-$propyl bromide $\xrightarrow{{Na}}(A)\xrightarrow[{A{l_2}{O_3}/773\,K}]{{Cr{O_3}}}(B)\xrightarrow[{500\,K}]{{C{l_2}/UV}}(C)$

$n-$propyl bromide $\xrightarrow{{Na}}(A)\xrightarrow[{A{l_2}{O_3}/773\,K}]{{Cr{O_3}}}(B)$ $\xrightarrow[{}]{{C{H_3} - Cl/AlC{L_3}}}(D)\xrightarrow{{C{l_2}/hv}}(E)$

Select the correct statement regarding shapes of

$PCl _{5}, BrF _{5}, \& IF _{7}, BrF _{5} \& IF _{7}$

In which of the following $K_p$ is less than $K_c$ ?
De broglie equation describes the relationship of wavelength associated with the motion of an electron and its
Match List$-I$ with List$-II$. 

List$-I$ List$-II$
$A$ Coke $I$ Carbon atoms are $sp ^3$ hybridised
$B$ Diamond $II$ Used as a dry lubricant
$C$ Fullerene $III$  Used as a reducing agent
$D$ Graphite $IV$ Cage like molecules

Choose the correct answer from the options given below :

$5\,g$ of $NaOH$ was dissolved in deionized water to prepare a $450\,mL$ stock solution. What volume (in $mL$ ) of this solution would be required to prepare $500\,mL$ of $0.1\,M$ solution?

Given : Molar Mass of $Na$, $O$ and $H$ is $23,16$ and $1\,g\,mol ^{-1}$ respectively

Choose the reaction($s$) from the following options, for which the standard enthalpy of reaction is equal to the standard enthalpy of formation.

$(1)$ $\frac{3}{2} O _2( g ) \rightarrow O _3$ $(g)$

$(2)$ $\frac{1}{8} S _8( s )+ O _2( g ) \rightarrow SO _2( g )$

$(3)$ $2 H _2( g )+ O _2( g ) \rightarrow 2 H _2 O (l)$

$(4)$ $2 C ( g )+3 H _2( g ) \rightarrow C _2 H _6( g )$

The four quantum numbers of the valence electron of potassium are
The electronic configuration together with the quantum number of last electron for lithium is