MCQ
Which will dehydrate easily
  • A
    $3-$ methyl $-2-$ butanol
  • B
    Ethyl alcohol
  • C
    $2-$ methyl propane $-2-$ ol
  • $2-$ methyl butanol $-2$

Answer

Correct option: D.
$2-$ methyl butanol $-2$
d
It’s Obvious.

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

When electric current is passed through a cell having an electrolyte, the positive ions move towards the cathode and the negative ions towards the anode. If the cathode is pulled out of the solution
Chlorination can be done on
The rate constant of a first order reaction is $3 \times {10^{ - 6}}$ per second. If the initial concentration is $0.10\,m$ , the initial rate of reaction is
For the energy level with the principal quantum number $3,$ the number of possible orbitals is
The correct statements from following are:

$A$. The strength of anionic ligands can be explained by crystal field theory.

$B$. Valence bond theory does not give a quantitative interpretation of kinetic stability of coordination compounds.

$C$. The hybridization involved in formation of $\left[\mathrm{Ni}(\mathrm{CN})_4\right]^{2-}$ complex is $\mathrm{dsp}^2$.

$D$. The number of possible isomer$(s)$ of cis- $\left[\mathrm{PtCl}_2(\text { en })_2\right]^{2+}$ is one

Choose the correct answer from the options given below:

What volume of $O_2(g)$ measured at $1\, atm$ and $273\, K$ will be formed by action of $100\, ml$ of $0.5\, N\, KMnO_4$ on hydrogen peroxide in an acid solution? The skeleton equation for the reaction is ............... $\mathrm{litre}$

$KMn{O_4} + {H_2}S{O_4} + {H_2}{O_4} \to {K_2}S{O_4} + MnS{O_4} + {O_2} + {H_2}O$

Bond $X$ is made by the overlap of which type of hybridized orbitals ?
On boiling an aqueous solution of $KCl{O_3}$ with iodine, the following product is obtained
The reaction of $HBr$ with $\begin{array}{*{20}{c}}
  {\,\,\,\,\,C{H_3}} \\ 
  | \\ 
  {C{H_3} - C = C{H_2}} 
\end{array}$ in the presence of peroxide will give
The total vapour pressure of a solution of liquid $A$ and liquid $B$ is $600\, torr$. The mole fraction of component $A$ in liquid phase is $0.7$. The vapour pressure of pure $A$ and $B$ are respectively