MCQ
Which comp. is virtually Non basic
  • A

  • B

  • C


Answer

Correct option: D.

d

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

What is the product obtained from the following reaction
In the reaction $HAs{O_2} + S{n^{2 + }} \to As + S{n^{4 + }} + {H_2}O$ oxidising agent is
The sulphate of a metal $M$ contains $9.87\%$ of $M$. This sulphate is isomorphous with $ZnS{O_4}.7{H_2}O$. The atomic weight of $M$ is
Heat treatment of muscular pain involves radiation of wavelength of about $900\,nm.$ Which spectral line of $H -$ atom is suitable for this purpose?

$[{R_H} = 1 \times {10^5}\,c{m^{ - 1}},\,h\, = 6.6\, \times {10^{ - 34}}\,Js\,\,c = 3\, \times \,{10^8}\,m{s^{ - 1}}]$

A fish swimming in water body when taken out from the water body is covered with a film of water of weight $36\, g$. When it is subjected to cooking at $100^{\circ} C$, then the internal energy for vaporization in $kJ mol ^{-1}$ is $......$ [nearest integer]

[Assume steam to be an ideal gas. Given $A _{ vap } H ^{\ominus}$ for water at $373 \,K$ and $1\, bar$ is $41.1 \,kJ\, mol ^{-1} ; R =$ 8.31 $J\,K ^{-1} \,mol ^{-1}$ ]

Correct order of acidic strength is ?
Molarity $(M)$ of an aqueous solution containing $\mathrm{x} g$ of anhyd. $\mathrm{CuSO}_4$ in $500 \mathrm{~mL}$ solution at $32^{\circ} \mathrm{C}$ is $2 \times 10^{-1} \mathrm{M}$. Its molality will be. . . . . .$\times 10^{-3} \mathrm{~m}$ (nearest integer). [Given density of the solution $=1.25 \mathrm{~g} / \mathrm{mL}$.]
Which of the following molecule possesses a bond formed by $sp^2-sp$ orbital overlap ?
Consider a reaction $\mathrm{aG}+\mathrm{bH} \rightarrow$ Products. When concentration of both the reactants $\mathrm{G}$ and $\mathrm{H}$ is doubled, the rate increases by eight times. However, when concentration of $\mathrm{G}$ is doubled keeping the concentration of $\mathrm{H}$ fixed, the rate is doubled. The overall order of the reaction is
$IUPAC$ name of the ${(C{H_3})_2}CHCH{(C{H_3})_2}$ is