MCQ
Match the column?
Column $-I$ Column $-II$
$(A)$ Ionisation potential $(P)\;  O < F < N$
$(B)$ Electronegativity $(Q)\;  N < O < F$
$(C) \;Z_{eff}$ $(R) \;O < N < F$
$(D)$ Electron affinity $(S)\; N < C< O$
  • A
    $A-P,\,\, B-Q,\,\, C-S,\,\, D-R$
  • $A-R,\,\, B-Q,\,\, C-Q,\,\, D-Q,S$
  • C
    $A-P,\,\, B-Q,\,\, C-Q,\,\, D-R$
  • D
    $A-R,\,\, B-Q,R,\,\, C-P,\,\, D-S$

Answer

Correct option: B.
$A-R,\,\, B-Q,\,\, C-Q,\,\, D-Q,S$
b
$ I.E.\,\,\to \,\, O < N < F$

$E.N.\,\,\to \,\, N < O < F$

$Z_{eff}\,\,\to \,\, N < O < F$

$EA\,\,\to \,\, N < C < O$

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

$1$.  $KClO_3 \xrightarrow{\Delta } $

$2$.  $XeF_2 \xrightarrow{H_2O} $

$3$.  $XeF_4 \xrightarrow{H_2O} $

$4$. $PbO_2 \xrightarrow{\Delta } $

$5$. $XeF_6 \xrightarrow{H_2O} $

In how many of the above processes, $O_2$ will be one of the products

Which of the following is known as hydronium ion
The boiling point of $C_6H_6,\,CH_3OH,\,C_6H_5NH_2$ and $C_6H_5NO_2$ are $80\,^oC,\,65\,^oC,\,184\,^oC$ and $212\,^oC$ respectively. Which will show highest vapour pressure at room temperature ?
The energy of separation of an electron in a Hydrogen like atom in excited state is $3.4\, eV$. The de-Broglie wave length (in $\mathop A\limits^o $) associated with the electron is (Given radius of first orbit of $H-$ atom is $0.53\,\mathop A\limits^o $)
The reaction of chloroform with alcoholic $KOH$ and $p$ -toluidine forms
Which is the strongest acid ? ($pKa$ value is given in the bracket)
$CO$ has same electrons as or the ion that is isoelectronic with $CO$ is
$5\,mole$ of $A$, $6\, moles$ of $B$ and excess amount of $C$ are mixed to produce a final product $D$, according to the reaction 
$A + 2B \to I$
$I + C \to B + D$
What is the maximum moles of $D$ can be produced assuming that the products formed can also be reused in the reactions ? .............. $\mathrm{moles}$
Select the incorrect graph for velocity of $e^-$ in an orbit vs. $ Z, \frac {1}{n}$ and $n$ 
An acidified solution of $0.05 M Zn ^{2+}$ is saturated with $0.1 M H _2 S$. What is the minimum molar concentration ($M$) of $H ^{+}$required to prevent the precipitation of $ZnS$ ?Use $K_{ sp }( ZnS )=1.25 \times 10^{-22}$ and
Overall dissociation constant of $H _2 S , K_{ NET }=K_1 K_2=1 \times 10^{-21}$