MCQ
Assign true $(T)$ and false $(F)$ for following statements and select correct option for your answer

$(a)\, IP$ of $O_{(g)}$ is less than $IP$ of $O_{(g)}^ - $
$(b)\, IP$ of $Ne_{(g)}$ is greater than $IP$ of $Ne_{(g)}^ + $
$(c)\, EA$ of $O_{(g)}^ + $ is greater than $EA$ of $O_{(g)}$
$(d)\, IP$ of $N_{(g)}$ is greater than $IP$ of $N_{(g)}^ + $

  • A
    $T T F F$
  • $F F T F$
  • C
    $F T T F$
  • D
    $F T T T$

Answer

Correct option: B.
$F F T F$
b
If an atom and it's ion is given then $IP$ is decided by $Z_{eff}$ 

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

How does the energy gap between successive energy levels in an atom vary from low to high $n$ values?
Supersonic jets cause pollution by thinning of :
The number of angular nodes and radial nodes in $3 s$ orbital are
$IUPAC$ name of following compound is
A $1\, M$ solution of glucose reaches dissociation equilibrium according to equation given below $6HCHO$ $\rightleftharpoons$ ${C_6}{H_{12}}{O_6}$. What is the concentration of $HCHO$ at equilibrium if equilibrium constant is $6 \times {10^{22}}$
Work done in vaporisation of one mole of water at $373\, K$ and the pressure of $1\, atm$ is approximately (for ideal gas)......$Joule$
Which among the following statements is incorrect for magnesium metal?
All electrons on the $4p$ sub-shell must be characterized by the quantum number $(s)$
Calculate $\Delta H \,(kJ/mole)$ for the reaction :-
$2FeO_{(s)} + \frac{1}{2}\, O_{2(g)} \to Fe_2O_{3(g)}$

Given                                                                                                   $\Delta H$

$(i)\, Fe_2O_{3(s)}+3C_{(graphite)} \to 2Fe_{(s)} + 3CO_{(g)}$         $492\, kJ/mol$

$(ii)\, FeO_{(s)}+C_{(graphite)} \to Fe_{(s)} + CO_{(g)}$                     $156\, kJ/mol$

$(iii)\, C_{(graphite)} + O_{2(g)} \to CO_{2(g)}$                                   $-393 \,kJ/mol$

$(iv)\, CO_{(g)} + \frac{1}{2}\, O_{2(g)} \to CO_{2(g)}$                            $-283\, kJ/mol$

Which of the following will not show geometrical isomerism ?