MCQ
If pressure increases then its effect on given equilibrium $C_{(s)} + {H_2}O_{(g)}$ $\rightleftharpoons$ $CO_{(g)} + {H_2}_{(g)}$  it is satisfied in
  • A
    Forward direction
  • B
    Backward direction
  • C
    No effect
  • D
    None of these

Answer

$C _{( s )}+ H _2 O _{( g )} \rightleftharpoons CO _{( g )}+ H _{2( g )}$

According to Le-Chatelier's principle, the reactions in which number of moles of gaseous reactions are less than number of gaseous moles of products, such reactions are favored at low pressure.

$\therefore$ The equilibrium will shift in backward direction at high pressure.

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

Calculate the $\Delta _fH^o$ of $N_2H_4(g)$ if

$B.E(N -N) = 159\, kJ\, mol^{-1}$,

$B.E(H -H) = 436\, kJ\, mol^{-1}$

$B.E.(N \equiv  N) = 941\, kJ\, mol^{-1}$,

$B.E(N -H) = 398\, kJ\, mol^{-1}\, .......\,kJ\, mol^{-1}$

Among the following, the compound that undergoes nitration readily is
Which of the following is non-polar
In equilibrium $C{H_3}COOH + {H_2}O$ $\rightleftharpoons$ $C{H_3}COO + H_3 O^ +$ The equilibrium constant may change when
$L-$isomer of a compound $'A'$ $\left( C _{4} H _{8} O _{4}\right)$ gives a positive test with $\left[ Ag \left( NH _{3}\right)_{2}\right]^{+}$. Treatment of $'A'$ with acetic anhydride yield triacetate derivative. Compound $'A'$ produces an optically active compound $(B)$ and an optically inactive compound $(C)$ on treatment with bromine water and $HNO _{3}$ respectively, compound $( A )$ is ....
If salt $Q$ undergoes redox reaction with $H_2S$ in acidic medium then which of the following species can not be possible product?
Primary aldehyde on oxidation gives
The coordination number of $\mathrm{Al}$ in the crystalline state of $\mathrm{AlCl}_3$ is
Which molecule $AX_3$, $AX_4$, $AX_5$, $AX_6$ is most likely to have a trigonal bipyramidal structure if $A$ has no lone pair ?
Match complex ion (in List $I$) with number of unpaired electrons (in List $II$)

  List-$I$   List-$II$
$A$ $[Fe(H_2O)_6]^{2+}$ $P$ $0$
$B$ $[Fe(H_2O)_6]^{3+}$ $Q$ $1$
$C$ $[Fe(CN)_6]^{4-}$ $R$ $2$
$D$ $[Fe(CN)_6]^{3-}$ $S$ $4$
$E$ $[Ni(H_2O)_4]^{2+}$ $T$ $5$

$A$   $||$   $B$  $||$   $C$  $||$   $D$   $||$  $E$