The endothermic reaction $(M + N \rightleftharpoons P)$ is allowed to attain an equilibrium at $25^o C$. Formation of $P$ can be increased by

  • A
    Raising temperature
  • B
    Lowering temperature
  • C
    Keeping temperature constant
  • D
    Decreasing the concentration of $M$ and $N$

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The reaction $CaCO_3 \rightleftharpoons CaO + CO_2$ goes to completion in an open vessel because:

Match List-$I$ (Equilibrium) with List-$II$ (Conditions for the process) and select the correct answer from the options given below.
List-$I$ (Equilibrium) List-$II$ (Conditions for the process)
$P. A_{2(g)} + B_{2(g)} \rightleftharpoons 2AB_{(g)}$ (Endothermic) $1. \text{High temperature}$
$Q. 2AB_{2(g)} + B_{2(g)} \rightleftharpoons 2AB_{3(g)}$ (Exothermic) $2. \text{Low temperature}$
$R. 2AB_{3(g)} \rightleftharpoons A_{2(g)} + 3B_{2(g)}$ (Endothermic) $3. \text{High temperature}$
$4. \text{Low temperature}$
$5. \text{Independent of pressure}$

The equilibrium constant $K$ and reaction quotient $Q$ are in the ratio $K : Q = 0.33 : 1$. This means that:

State the optimum pressure and temperature for the production of ammonia by the Haber process.

In the equilibrium $N_{2(g)} + 3H_{2(g)} \rightleftharpoons 2NH_{3(g)} + 22 \ kcal$,the formation of ammonia is favored by:

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