Home
Class 12
CHEMISTRY
For the reaction CO(g)+H(2)O(g) hArr C...

For the reaction
`CO(g)+H_(2)O(g) hArr CO_(2)(g)+H_(2)(g)`
at a given temperature, the equilibrium amount of `CO_(2)(g)` can be increased by

A

adding a suitable catalyst

B

adding an inert gas

C

decreasing the volume of the container

D

increasing the amount of CO(g)

Text Solution

Verified by Experts

The correct Answer is:
D

Adding reactant will drive the reaction in forward direction in order to restore equilibrium. Therefore, addition of CO(g) will increase the equilibrium amount of `CO_(2)`.
Promotional Banner

Topper's Solved these Questions

  • CHEMICAL EQUILIBRIUM

    VMC MODULES ENGLISH|Exercise JEE Advanced (Archive)|28 Videos
  • CHEMICAL EQUILIBRIUM

    VMC MODULES ENGLISH|Exercise FUNDAMENTAL|49 Videos
  • CHEMICAL EQUILIBRIUM

    VMC MODULES ENGLISH|Exercise Level 2|65 Videos
  • CHEMICAL BONDING-I & II

    VMC MODULES ENGLISH|Exercise JEE Advanced (Archive)|98 Videos
  • CHEMICAL KINETICS

    VMC MODULES ENGLISH|Exercise JEE Advanced (Archive)|52 Videos

Similar Questions

Explore conceptually related problems

For the reaction CO(g)+(1)/(2) O_(2)(g) hArr CO_(2)(g),K_(p)//K_(c) is

K_(p)//K_(c) for the reaction CO(g)+1/2 O_(2)(g) hArr CO_(2)(g) is

K_(p)//K_(c) for the reaction CO(g)+1/2 O_(2)(g) hArr CO_(2)(g) is

For the reaction, CO(g) +(1)/(2) O_2(g) hArr CO_2 (g), K_p//K_c is equal to

The value of K_(c) = 4.24 at 800 K for the reaction. CO(g) + H_(2)O(g) hArr CO_(2)(g)+H_(2)(g) Calculate equilibrium concentration of CO_(2), H_(2), CO and H_(2)O at 800K . If only CO and H_(2)O are present initially at concentrations of 0.10 M each.

For the reaction CaCO_(3)(s)hArrCaO(s)+CO_(2)(g) the equilibrium amount of CO_(2) can be increased by :

For the reaction CO_((g)) + (1)/(2) O_(2(g)) to CO_(2(g)) K_(p)//K_(c) is

In the reaction: 2CO(g) +O_(2)(g) hArr 2CO(g) , entropy decreases.

For the reaction C_(3)H_(8)(g)+5O_(2)(g)rarr3CO_(2)(g)+4H_(2)O(l) at constant temperature, DeltaH-DeltaU is

For the reaction C_(3)H_(8)(g) + 5 O_(2)(g) rightarrow 3CO_(2)(g) + 4 H_(2)O(l) at constant temperature , DeltaH - Delta E is

VMC MODULES ENGLISH-CHEMICAL EQUILIBRIUM-JEE Main (Archive)
  1. The equilibrium SO(2)Cl(2)(g) hArr SO(2)(g)+Cl(2)(g) is attained at 25...

    Text Solution

    |

  2. One mole of N(2)O(4)(g) at 300 K is kept in a closed container under o...

    Text Solution

    |

  3. For the reaction CO(g)+H(2)O(g) hArr CO(2)(g)+H(2)(g) at a given t...

    Text Solution

    |

  4. For the chemical reaction 3X(g)+Y(g) hArr X(3)Y(g), the amount of ...

    Text Solution

    |

  5. When two reactants A and B are mixed to give products C and D, the rea...

    Text Solution

    |

  6. In which reaction will an increase in the volume of the container favo...

    Text Solution

    |

  7. For the reaction SO(2)(g) +(1)/(2) O(2)(g) hArr SO(3)(g), if K(P)=K(C)...

    Text Solution

    |

  8. The standard Gibbs energy change at 300 K for the reaction 2A hArr B +...

    Text Solution

    |

  9. The equilibrium constant at 298 K for a reaction A +B hArr C+D is 100...

    Text Solution

    |

  10. At 320 K, a gas A(2) is 20% dissociated to A(g). The standard free ene...

    Text Solution

    |

  11. Consider the following reversible chemical reactions : A(2)(g)+B(2)...

    Text Solution

    |

  12. 5.1 g NH(4)SH is introduced in 3.0 L evacuated flask at 327^(@)C, 30%...

    Text Solution

    |

  13. Consider the reaction N2(g) + 3H2 (g) rarr 2NH3 (g) The equilibrium ...

    Text Solution

    |

  14. Two solids dissociates as follows A(s) rarr B(g) + C(g), K(P(1)) = x a...

    Text Solution

    |

  15. In a chemical reaction , A+2Boverset(K)hArr2c+D, the initial concent...

    Text Solution

    |

  16. K1and K2 are equilibrium constant for reactions (i) and (ii) N2(g) +...

    Text Solution

    |

  17. In which one of the following equilibria, K(p) = K(c) ?

    Text Solution

    |

  18. For the reaction 2SO(2)(g)+O(2)(g)=2SO(3)(g) deltaH=-57.2kJmol^(-1...

    Text Solution

    |

  19. S(s)+O(2)hArrSO(2)(g)" "K(1)=10^(52) 2S(s)+3O(2)hArr2SO(3)(g)" "...

    Text Solution

    |

  20. In the figure shown below reactant A (represented by square) is in equ...

    Text Solution

    |