Home
Class 12
CHEMISTRY
The composition of the equilibrium mixtu...

The composition of the equilibrium mixture (`Cl_(2)` `2Cl`) , which is attained at `1200^(@)C`, is determined by measuring the rate of effusion through a pin hole. It is observed that a `1.80 mm Hg` pressure, the mixture effuses `1.16 times` as fact as krypton effuses under the same conditions. Calculate the fraction of chlorine molecules dissociated into atoms (atomic weight of `Kr` is `84`).

Text Solution

Verified by Experts

The correct Answer is:
0.137
Promotional Banner

Topper's Solved these Questions

  • GASEOUS STATE

    MOTION|Exercise EXERCISE-4( LEVEL-I)|15 Videos
  • GASEOUS STATE

    MOTION|Exercise EXERCISE-4( LEVEL-II)|19 Videos
  • GASEOUS STATE

    MOTION|Exercise EXERCISE-2(LEVEL-II)|35 Videos
  • ELECTROCHEMISTRY

    MOTION|Exercise EXERCISE-4,II|44 Videos
  • GOC

    MOTION|Exercise Exercise - 4 Level - II|14 Videos

Similar Questions

Explore conceptually related problems

The composition of the equilibrium mixture for the equilibrium Cl_(2) hArr 2 Cl at 1400 K may be determined by the rate of diffusion of mixture through a pin hole. It is found that at 1400 K, the mixture diffuses 1.16 times as fast as krypton diffuses under the same conditions. Find the degree of dissociation of Cl_(2) equilibrium

The composition of the equilibrium mixture for the equilibrium Cl_(2)hArr2Cl at 1470^(@)K , may be determined by the rate of diffusion of mixture through a pin hole. It is found that at 1470^(@)K , the mixture diffuses 1.16 times as fast as krypton (83.8) diffuses under the same conditions. Calculate the % degree of dissociation of Cl2 at equilibrium.

At 800^(@)C, the following equilibrium is established as F_(2)(g)hArr2F(g) The cojmpositionof equilibrium may be determinded by measuring the rate of effusion of theh kmixture through a pin hole. It is found that at 800^(@)C and 1 atm mixture effuses 1.6 times as fast as SO_(2) effuse under the similar conditions. (At. mass of F = 19 ) what is the value of K_(p) (in atm) ?

1 litre of oxygen effuses through a small hole in 60 min. and a litre of helium at the same temperature and pressure effuses through the same hole in 21.2 min. What is the atomic weight of Helium -

MOTION-GASEOUS STATE -EXERCISE-3
  1. Pure O(2) diffuses through an aperture in 224 second, whereas mixture ...

    Text Solution

    |

  2. Find he number of diffusion steps required to separated the isotopic m...

    Text Solution

    |

  3. The composition of the equilibrium mixture (Cl(2) 2Cl) , which is att...

    Text Solution

    |

  4. A mixture of CH(4) & O(2) is used as an optimal fuel if O(2) is presen...

    Text Solution

    |

  5. A 50 litre vessel is equally divided into three parts with the help of...

    Text Solution

    |

  6. Calculate the temperature values at which the molecules of the first t...

    Text Solution

    |

  7. Calculate the temperature at which the root mean square velocity, the ...

    Text Solution

    |

  8. Calculate the fraction of N(2) molecules at 101.325 kPa and 300K whose...

    Text Solution

    |

  9. The density of mercury is 13.6g//mc^(3).Estimate the b value.

    Text Solution

    |

  10. Calculate from the vander wall's equation, the temperature at which 19...

    Text Solution

    |

  11. The molar volume of He at 10 .1325MP and 273K is 0.011075 of its molar...

    Text Solution

    |

  12. N(2) molecule is spherical of radius 100 pm. What is the volume of m...

    Text Solution

    |

  13. N(2) molecule is spherical of radius 100 pm. What is the value of va...

    Text Solution

    |

  14. The density of water vapour at 327.6 atm and 776.4 K is 133.2 gm//dm^(...

    Text Solution

    |

  15. At 273.15K and under a pressure of 10.1325 Mpa, the compressibility fa...

    Text Solution

    |

  16. 1 mol of C Cl(4) vapours at 77^(@)C occupies a volume of 35.0 L. If va...

    Text Solution

    |

  17. 1 mol of C Cl(4) vapours at 77^(@)C occupies a volume of 35.0 L. If va...

    Text Solution

    |

  18. The vander waals constant for O(2) are a = 1.36 atm L^(2) mol^(-2) a...

    Text Solution

    |

  19. The vander Waals constants for gases A,B and C are as follows Gas ...

    Text Solution

    |

  20. The vander Waals constants for gases A,B and C are as follows Gas ...

    Text Solution

    |