Home
Class 12
CHEMISTRY
DeltaG^(@) of the cell reaction AgCl(s...

`DeltaG^(@)` of the cell reaction
`AgCl(s) + 1/2H_(2) rightarrow Ag(s) + H^(+) + Cl^(-)` is `-21.52kJ`.
`DeltaG^(@)` of 2AgCl(s) + H_(2)(g) rightarrow + 2H^(+) + 2Cl^(-)` is

A

`-21.52kJ`

B

`-10.76 kJ`

C

`-43.04kJ`

D

`43.04 kJ`

Text Solution

Verified by Experts

The correct Answer is:
C
Promotional Banner

Topper's Solved these Questions

  • ELECTROCHEMISTY

    GRB PUBLICATION|Exercise Faraday s Laws and Electrolysis|87 Videos
  • ELECTROCHEMISTY

    GRB PUBLICATION|Exercise Conductance and Kohlrausch s law|40 Videos
  • ELECTROCHEMISTY

    GRB PUBLICATION|Exercise Batteries|10 Videos
  • D-BLOCK ELEMENTS

    GRB PUBLICATION|Exercise Subjective Type|18 Videos
  • ENVIRONMENTAL CHEMISTRY

    GRB PUBLICATION|Exercise Straight objective type|40 Videos

Similar Questions

Explore conceptually related problems

Delta G^@ of the cell reaction AgCl (s) = 1/2 H_2 (g) =Ag(s) H^+ + Cl^(-) is -21 . 52 kJ . Delta G^2 of 2 AgCl (s) + H_2 (g) = 2 Ag(s) + 2 H^(+) 2 Cl^(-) is .

For the reaction , 2Agcl_((s)) + H_(2(g)) (1atm) rightarrow 2Ag_((s)) + 2H ^(+) (0.1M) + 2Cl^(-) (0.1M) DeltaG^(@) = -43600 J at 25^(@) C . Calculate the e.m.f. of the cell

The half cell reactions for rusting of iron are : 2H^(+) + 2e^(-) + (1)/(2)O_(2) rightarrow H_(2)O (l) , E^(@) = +1.23V Fe^(2+) + 2e^(-) + (1)/(2)rightarrow H_(2)O_(2) ((l)) , E^(@) = -0.44V Delta^(@) ((inKJ) for the reaction is : Fe+2H^(+) + (1)/(2) O_(2)rightarrow Fe^(+2)+ H_(2) O ((l))

If the DeltaG of a cell reaction AgCl+e^(-)toAg+Cl^(-) is -21.20 kJ, the standard emf of cell is

(a)For the reaction : 2AgCl (s) + H_(2)(g) (1 atm) to 2 Ag(s) + 2H^(+) (0.1M) + 2Cl^(-) (0.1M) , DeltaG^(@) = -43600J at 25^(@) C. Calculate the e.m.f. of the cell . [log 10^(-n) = -n ]. (b) Define fuel cell and write its two advantages.

GRB PUBLICATION-ELECTROCHEMISTY-Thermodynamics in Electrochemistry
  1. The temperatuer coefficient, of the emf, i.e., (dE)/(dt) = -0.00065 Vo...

    Text Solution

    |

  2. The standard emf of the cell. Cd(s) | CdCl(2) (aq) rightarrow 2Ag(s)...

    Text Solution

    |

  3. DeltaG^(@) of the cell reaction AgCl(s) + 1/2H(2) rightarrow Ag(s) +...

    Text Solution

    |

  4. The emf of the cell Zn|ZnCl(2) (0.05M) | AgCl(s),Ag is 1.015 V at 298 ...

    Text Solution

    |

  5. The Gibbs energy for the decomposition of Al(2)O(3) at 500^(@)C is as...

    Text Solution

    |

  6. Calculate the cell EMF in mV for Pt|H(2)(1atm)|HCl(0.01M)||AgCl(s)|A...

    Text Solution

    |

  7. What is cell entropy change of the following cell? Pt(s)|H(2)(g)|CH(3)...

    Text Solution

    |

  8. At 298 K the standard free energy of formation of H(2)O(l) is -237.20 ...

    Text Solution

    |

  9. The potential of the Daniel cell, Zn |(ZnSO(4))||(CuSO(4)|Cu was repor...

    Text Solution

    |

  10. Using the data in the preceding problem, calcualte the equilibrium con...

    Text Solution

    |

  11. DeltaG = DeltaH - TDeltaS and DeltaG + T[(d(DeltaG))/(dT)](p) then ((d...

    Text Solution

    |

  12. DeltaG is the available energy (energy produced) during the electochem...

    Text Solution

    |

  13. At 298 K the standard free energy of formation of H(2)O (l) is -237.20...

    Text Solution

    |

  14. DeltaG^(@) of the cell reaction AgCl(s) + 1/2H(2) rightarrow Ag(s) +...

    Text Solution

    |

  15. The EMF of an electrolytic cell does not depend upon:

    Text Solution

    |

  16. For the reaction: C(3)H(8)(g) + 5O(2)(g) rightarrow 3CO(2)(g) + 4H(2...

    Text Solution

    |

  17. Ag^(aq) + e^(-) rightarrow Ag(s) E69@) = 0.80 V Mg^(2+)(aq) + 2e^(-)...

    Text Solution

    |

  18. What is the DeltaG^(@) value for the electrochemical cell below? Cu(...

    Text Solution

    |

  19. 10Cl^(-)(aq) + 2MnO(4)^(-)(aq) + 16H^(+)(aq) rightarrow 5Cl(2)(g) + 2M...

    Text Solution

    |

  20. The standard potential for the reaction, Cl(2)(g) + 2Br^(-)(aq) righ...

    Text Solution

    |