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K(p) for the reaction N(2)+3H(2) hArr 2N...

`K_(p)` for the reaction `N_(2)+3H_(2) hArr 2NH_(3)` at `400^(@)C` is `1.64xx10^(-4)`. Find `K_(c)`. Also find `DeltaG^(ɵ)` using `K_(p)` and `K_(c)` values and interpret the difference.

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`K_(c)=0.5006 mol^(-2) litre^(+2)`, `+11.733kcal`, `+931 cal` ,
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K_(p) for the reaction N_(2)+3H_(2) hArr 2NH_(3) at 400^(@)C is 1.64xx10^(-4) . Find K_(c) . Also find DeltaG^(ɵ) using K_(p) and K_(c) values and interprest the difference.

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P BAHADUR-CHEMICAL EQUILIBRIUM-Exercise
  1. DeltaG^(@) for (1)/(2)N(2)+(3)/(2)H(2)hArrNH(3) is -16.5 kJmol^(-1). F...

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  2. For gasesous reaction A+BhArrC, the equilibrium concentration of A and...

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  3. K(p) for the reaction N(2)+3H(2) hArr 2NH(3) at 400^(@)C is 1.64xx10^(...

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  4. Equilibrium constant (K(p)) for 2H(2)S((g))hArr2H(2(g))+S(2(g)) is 0.0...

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  5. H(2) and I(2) are mixed at 400^(@)C in a 1.0 L container, and when equ...

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  6. 0.0755 g of selenium vapours occupying a volume of 114.2 mL at 700^(@)...

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  7. COG(2(g)) in presence of catalyst at 1000^(@)C shows the equilibrium: ...

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  8. For NH(4)HS(s) hArr NH(3)(g)+H(2)S(g), the observed, pressure for reac...

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  9. When 20 g of CaCO(3) were put into 10 litre flask and heated to 800^(@...

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  10. Some acid NH(4)HS is placed in flask containing 0.5 atm of NH(3). What...

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  11. To the system, LaCl(3)(s)+H(2)O(g) hArr LaClO(s)+2HCL(g)-"Heat" alre...

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  12. At a certain temperature , K(p) for dissociation of solid CaCO(3) is 4...

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  13. Solid Ammonium carbamate dissociates as: NH(2)COONH(4)(s)hArr2NH(3)(...

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  14. In the preparation of CaO from CaCO(3) using the equilibrium, CaCO(3...

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  15. A vessel of 2.50 litre was filled with 0.01 mole of Sb(2)S(3) and 0.01...

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  16. Sulphide ions in alkaline solution react with solid sulphur to form po...

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  17. Calculate K(c ) for the reaction KI + I(2) hArr KI(3). Given that init...

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  18. To 500 mL of 0.150 M AgNO(3) solution were added 500 mL of 1.09 M Fe^(...

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  19. A saturated solution of iodine in water contain 0.330g I(2) per litre....

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  20. For the equilibrium: LiCl.3NH(3(s))hArrLiCl.NH(3(s))+2NH(3), K(p)=9 ...

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