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{:("11. "K(p),"a. homogeneous equilibriu...

`{:("11. "K_(p),"a. homogeneous equilibrium"),("12. "CaCO_(3)hArr CaO_((s))+CO_(2(g)),"b. active mass of reactants"),("13. Rate of reaction","c. irreversible reaction"),("14. "H_(2(g))+I_(2(g))hArr 2HI_((g)),"d. Degree of dissociation"),("15. "C_((s))+O_(2(g))rarr CO_(2(g)),"e. "K_(C )(RT)^(Deltan)),(,"f. Heterogeneous equilibrium"):}`

Answer

Step by step text solution for {:("11. "K_(p),"a. homogeneous equilibrium"),("12. "CaCO_(3)hArr CaO_((s))+CO_(2(g)),"b. active mass of reactants"),("13. Rate of reaction","c. irreversible reaction"),("14. "H_(2(g))+I_(2(g))hArr 2HI_((g)),"d. Degree of dissociation"),("15. "C_((s))+O_(2(g))rarr CO_(2(g)),"e. "K_(C )(RT)^(Deltan)),(,"f. Heterogeneous equilibrium"):} by CHEMISTRY experts to help you in doubts & scoring excellent marks in Class 11 exams.

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Explore conceptually related problems

For the equilibrium reaction H_(2(g))+I_(2(g))hArr 2HI_((g))

In the heterogenous equilirbium CaCO_(3(s))hArr CaO_((s))+CO_(2(g)) the K_(eq) value is given by

Knowledge Check

  • For the reaction, CaCO_(3(g))hArrCaO_((s))+CO_(2(g))K_(p) is equal to

    A
    `K_(c)`
    B
    `K_(c)RT`
    C
    `K_(c)(RT)^(2)`
    D
    `K_(c)(RT)^(-)`
  • K_(c)/K_(p) for the reaction, N_(2)(g)+3H_(2)(g)hArr2NH_(3)(g) is :

    A
    `1/(RT)`
    B
    `sqrt(RT)`
    C
    RT
    D
    `(RT)^(2)`
  • (K_(c))/(K_(p)) for the reaction, N_(2)(g)+3H_(2)(g)hArr2NH_(3(g)) is

    A
    `(1)/(RT)`
    B
    `sqrt(RT)`
    C
    RT
    D
    `(RT)^(2)`
  • Similar Questions

    Explore conceptually related problems

    Derive the K_(P) and K_(c) for the following equilibrium reaction. H_(2(g))+I_(2(g))hArr2HI_((g))

    The expression of K_p for the reversible reaction 2CO (g) hArr CO_2 (g) +C(s)

    For the reaction H_(2) (g) + I_(2) (g) hArr 2 HI (g) , the equilibrium constant K_(C) is ………

    For the reversible reaction N_(2(g))+3H_(2(g))hArr2NH_(3(g))+"Heat" . The equilibrium shifts in forward direction.

    K_C/K_P for the reaction, N_2(g) + 3H_2(g) hArr 2NH_3(g) is ……………………. .