Home
Class 11
CHEMISTRY
The equilibrium constant K(p) for the fo...

The equilibrium constant `K_(p)` for the following rection at `191^(@)C` is 1.24. what is`K_(c)`?
`B(s)+(3)/(2)F_(2)(g)hArrBF_(3)(g)`

A

`6.7`

B

`0.61`

C

`8.30`

D

`7.6`

Text Solution

Verified by Experts

The correct Answer is:
d
Promotional Banner

Topper's Solved these Questions

  • CHEMICAL EQUILIBRIUM

    NARENDRA AWASTHI|Exercise Level 1 (Q.93 To Q.122)|1 Videos
  • CHEMICAL EQUILIBRIUM

    NARENDRA AWASTHI|Exercise Level 2|1 Videos
  • ATOMIC STUCTURE

    NARENDRA AWASTHI|Exercise level 2|1 Videos
  • DILUTE SOLUTION

    NARENDRA AWASTHI|Exercise Level 3 - Match The Column|1 Videos

Similar Questions

Explore conceptually related problems

The following equilibrium constants were determined at 1120k : 2CO_((g)) hArr C_((s)) + CO_(2(g)) , Kp_(I) = 10^(-14) atm^(-1) , CO_((g)0 + Cl_(2(g)) hArr COCl_(2(g)) , Kp_(2) = 6 xx 10^(-3) atm^(-1) What is the equilibrium constant Kc for the following reaction at 1120K: C_((s)) + CO_(2(g)) + 2Cl_(2(g)) hArr 2CO_(2) Cl_((g))

Passage: When all the coefficients in a balanced chemical equation are multiplied by a constant factor X the equilibrium constant (originally K) becomes K^J . Similarly, when balanced equations are added together, the equilibrium constant for the combined process is equal to the product of the equilibrium constants for each step. Equilibrium constant of the reversed reaction is numerically equal to the reciprocal of the equilibrium constant of the original equation. Unit of K_p = ("atm")^(Deltan) , Unit of K_c =("mol" L^(-1))^(Deltan) Consider the two reactions: XeF_(6(g))+H_(2)O_((g)) harr XeOF_(4(g))+2HF_((g)), K_(1)" "XeO_(4(g))+XeF_(6(g)) harr XeOF_(4(g))+XeO_(3)F_(2(g)), K_(2) Then the equilibrium constant for the following reaction will be XeO_(4(g))+2HF_((g)) harr XeO_(3)F_(2(g))+H_(2)O_((g))

At 500K, K_(p) value for the reaction 2SO_(2)(g)+O_(2)(g)hArr2SO_(3)(g) is 2.5xx10^(10) . Find the value of K_(p) for each of followign reactions at the same temperature. a. SO_(2)(g)+1//2O_(2)(g)hArrSO_(3)(g) b. SO_(3)(g)hArrSO_(2)(g)+1//2O_(2)(g) c. 3SO_(2)(g)+3//2O_(2)(g)hArr3SO_(3)(g)

Write the equations for the conversion of K_(c) d to K_(p) for each of the following reaction. C_(3)H_(8)(g)+5O_(2)(g)hArr3CO_(2)(g)+4H_(2)O(g)

The equilibrium constant K_(c) for the reaction P_(4(g)) hArr 2P_(2(g)) is 1.4 at 400^(@) C. Suppose that 3 moles of P_(4(g)) and 2 moles of P_(2(g)) are mixed in 2 litre container at 400^(@) C. What is the value of reaction quotient (Q_(c)) ?

At 1000 K, if the equilibrium constant K_(p) for the reaction. 2NOCl(g)hArr2NO(g)+Cl_(2)(g) is 4.157xx10^(-4) bar, the K_(c) (in mol L^(-1) ) is (R = 0.083 L bar K^(-1)mol^(-1) )

Write the equations for the conversion of K_(c) d to K_(p) for each of the following reaction. CO(g)+H_(2)O(g)hArrCO_(2)(g)+H_(2)(g)