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Write the relation between kp and Kc for...

Write the relation between `k_p and K_c` for the following reactions.
(i) `N_2(g) +3H_2(g) hArr 2NH_3(g)`
(ii) `2H_2O(g) hArr 2H_2(g) +O_2(g)`

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AI Generated Solution

To find the relation between \( K_p \) and \( K_c \) for the given reactions, we can use the formula: \[ K_p = K_c (RT)^{\Delta N_g} \] where: - \( R \) is the universal gas constant, ...
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Write the relation between K_(p)and K_(c) for the following reactions (i) N_(2)(g)+3H_(2)(g)hArr2H_(2)(g)+O_(2)(g) (ii) 2H_(2)O(g)hArr2H_(2)(g)+O_(2)(g)

Write the equilibrium constant expressions for the following reactions : (i) 1/2N_2(g)+3/2H_2(g) hArr NH_3(g) (ii) 2H_2O(g) hArr 2H_2(g)+O_2(g)

Write the relation between K_(p) " and " K_(c) for the reaction: N_(2)(g) +3H_(2) (g) hArr 2NH_(3)(g)

Write the relationship between K_p and K_c for the reaction 2SO_2(g) +O_2(g) hArr 2SO_3(g)

Write the relation between K_(p) " and "K_(c) for the following reactions : "(i)"" " PCI_(5) (g) hArr PCI_(3)(g) +CI_(2) (g) "(ii)"" "N_(2)(g) +3H_(2)(g) hArr 2NH_(3)(g) "(iii)"" "2H_(2)O(g) hArr 2H_(2)(g) +O_(2)(g) "(iv)"" "H_(2)(g) + I_(2)(g) hArr 2HI(g)

For the reaction N_(2)(g) + 3H_(2)(g) hArr 2NH_(3)(g), DeltaH=?

K_p is how many times equal to K_c for the given reaction ? N_2(g) +3H_2 (g) hArr 2NH_3(g)

What will be the effect of increased pressure on the following equilibria : (i) N_2(g) + 3H_2(g) hArr 2NH_3(g) (b) N_2O_4(g) hArr 2NO_2(g) (iii) 2SO_2(g) + O_2(g) hArr 2SO_3(g) (iv) H_2(g) +I_2(g) hArr 2HI(g)

The equilibrium constants for the following reactions N_(2) (g) + 3H_(2)(g) hArr 2NH_(3) (g) N_(2) (g) + O_(2) (g) hArr 2NO(g) " and " H_(2)(g) +1//2 O_(2) (g) hArr H_(2)O (Ig) " are " K_(1) ,K_(2) " and " K_(3) respectively. The equilibrium constant (K) for the reaction 2NH_(3) (g) + 2^(1)//2) O_(2) (g) hArr 2NO(g) +3H_(2) O(I) " is "

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