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Statement -1 Kp can be equal to or less ...

Statement -1 `K_p` can be equal to or less than or greater than `K_c`. And
Statement -2 : `K_p =K_c(RT)^(Deltang)`, thus `K_p and K_c` depend upon temperature

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Assertion (A) : K_(p) can be equal to or less than or even greater than value of K_(c) Reason (R) : K_(p)=K_(c)(RT)^(Deltan) Relation between K_(p) and K_(c) depends on the change in the number of moles of gaseous reactants and products.

Define K_p and K_c .

In K_(p)=K_(c)(RT)^(Deltan) , Deltan may have:

In the relation, K_(p)=K_(c)(RT)^(Deltan) the value of Deltan is

In the relation, K_(p)=K_(c)(RT)^(Deltan) the value of Deltan is

Relation between K_C and K_p- .

Assertion : K_(p) can be less than, greater than or equal to K_(c) Reason : Relation between K_(p)andK_(c) depends on the change in number of moles of gaseous reactants and products (Deltan) .