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STATEMENT-1: For a given reaction at fix...

STATEMENT-1: For a given reaction at fixed temperatures, equlibrium constants `K_(rho)and K_(c)` are realated as `K_(rho)=K_(c)(RT)^(Deltan)`
STATEMENT-2: ` Deltan=No.` of moles of product - No of moles of reactants.

A

Statement-1 is True, Statement-2 is True, Statement-2 is a correct explanation for Statement-1

B

Statement-1 is True, Statement-2 is True, Statement-2 is NOT a correct explanation for Statement-1

C

Statement-1 is True, Statement-2 is False

D

Statement-1 is False, Statement-2 is True

Text Solution

Verified by Experts

The correct Answer is:
C
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For a given reversible reaction at a fixed temperature, equilibrium constants K_(p) and K_(c) are related by ………

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

Knowledge Check

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

    A
    number of moles of gaseous reactants-number of moles of gaseous products in a balanced equation
    B
    number of moles of gaseous products number of moles of gaseous reactants in a balanced equation
    C
    number of moles of gaseous products `xx` number of moles of gaseous reactants in a balanced equation
    D
    number of moles of gaseous reactants + number of moles of gaseous products in balanced equation
  • K_(p)andK_(c) are related by K_(p)=K_(c)(RT)^(Deltan) . Under what practical condition/s, K_(p)=K_(c) ?

    A
    RT = 1
    B
    T = 12K
    C
    `Deltan = 0`
    D
    `Rprop1/T`
  • Assertion : For a gaseous reaction : 2B to A , the equilibrium constant K_p is less than K_c . Reason: K_p is related to K_c as K_p=K_c(RT)^(Deltan_g)

    A
    Assertion and reason both are correct statements and Reason is correct explanation for assertion.
    B
    Assertion and reason both are correct statement but reason is not correct explanation for assertion
    C
    Assertion is correct statement but reason is wrong statement.
    D
    Assertion is wrong statement but reason is correct statement
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    Assertion : For a gaseous reaction, 2A to B , the equilibrium constant K_p is less than K_c . Reason : K_p is related to K_c as K_p = K_c (RT)^(Delta n_g)

    K_(p) and K_(c) are inter related as K_(p)=K_(c)(RT)^(Deltan) Answer the following questions: Which of the following have same units K_(p) ?

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    K_(p) and K_(c) are inter related as K_(p)=K_(c)(RT)^(Deltan) Answer the following questions: In which of the following equilibria K_(p) is less than K_(c) ?

    In which of the following equlibrium K_(c)and K_(p) are not equal