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For a given reversible reaction at a fix...

For a given reversible reaction at a fixed temperature, equilibrium constants `K_(p)` and `K_(c)` are related by ………

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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.

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.

The relationship between equilibrium constants K_(p) "and" K_(c) for a gaseous reaction is:

The equilibrium constant (K_(P)) of a gaseous reaction is-

For a gaseous reaction 2BtoA ,the equilibrium constant K_(p) is ……to/than K_(c)

For a gaseous reaction 2B rarr A , the equilibrium constant K_(p) is ……… to // than K_(c) .

For a gaseous reaction 2B rarr A , the equilibrium constant K_(p) is ……… to // than K_(c) .

For a reversible reaction at 298 K the equilibrium constant K is 200. What is value of DeltaG^(@) at 298 K ?