Q.Match standard free energy of the reaction with the corresponding equilibrium constant.
Column I
Column II
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Start your 14-day free trial to unlock the full solution →The sign of determines whether products or reactants are favored at equilibrium through the relationship . Matching: (i)→(d), (ii)→(a), (iii)→(b).
Why Gibbs Free Energy and the Equilibrium Constant Are Connected
At equilibrium, a reaction has no driving force to proceed in either direction—the system has minimized its free energy. The standard Gibbs free energy change tells us how far the equilibrium position lies from a 1:1 mixture of products and reactants (all at unit activity). The equilibrium constant quantifies exactly that position: the ratio of product activities to reactant activities when the system settles.
The bridge between them is:
where is the gas constant, is temperature, and is the equilibrium constant. This equation reveals that the sign and magnitude of directly encode whether products () or reactants () dominate at equilibrium.
Step-by-Step Matching
1. Start with the fundamental relationship
Rearrange the formula to isolate :
Since is always positive (temperature in Kelvin, ), the sign of controls the exponent and thus the value of .
2. Case (i):
When is positive, the exponent becomes negative. An exponential with a negative argument gives a number between 0 and 1:
This means reactants are favored at equilibrium. The reaction is non-spontaneous in the forward direction under standard conditions.
Match: (i) → (d)
3. Case (ii):
When is negative, the exponent becomes positive:
Products are favored. The reaction proceeds spontaneously forward under standard conditions, and at equilibrium the product concentrations significantly exceed those of reactants.
Match: (ii) → (a)
4. Case (iii):
When is exactly zero:
…
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