NEET 2023 Chemistry Gibbs Free Energy Numerical Question
The equilibrium concentrations of the species in the reaction A + B ⇌ C + D are 2, 3, 10 and 6 mol L⁻¹, respectively at 300 K. ΔG° for the reaction is (R = 2 cal / mol K)
-137.26 cal
-1381.80 cal
-13.73 cal
1372.60 cal
Correct Answer
Detailed Explanation
To solve the problem, we need to calculate the standard Gibbs free energy change () for the reaction given the equilibrium concentrations of the species involved.
The reaction is:
with the equilibrium concentrations provided as follows:
Step 1: Write the expression for the equilibrium constant ()
The equilibrium constant for the reaction can be expressed in terms of the equilibrium concentrations:
Substituting the given concentrations into this equation:
Step 2: Calculate
The relationship between the standard Gibbs free energy change and the equilibrium constant is given by the equation:
where:
- is the universal gas constant (given as ),
- is the absolute temperature (given as ),
- is the equilibrium constant we just calculated.
Substituting the values:
-
Calculate :
- Since :
-
Substitute into the equation for :
Thus, the calculated value for is .
Conclusion
The correct answer is B) -1381.80 cal.
Clarification of Other Options:
- A) -137.26 cal: This value is incorrect because it does not correspond to our calculated value. It might result from a calculation error or misunderstanding of the logarithmic relationship.
- C) -13.73 cal: This too is incorrect and likely results from miscalculating the logarithm or the Gibbs free energy equation.
- D) 1372.60 cal: This option is also incorrect. It is a positive value which contradicts the expected negative Gibbs free energy change for a spontaneous reaction at equilibrium.
Thus, the final answer to the problem is B) -1381.80 cal.
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