17.9
The standard free energy change for a reaction can only be determined if it occurs under standard state conditions—when both the reactants and products are in their standard states. However, most chemical reactions do not occur under these conditions.
Under any conditions—standard or nonstandard—the relative amount of products and reactants present in a reaction is described by the reaction quotient, Q.
For reactions occurring in solution, Q is calculated from the ratio of the product and reactant concentrations, with each reagent concentration raised to the power of its stoichiometric coefficient. For gaseous reactions, the partial pressures of the gases can be used in place of concentrations.
The free energy change of a reaction is equal to the sum of the standard-state free energy change for the reaction, delta G naught, and RT times the natural log of Q. Here, R is the universal gas constant in joules per mole-kelvin, and T is the temperature of the reaction in kelvin.
At constant temperature, the standard-state free energy has a fixed value, but Q varies because it depends on the composition of the reaction mixture.
Consider the synthesis of ammonia gas from nitrogen and hydro
The free energy change for a process taking place with reactants and products present under nonstandard conditions (pressures other than 1 bar; concen…
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