(a)
Interpretation:
For the following reaction, the
Concept introduction:
Entropy is the measure of randomness in the system. Standard entropy change in a reaction is the difference in entropy of the products and reactants.
Where,
Standard entropy change in a reaction and entropy change in the system are same.
(b)
Interpretation:
For the following reaction, the
Concept introduction:
Free energy change
Where,
(c)
Interpretation:
For the following reaction, the
Concept introduction:
Free energy change is the term that is used to explain the total energy content in a
Where,
(d)
Interpretation:
For the following reaction, the
Concept introduction:
Enthalpy is the amount energy absorbed or released in a process.
The enthalpy change in a system
Where,
(e)
Interpretation:
For the following reaction, the
Concept introduction:
Free energy (or) entropy change is the term that is used to explain the total energy content in a thermodynamic system that can be converted into work. The free energy is represented by the letter G. All spontaneous process is associated with the decrease of free energy in the system. The equation given below helps us to calculate the change in free energy in a system.
Where,
(f)
Interpretation:
For the following reaction, the
Concept introduction:
Free energy (Gibbs free energy) is the term that is used to explain the total energy content in a thermodynamic system that can be converted into work. The free energy is represented by the letter
Where,
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CHEMISTRY MOLECULAR NATURE OF MATTER
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