The reasons that why entropy changes of vaporization ΔS vap is larger than ΔS fus has to be explained. Concept introduction: In thermodynamics , 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 G. The equation given below helps us to calculate the change in free energy in a system. ΔG = Δ Η - T Δ S At a temperature of normal boiling point, the gaseous state of the system will be in equilibrium with the liquid state. The free energy change in the system will be zero. Taking the free energy value as zero, molar entropy of vaporization can be calculated using the following equation. ΔS vap = ΔΗ vap T bp Where, ΔS vap is the entropy of vaporization ΔΗ vap is the enthalpy of vaporization T bp is the boiling temperature
The reasons that why entropy changes of vaporization ΔS vap is larger than ΔS fus has to be explained. Concept introduction: In thermodynamics , 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 G. The equation given below helps us to calculate the change in free energy in a system. ΔG = Δ Η - T Δ S At a temperature of normal boiling point, the gaseous state of the system will be in equilibrium with the liquid state. The free energy change in the system will be zero. Taking the free energy value as zero, molar entropy of vaporization can be calculated using the following equation. ΔS vap = ΔΗ vap T bp Where, ΔS vap is the entropy of vaporization ΔΗ vap is the enthalpy of vaporization T bp is the boiling temperature
Science that deals with the amount of energy transferred from one equilibrium state to another equilibrium state.
Chapter 20, Problem 20.5P
Interpretation Introduction
Interpretation:
The reasons that why entropy changes of vaporization ΔSvap is larger than ΔSfus has to be explained.
Concept introduction:
In thermodynamics, 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 G.
The equation given below helps us to calculate the change in free energy in a system.
ΔG = ΔΗ- TΔS
At a temperature of normal boiling point, the gaseous state of the system will be in equilibrium with the liquid state. The free energy change in the system will be zero. Taking the free energy value as zero, molar entropy of vaporization can be calculated using the following equation.
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The Laws of Thermodynamics, Entropy, and Gibbs Free Energy; Author: Professor Dave Explains;https://www.youtube.com/watch?v=8N1BxHgsoOw;License: Standard YouTube License, CC-BY