For the endothermic reaction to occur more likely as spontaneous which condition is required from given has to be explained. 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. ΔG = Δ Η - T Δ S Where, ΔG is the change in free energy of the system Δ Η is the change in enthalpy of the system T is the absolute value of the temperature Δ S is the change in entropy in the system Exothermic reaction: Exothermic reactions are those in which evolution of heat takes place during any chemical reaction . They release heat because the reactant molecules require less heat for breakage of bonds than the product molecules. Endothermic reaction: Endothermic reactions are those in which heat is absorbed during any chemical reaction. In such type of reactions, external energy is needed.
For the endothermic reaction to occur more likely as spontaneous which condition is required from given has to be explained. 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. ΔG = Δ Η - T Δ S Where, ΔG is the change in free energy of the system Δ Η is the change in enthalpy of the system T is the absolute value of the temperature Δ S is the change in entropy in the system Exothermic reaction: Exothermic reactions are those in which evolution of heat takes place during any chemical reaction . They release heat because the reactant molecules require less heat for breakage of bonds than the product molecules. Endothermic reaction: Endothermic reactions are those in which heat is absorbed during any chemical reaction. In such type of reactions, external energy is needed.
Definition Definition Transformation of a chemical species into another chemical species. A chemical reaction consists of breaking existing bonds and forming new ones by changing the position of electrons. These reactions are best explained using a chemical equation.
Chapter 20, Problem 20.47P
(a)
Interpretation Introduction
Interpretation:
For the endothermic reaction to occur more likely as spontaneous which condition is required from given has to be explained.
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.
ΔG = ΔΗ- TΔS
Where,
ΔG is the change in free energy of the system
ΔΗ is the change in enthalpy of the system
T is the absolute value of the temperature
ΔS is the change in entropy in the system
Exothermic reaction: Exothermic reactions are those in which evolution of heat takes place during any chemical reaction. They release heat because the reactant molecules require less heat for breakage of bonds than the product molecules.
Endothermic reaction: Endothermic reactions are those in which heat is absorbed during any chemical reaction. In such type of reactions, external energy is needed.
(b)
Interpretation Introduction
Interpretation:
The sign of ΔHsys,ΔSsysandΔSsurr values have to be determined. The sign of ΔGsys vary with temperature also has to be explained using the given condition that the change occurs at constant pressure.
Concept introduction:
Entropy is a thermodynamic quantity, which is the measure of randomness in a system. The term entropy is useful in explaining the spontaneity of a process. For all spontaneous process in an isolated system there will be an increase in entropy. Entropy is represented by the letter ‘S’. It is a state function. The change in entropy gives information about the magnitude and direction of a process. The entropy of one mole of substance at a given standard state is called standard molar entropy (So).
Entropy changes: it is used to describe the disorder. It is the amount of arrangements possible in a system at a particular state.
If the disorder increases in a system, then ΔS>0 positive
If the disorder decreases in a system, then ΔS<0 negative
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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