(a) Interpretation: The reason needs to be explained for a spontaneous change in the reaction, the change in entropy in a system is not always a suitable criterion. Concept introduction: Entropy is the measurable quantity which indicates the randomness of the system. The gaseous components have high entropy whereas solid substances have less entropy. According to Second law of Thermodynamics , the entropy of universe will always increase. In other words, the changes in the entropy can never be negative. ΔS > 0 The Gibb’s equation of thermodynamic purposed a relation between ΔS , ΔH and ΔG with Temperature. The mathematical expression of Gibb’s equation can be written as: ΔrG ° = ΔrH ° - TΔrS °
(a) Interpretation: The reason needs to be explained for a spontaneous change in the reaction, the change in entropy in a system is not always a suitable criterion. Concept introduction: Entropy is the measurable quantity which indicates the randomness of the system. The gaseous components have high entropy whereas solid substances have less entropy. According to Second law of Thermodynamics , the entropy of universe will always increase. In other words, the changes in the entropy can never be negative. ΔS > 0 The Gibb’s equation of thermodynamic purposed a relation between ΔS , ΔH and ΔG with Temperature. The mathematical expression of Gibb’s equation can be written as: ΔrG ° = ΔrH ° - TΔrS °
Solution Summary: The author explains the importance of rGo in dealing with questions relayed to the spontaneous change.
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 13, Problem 114SAE
Interpretation Introduction
(a)
Interpretation:
The reason needs to be explained for a spontaneous change in the reaction, the change in entropy in a system is not always a suitable criterion.
Concept introduction:
Entropy is the measurable quantity which indicates the randomness of the system. The gaseous components have high entropy whereas solid substances have less entropy. According to Second law of Thermodynamics, the entropy of universe will always increase. In other words, the changes in the entropy can never be negative.
ΔS > 0
The Gibb’s equation of thermodynamic purposed a relation between ΔS, ΔH and ΔG with Temperature. The mathematical expression of Gibb’s equation can be written as:
ΔrG° = ΔrH° - TΔrS°
Interpretation Introduction
(b)
Interpretation:
The reason needs to be explained for the importance of ΔrGo in dealing with questions relayed to the spontaneous change.
Concept introduction:
Entropy is the measurable quantity which indicates the randomness of the system. The gaseous components have high entropy whereas solid substances have less entropy. According to Second law of Thermodynamics, the entropy of universe will always increase. In other words, the changes in the entropy can never be negative.
ΔS > 0
The Gibb’s equation of thermodynamic purposed a relation between ΔS, ΔH and ΔG with Temperature. The mathematical expression of Gibb’s equation can be written as:
A vial of Xe 133 gas (t 1/2 = 5.24 d) os ca;obrated fpr 22mCi @ 6:00am on March 1. What is its activity at 6:00 pm on march 8? what is mCI remain
McLafferty Rearrangement: Label alpha (), beta (), and gamma () on the molecule. Draw mechanismarrows to describe the process of the rearrangement. What functional group is lost during the rearrangement? What new functional group is made from the ketone/aldehyde you started with? What stabilizing chemical theory causes (allows) rearrangement to happen?
Don't used hand raiting and don't used Ai solution
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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