(a) Interpretation: The stability of Ag 2 O at 25 ∘ C needs to be determined. Concept introduction: The Gibb’s equation of thermodynamic proposed a relation between ΔS , ΔH and ΔG with Temperature. The mathematical expression of Gibb’s equation can be written as: ΔrG ° = ΔrH ° - TΔrS ° ΔrG ° , ΔrH ° and ΔrS ° can be calculated with help of given equation: ΔrH° = ΔrH°(product) - ΔrH°(reactant) ΔrS° = ΔrS°(product) - ΔrS°(reactant) ΔrG° = ΔrG°(product) - ΔrG°(reactant) With the help of this equation one can predict the change in ΔS , ΔH and ΔG .
(a) Interpretation: The stability of Ag 2 O at 25 ∘ C needs to be determined. Concept introduction: The Gibb’s equation of thermodynamic proposed a relation between ΔS , ΔH and ΔG with Temperature. The mathematical expression of Gibb’s equation can be written as: ΔrG ° = ΔrH ° - TΔrS ° ΔrG ° , ΔrH ° and ΔrS ° can be calculated with help of given equation: ΔrH° = ΔrH°(product) - ΔrH°(reactant) ΔrS° = ΔrS°(product) - ΔrS°(reactant) ΔrG° = ΔrG°(product) - ΔrG°(reactant) With the help of this equation one can predict the change in ΔS , ΔH and ΔG .
Solution Summary: The author explains the Gibb's equation of thermodynamic, which proposes a relation between S,
Science that deals with the amount of energy transferred from one equilibrium state to another equilibrium state.
Chapter 13, Problem 91IAE
Interpretation Introduction
(a)
Interpretation:
The stability of Ag2O at 25∘C needs to be determined.
Concept introduction:
The Gibb’s equation of thermodynamic proposed a relation between ΔS, ΔH and ΔG with Temperature. The mathematical expression of Gibb’s equation can be written as:
ΔrG° = ΔrH° - TΔrS°
ΔrG°, ΔrH° and ΔrS° can be calculated with help of given equation:
With the help of this equation one can predict the change in ΔS, ΔH and ΔG.
Interpretation Introduction
(b)
Interpretation:
The stability of Ag2O at 200∘C needs to be determined.
Concept introduction:
The Gibb’s equation of thermodynamic proposed a relation between ΔS, ΔH and ΔG with temperature. The mathematical expression of Gibb’s equation can be written as
ΔrG° = ΔrH° - TΔrS°
ΔrG°, ΔrH° and ΔrS° can be calculated with help of given equation:
Draw all formal charges on the structures below as is and draw 1 resonance structure that is more stable.
Part II. xiao isolated a compound TAD (Ca H 10 N₂) from tobacco and obtained its IR spectrum. Xiao proposed
a chemical structure shown below:
% Transmittance
4000
3500
3000
2500 2000
Wavenumber (cm-1)
1500
1000
(a) Explain why her proposed structure is inconsistent with the IR spectrum obtained
(b) TAD exists as a tautomer of the structure xiao proposed. Draw the structure
and explain why it is more compatible with the obtained spectrum.
(C) what is the possible source for the fairly intense signal at
1621cm1
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