Consider the decomposition of a metal oxide to its elements, where M represents a generic metal. AG°r(kJ/mol) Substance M,0,(s) = 3 M(s) + 20,(g) M304(s) -6.50 M(s) What is the standard change in Gibbs energy for the reaction, as written, in the O2(g) forward direction? kJ/mol What is the equilibrium constant of this reaction, as written, in the forward direction at 298 K? K = What is the equilibrium pressure of O2(g) over M(s) at 298 K? atm Po. =

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Chapter1: Chemical Foundations
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Consider the decomposition of a metal oxide to its elements, where M
represents a generic metal.
Substance
AG°r(kJ/mol)
M,0,(s) = 3 M(s) + 20,(g)
M3O4(s)
-6.50
What is the standard change in Gibbs energy for the reaction, as written, in the
M(s)
forward direction?
O2(g)
kJ/mol
drea
What is the equilibrium constant of this reaction, as written, in the forward direction at 298 K?
K =
What is the equilibrium pressure of O2(g) over M(s) at 298 K?
atm
Po, =
Transcribed Image Text:Consider the decomposition of a metal oxide to its elements, where M represents a generic metal. Substance AG°r(kJ/mol) M,0,(s) = 3 M(s) + 20,(g) M3O4(s) -6.50 What is the standard change in Gibbs energy for the reaction, as written, in the M(s) forward direction? O2(g) kJ/mol drea What is the equilibrium constant of this reaction, as written, in the forward direction at 298 K? K = What is the equilibrium pressure of O2(g) over M(s) at 298 K? atm Po, =
15
M34S) PM(S) † 20,8)
M(s)
What is the standard change in Gibbs energy for the reaction, as written, in the
O2(g)
forward direction?
kJ/mol
AGxn
What is the equilibrium constant of this reaction, as written, in the forward direction at 298 K?
K =
What is the equilibrium pressure of O2(g) over M(s) at 298 K?
atm
Po,
Transcribed Image Text:15 M34S) PM(S) † 20,8) M(s) What is the standard change in Gibbs energy for the reaction, as written, in the O2(g) forward direction? kJ/mol AGxn What is the equilibrium constant of this reaction, as written, in the forward direction at 298 K? K = What is the equilibrium pressure of O2(g) over M(s) at 298 K? atm Po,
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