The statements in the tables below are about two different chemical equilibria. The symbols have their usual meaning, for example AG stands for the standard Gibbs free energy of reaction and K stands for the equilibrium constant. In each table, there may be one statement that is false because it contradicts the other three statements. If you find a false statement, check the box next to it. Otherwise, check the "no false statements" box under the table. statement AH>TAS° K>1 AG°>0 In K<0 no false statements: false? O statement AHO=TAS° In K = 0 AG 1 K=1 no false statements: false? X S

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Chapter1: Chemical Foundations
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The statements in the tables below are about two different chemical equilibria. The symbols have their usual meaning, for example AGO stands for the standard
Gibbs free energy of reaction and K stands for the equilibrium constant.
In each table, there may be one statement that is false because it contradicts the other three statements. If you find a false statement, check the box next to it.
Otherwise, check the "no false statements" box under the table.
statement
AH>TAS°
K>1
AGO >0
In K<0
no false statements:
false?
O
statement
ΔΗ° = T ΔS°
In K = 0
AGO = 1
K=1
no false statements:
false?
O
X
Ś
Transcribed Image Text:The statements in the tables below are about two different chemical equilibria. The symbols have their usual meaning, for example AGO stands for the standard Gibbs free energy of reaction and K stands for the equilibrium constant. In each table, there may be one statement that is false because it contradicts the other three statements. If you find a false statement, check the box next to it. Otherwise, check the "no false statements" box under the table. statement AH>TAS° K>1 AGO >0 In K<0 no false statements: false? O statement ΔΗ° = T ΔS° In K = 0 AGO = 1 K=1 no false statements: false? O X Ś
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