The reason for increased solubility of Ag 3 PO 4 in water than the value of its solubility calculated using K sp value has to be explained. Concept introduction: The solubility of insoluble salts containing anions (conjugate base of a weak acid) such as hydroxide, acetate, carbonate, phosphate, and sulfide is greater than the value calculated using K sp value. This is because the anion undergoes hydrolysis that is it reacts with water (acid-base reaction). This decreases the concentration of the anion in the solution and as result the reaction equilibrium shifts to right-hand side or become product favored. Thus the solubility of the salt increases.
The reason for increased solubility of Ag 3 PO 4 in water than the value of its solubility calculated using K sp value has to be explained. Concept introduction: The solubility of insoluble salts containing anions (conjugate base of a weak acid) such as hydroxide, acetate, carbonate, phosphate, and sulfide is greater than the value calculated using K sp value. This is because the anion undergoes hydrolysis that is it reacts with water (acid-base reaction). This decreases the concentration of the anion in the solution and as result the reaction equilibrium shifts to right-hand side or become product favored. Thus the solubility of the salt increases.
Solution Summary: The author explains that the solubility of insoluble salts containing anions is greater than the value calculated using K_sp value.
The reason for increased solubility of Ag3PO4 in water than the value of its solubility calculated using Ksp value has to be explained.
Concept introduction: The solubility of insoluble salts containing anions (conjugate base of a weak acid) such as hydroxide, acetate, carbonate, phosphate, and sulfide is greater than the value calculated using Ksp value. This is because the anion undergoes hydrolysis that is it reacts with water (acid-base reaction). This decreases the concentration of the anion in the solution and as result the reaction equilibrium shifts to right-hand side or become product favored. Thus the solubility of the salt increases.
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Consider the following reaction:
CH3OH(g)
CO(g) + 2H2(g)
(Note that AG,CH3OH(g) = -162.3 kJ/mol and AG,co(g)=-137.2 kJ/mol.)
Part A
Calculate AG for this reaction at 25 °C under the following conditions:
PCH₂OH
Pco
PH2
0.815 atm
=
0.140 atm
0.170 atm
Express your answer in kilojoules to three significant figures.
Ο ΑΣΦ
AG = -150
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Calculate the free energy change under nonstandard conditions (AGrxn) by using the following relationship:
AGrxn = AGrxn + RTInQ,
AGxn+RTInQ,
where AGxn is the standard free energy change, R is the ideal gas constant, T is the temperature in kelvins, a
is the reaction quotient.
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