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Kc is the equilibrium constant.
Increasing temperature increases the rate of dissolution, though it can increase or decrease solubility at equilibrium.
Dissolution and diffusion. The same process out of water is evaporation.
The chemical formula of silver carbonate is Ag2CO3.
The formula for silver carbonate is Ag2CO3
Ksol = [Ag+]2*[CO32-] at equilibrium (saturated solution)in which:Ksol is the thermodynamic equilibrium constant, onlydependent on temperature.[X] is the concentration of substance X in mole/Litre.Note that:the exponent 'p' in the expression [X]p is equal to the number of ions in the balanced equilibrium equation: 2Ag+ + CO32- (Ag2CO3)s. So p=2 for [Ag+]concentration of only solved particles are in the Eq. expression [Ag+]2*[CO32-] and not those of solid (Ag2CO3)s. However, some solid (Ag2CO3)s is needed to get to an equilibrium state, so at least the solution is to be saturated.
Since Lead (II) Chloride has the formula PbCl2, the equilibrium equation for its dissolution is: PbCl2 <=> Pb+2+2Cl- so the equilibrium-constant expression is Ksp= [Pb+2][Cl-]
Equilibrium in the case of a generally insoluble salt takes the form of "Ksp," which means solubility product constant. Ksp = [Ca+2]3[PO4-3]2
Kc is the equilibrium constant.
Increasing temperature increases the rate of dissolution, though it can increase or decrease solubility at equilibrium.
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Dissolving and precipitating the solute in solvent.
Silver carbonite is not a chemical compound, it is the color scheme for a number of computer peripherals. If this was meant to be silver carbonate the chemical formula for this chemical compound is Ag2CO3.
A quantity that characterizes the position of equilibrium for a reversible reaction; its magnitude is equal to the mass action expression at equilibrium. K varies with temperature.
Dissolution and diffusion. The same process out of water is evaporation.
Ag2CO3
Ag2CO3