Dynamic equilibrium (Dynamic equilibrium)
dynamic equilibrium. Equilibrium is related to the rate of chemical reactions. "Refers to the equilibrium of the system is equal to the rate of the forward reaction rate of the reverse reaction. Or the rate of change in net zero "when the system is in equilibrium with the net rate of reaction is zero. The concentration of various substances in the equilibrium constant, however, does not mean it will not change any more changes still occur any time of the reaction, the forward and reverse reactions. Only with the same rate Viewed from the outside, it looks like a change. For example, when the water bowl and a glass lid. Water to vaporize the water level in the cup down. Meanwhile, some steam will condense into water. By the time the water level in the beaker is maintained at a condition in which the system is balanced. View from the outside will not see the changes happening in spite of the time, the evaporation and condensation continues to occur at the same rate
of dynamic equilibrium generally classify the dynamic equilibrium of the changing nature of the substance. A dynamic equilibrium Because the state transition The solution and the reaction. Which will be discussed in detail each of the following types of equilibrium between phases. Because individual substances can be either solid. Liquid and gas The state of matter can be converted back and forth by increasing or decreasing the energy to the system. Therefore, the change of substance has occurred, such as a balanced equilibrium between solid and liquid. Liquid to gas And solid to gas We called different according to the nature of the change in equilibrium in solution, as mentioned at the start that the melt can cause balance up. Both substances Electrolyte and sleep - Electrolyte. Given the nature of the equilibrium melting into 2 categories:
a. Equilibrium dissociation What happens to the solubility of Electrolyte soft water. Partially ionized. While some of the molecular ions combine at the equilibrium rate of ionized molecules will be equal to the sum of the equilibrium dissociation. For example, the solubility of hydrocyanic acid Koenig (HCN) in North HCN will break down some of the ions, which held that a reaction forward.
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