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Kb = 3.8 10-10
The relationship between Ka and Kb values is that they are related by the equation Kw Ka Kb, where Kw is the ion product of water. If you know the Kb value, you can determine the Ka value by rearranging the equation to solve for Ka.
The Kb value for the conjugate base CN- (cyanide ion) is 2.5 x 10^-5.
Kb = 55 It is a very strong base therefore it completely dissociates.
The Ka and Kb values in a chemical equilibrium system are related by the equation Kw Ka Kb, where Kw is the ion product constant of water. This relationship shows that as the Ka value increases, the Kb value decreases, and vice versa.
The chemical formula of zinc hypochlorite is Zn(ClO)2.
Kb = 1.8 x 10-5 (apple x)
The Kb value for CH3NH2(aq) is 4.4 x 10^-4.
The symbol for hypochlorite is ClO-.
There are 0.0198 Mb in 19.8 KB, But if you calculate it with the more accurate 1024 value => 0,019335 Mb
Ka and Kb are equilibrium constants for the dissociation of acids and bases, respectively. A higher value of Ka or Kb indicates a stronger acid or base, respectively. The relationship between Ka and Kb can be described by the equation Kw = Ka x Kb, where Kw is the autoionization constant of water.
A solution with a Kb value greater than 1 indicates that the base is strong. Strong bases ionize completely in solution, leading to a higher concentration of hydroxide ions. This results in a higher Kb value as it reflects the strength of the base in accepting protons.