4. Strong And Weak Bases - Chemistry LibreTexts
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Strong bases
A strong base is something like sodium hydroxide or potassium hydroxide which is fully ionic. You can think of the compound as being 100% split up into metal ions and hydroxide ions in solution.
Each mole of sodium hydroxide dissolves to give a mole of hydroxide ions in solution.

Some strong bases like calcium hydroxide aren't very soluble in water. That doesn't matter - what does dissolve is still 100% ionised into calcium ions and hydroxide ions. Calcium hydroxide still counts as a strong base because of that 100% ionisation.
Working out the pH of a strong base
Remember that:
\[pH = -\log_{10} [H^+]\]
Since pH is a measure of hydrogen ion concentration, how can a solution which contains hydroxide ions have a pH? To understand this, you need to know about the ionic product for water. Wherever there is water, an equilibrium is set up. Using the simplified version of this equilibrium:
\[ H_2O_{(l)} \rightleftharpoons H^+_{(aq)} + OH^-_{(aq)}\]
In the presence of extra hydroxide ions from, say, sodium hydroxide, the equilibrium is still there, but the position of equilibrium has been shifted well to the left according to Le Chatelier's Principle. There will be far fewer hydrogen ions than there are in pure water, but there will still be hydrogen ions present. The pH is a measure of the concentration of these.
An outline of the method of working out the pH of a strong base
- Work out the concentration of the hydroxide ions.
- Use Kw to work out the hydrogen ion concentration.
- Convert the hydrogen ion concentration to a pH.
Example 1
What is the pH of 0.500 mol dm-3 sodium hydroxide solution:?
Solution
Because the sodium hydroxide is fully ionic, each mole of it gives that same number of moles of hydroxide ions in solution.
[OH-] = 0.500 mol dm-3
Now you use the value of Kw at the temperature of your solution. You normally take this as 1.00 x 10-14 mol2 dm-6.
[H+] [OH-] = 1.00 x 10-14
This is true whether the water is pure or not. In this case we have a value for the hydroxide ion concentration. Substituting that gives:
[H+] x 0.500 = 1.00 x 10-14
If you solve that for [H+], and then convert it into pH, you get a pH of 13.7.
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