Every card in Acids and alkalis, Year 10: the pH scale, strong and weak acids
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- The ion that every acid produces when it is dissolved in water
The hydrogen ion, H⁺
HintIt is what is left of the lightest atom of all after it loses its one electron.
WhyHydrochloric, nitric and sulfuric acids are different compounds, but in water each releases H⁺ ions. It is these ions that make a solution acidic and give acids their shared reactions.
- Aqueous solutions of alkalis contain ____ ions.
hydroxide
HintThe formula of this ion has one oxygen atom and one hydrogen atom, with a single negative charge.
WhySodium hydroxide, potassium hydroxide and other alkalis all release OH⁻ ions when they dissolve. These ions are what make a solution alkaline, with a pH above 7.
- Write the ionic equation that represents the neutralisation of any acid by any alkali.
H⁺ + OH⁻ → H2O
HintOne ion comes from the acid, one from the alkali, and together they make the commonest liquid on Earth.
WhyWhatever the acid and alkali, the same thing happens: a hydrogen ion and a hydroxide ion join to make a water molecule. The other ions stay in solution and make up the salt. With state symbols it is H⁺(aq) + OH⁻(aq) → H2O(l).
- Universal indicator and a pH probe can both be used to find the pH of a solution. What does the probe give that the indicator cannot?
A precise numerical reading
HintWith the indicator you have to match a colour against a chart by eye.
WhyUniversal indicator shows a colour that is compared with a chart, so it gives only an approximate pH, usually to the nearest whole number. A pH probe measures electronically and displays the value, often to one or two decimal places.
- Sodium hydroxide solution is added a little at a time to dilute hydrochloric acid until the alkali is in excess. Describe how the pH of the mixture changes.
It rises from below 7, through 7, to above 7
HintStart with what the flask holds at the beginning, and end with what is left over at the finish.
WhyAt first the flask holds acid, so the pH is low. As hydroxide ions remove hydrogen ions the pH climbs, reaching 7 when the acid is exactly neutralised, and then goes higher as extra alkali is added.
- An acid that is completely ionised in aqueous solution
A strong acid
HintHydrochloric, nitric and sulfuric acids all belong in this class.
WhyIn an acid of this kind every molecule splits up to release its hydrogen ions when dissolved. In a weak acid, such as ethanoic acid, only a small fraction of the molecules are ionised at any moment.
- The pH of a solution falls from 5 to 2. By what factor has its hydrogen ion concentration increased? (number only)
1000
HintEach single step down the scale multiplies the concentration by ten.
WhyA fall of one pH unit means ten times the hydrogen ion concentration. From 5 to 2 is three steps, so the factor is 10 × 10 × 10 = 1000.
- Hydrochloric acid is a strong acid. A bottle is labelled 'dilute hydrochloric acid'. What does the word dilute tell you about the solution?
Only a small amount of acid is dissolved in each dm³
HintThe label describes how much, not how fully it splits up.
WhyDilute and concentrated describe the amount of acid in a given volume of solution. Strong and weak describe how completely the acid ionises. So an acid can be strong and dilute at the same time, or weak and concentrated.
- Solutions of hydrochloric acid and ethanoic acid are made at the same concentration. Which has the lower pH?
The hydrochloric acid
HintThe lower pH belongs to whichever releases more hydrogen ions; compare how fully each one ionises.
WhyHydrochloric acid is strong, so it is completely ionised; ethanoic acid is weak, so only some of its molecules release hydrogen ions. At equal concentration the strong acid has more hydrogen ions in each dm³, and so a lower pH.
- The three strong acids you are expected to know are hydrochloric acid, ____ acid and ____ acid.
nitric; sulfuric
HintThey are the other two acids found on almost every school laboratory shelf.
WhyAll three are completely ionised in water. The weak acids to know are ethanoic, citric and carbonic acids, which are only partly ionised.
1★ GCSE-CHEM-ACD-0014
2★ GCSE-CHEM-ACD-0015
3★ GCSE-CHEM-ACD-0016
4★ GCSE-CHEM-ACD-0017
5★ GCSE-CHEM-ACD-0018
6★ GCSE-CHEM-ACD-0019
7★ GCSE-CHEM-ACD-0020
8★ GCSE-CHEM-ACD-0021
9★ GCSE-CHEM-ACD-0022
10★ GCSE-CHEM-ACD-0023
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