Lesson 12.3.2
12.3.2 Buffer solutions Quiz: Pearson Edexcel Chemistry, Unit 12
20 questions
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Lesson 12.3.2, Buffer solutions: 20 multiple choice questions for the Pearson Edexcel Chemistry (9CH0), Unit 12: Acid-base Equilibria, written with Revision Ninja.
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The 20 questions
-
What is a buffer solution?
- A solution in which the pH changes by the same amount for every addition of acid
- A solution whose pH is exactly 7 at 298 K whatever is dissolved in it
- A solution that resists a change in pH when small amounts of acid or alkali are added
- A solution containing only a strong acid and its salt in equal amounts
-
Which pair of substances makes an acidic buffer?
- A weak acid together with its conjugate base, such as ethanoic acid and sodium ethanoate
- Two strong acids of different concentrations, mixed in equal volumes to give a solution of mixed pH
- A weak base together with a strong acid in large excess, so that the weak base is fully protonated
- A strong acid together with a strong base in equal moles, which gives a neutral salt solution at equivalence
-
What happens when a small amount of H+ ions is added to an ethanoic acid and sodium ethanoate buffer?
- The added H+ ions react with water to form OH- ions which neutralise them
- The sodium ions absorb the H+ ions so the pH remains constant
- The ethanoic acid reacts with H+ to form more H+ ions
- The ethanoate ions react with the added H+ ions to form ethanoic acid
-
What happens when a small amount of OH- ions is added to an ethanoic acid and sodium ethanoate buffer?
- The OH- ions combine with sodium ions to form a precipitate
- The ethanoate ions react with OH- ions to release H+ ions
- The ethanoic acid reacts with the OH- ions to form ethanoate ions and water
- The salt is hydrolysed, adding more OH- ions to the solution
-
Which salt would be used with ethanoic acid to make a buffer?
- Sodium chloride
- Sodium ethanoate
- Sodium hydroxide
- Sodium nitrate
-
Why must a buffer contain both a weak acid and its conjugate base rather than the weak acid alone?
- The conjugate base is needed to make the solution more concentrated and so more acidic
- Only the conjugate base can remove added H+ ions, while only the weak acid can remove added OH- ions
- A weak acid alone is fully dissociated, so the pH cannot be controlled
- The weak acid alone reacts with water to form a salt that buffers the solution
-
In an ammonia buffer, which species removes added H+ ions?
- Water molecules, which release OH- to neutralise the acid
- Ammonium ions, which donate H+ to form more NH3
- Ammonia, NH3, which accepts H+ to form NH4+
- Chloride ions, which accept H+ to form hydrogen chloride
-
Which expression gives the pH of an acidic buffer?
- pH = pKa x [A-] / [HA]
- pH = pKa - log10([A-] / [HA])
- pH = 14 - pKa + log10([A-] / [HA])
- pH = pKa + log10([A-] / [HA])
-
A buffer contains 0.20 mol dm-3 HA and 0.10 mol dm-3 A- with Ka = 1.8 x 10^-5 mol dm-3. What is its pH?
- 5.44
- 3.44
- 4.44
- 4.74
-
What is the pH of a buffer with equal concentrations of a weak acid and its salt, where the acid has pKa 4.76?
- 9.52
- 4.76
- 2.38
- 7.00
-
A buffer must have pH 5.00 with pKa 4.76. What is the required ratio [A-]/[HA]?
- 5.00
- 10.0
- 0.57
- 1.74
-
How many moles of sodium ethanoate must be added to 100 cm3 of 0.10 mol dm-3 ethanoic acid to make a buffer of pH 5.00 (pKa 4.76), assuming no volume change?
- 0.0174 mol
- 0.0100 mol
- 0.0240 mol
- 0.00574 mol
-
Which species neutralises added OH- ions in an ethanoic acid and sodium ethanoate buffer?
- Sodium ions, which react with OH- to form sodium hydroxide
- Ethanoic acid, CH3COOH, which reacts with OH- to form ethanoate and water
- Ethanoate ions, which react with OH- to release H+ ions
- Water molecules, which accept OH- ions to form stable hydroxide complexes
-
Which change increases the buffer capacity of a buffer while keeping the pH the same?
- Increasing the concentrations of both the weak acid and its salt in the same ratio
- Replacing the weak acid with a strong acid of the same concentration
- Adding more strong acid until the ratio of salt to acid changes
- Diluting the buffer with water while keeping the ratio the same
-
A buffer has 0.10 mol HA and 0.10 mol A- in 1.0 dm3 (pKa 4.76). If 0.010 mol NaOH is added, what is the new pH?
- 4.67
- 9.13
- 4.76
- 4.85
-
A buffer is made by mixing 40.0 cm3 of 0.200 mol dm-3 ethanoic acid with 10.0 cm3 of 0.200 mol dm-3 NaOH (pKa 4.76). What is the pH of the buffer?
- 3.76
- 4.76
- 4.28
- 5.24
-
A student says the pH of a buffer does not change on dilution. Which evaluation is best?
- The pH rises to 7 because the buffer is diluted and the acid is neutralised by water
- The pH falls on dilution because more of the acid dissociates to reduce the ratio
- The pH is exactly unchanged and the buffer capacity increases on dilution
- The pH stays almost the same
-
The most effective buffer range is about pKa plus or minus 1 pH unit. What is the effective range for a buffer with pKa 4.76?
- About pH 0.8 to 2.8
- About pH 3.8 to 5.8
- About pH 6.8 to 8.8
- About pH 4.2 to 4.4
-
What is the pH of a buffer made from equal concentrations of ammonia and ammonium chloride, given that the pKa of NH4+ is 9.25?
- 7.00
- 11.10
- 9.25
- 4.75
-
Why does a mixture of hydrochloric acid and sodium chloride not act as a buffer?
- Chloride ions are the conjugate base of a strong acid and do not react with added H+
- Hydrochloric acid has pH 7, so it is already neutral and cannot respond to added acid
- Sodium ions neutralise added OH- ions, so the pH stays constant regardless of the acid
- Chloride ions are a strong base that react with added H+ to form hydrogen chloride gas
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