Lesson 13A.2
13A.2 Polarisation of ions Quiz: Pearson Edexcel Chemistry, Unit 13
20 questions
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Lesson 13A.2, Polarisation of ions: 20 multiple choice questions for the Pearson Edexcel Chemistry (9CH0), Unit 13: Energetics II, written with Revision Ninja.
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The 20 questions
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What is meant by polarisation of an ion?
- The movement of electrons from a cation to an anion during electrolysis
- The increase in size of a cation when it gains electrons
- The distortion of an anion's electron cloud by the electric field of a nearby cation
- The separation of charges in a polar covalent molecule by an external field
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What two properties determine the polarising power of a cation?
- Its radius only, because larger cations spread their charge and so polarise anion clouds more strongly
- Its number of neighbouring anions in the lattice, regardless of the charge carried by each cation
- Its charge and its mass, because heavier cations hold their electrons more loosely and polarise more strongly
- Its charge and its radius, giving a high charge density when the charge is high and the radius small
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How does the polarisability of an anion depend on its size and charge?
- It depends only on the mass of the anion
- It is greatest for small, singly charged anions
- It decreases with larger radius because the outer electrons are held more tightly
- It increases with larger anion radius and higher negative charge
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Which cation is the most polarising among Na+, Mg2+ and Al3+?
- K+, because it has the smallest charge density
- Mg2+, because it has the same charge as O2- so it does not polarise
- Al3+, because it is small and highly charged
- Na+, because it has the largest radius
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Which anion is the most polarisable among F-, Cl- and I-?
- I-, because it is large and has a diffuse electron cloud
- O2-, because its radius is the smallest of the ions listed
- Cl-, because it has the highest charge density
- F-, because it is the smallest halide ion
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What effect does polarisation have on the bonding in an ionic lattice?
- It introduces covalent character
- It lowers the charge on each ion to zero in the lattice
- It converts the lattice into a metallic solid with free electrons
- It makes the bonding perfectly ionic by removing all shared electron density
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Which pair of compounds is most likely to show significant covalent character from polarisation?
- KCl, because K+ has a high charge density and Cl- is a large anion that is easily polarised
- AgI, because Ag+ is small and polarising and I- is large and polarisable
- NaF, because F- is a small, highly charged anion that is strongly polarising towards Na+
- MgO, because Mg2+ and O2- are both small, and the lattice is held together by strong covalent sharing
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Which of LiCl, NaCl and KCl is expected to show the most covalent character?
- All three are equally ionic because they share the same anion
- NaCl, because sodium lies between lithium and potassium
- KCl, because K+ has the largest ionic radius
- LiCl, because Li+ is the smallest and most polarising of the three cations
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Why is AlCl3 more covalent than NaCl?
- AlCl3 is only ionic in aqueous solution, so it is covalent when solid
- Al3+ has a larger radius, so it holds its electrons less tightly
- Al3+ has a high charge density and polarises the large Cl- ion
- Cl- in AlCl3 carries a higher charge than in NaCl
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Which change would most increase the covalent character of a sodium halide?
- Replacing Cl- with F- to give NaF, since fluoride is more polarisable
- Replacing Na+ with Cs+ to give CsCl, since caesium is more polarising
- Replacing NaCl with KCl, since K+ is more polarising than Na+
- Replacing Cl- with I- to give NaI, since iodide is far more polarisable
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An ionic compound has an experimental lattice energy 150 kJ mol-1 more exothermic than its theoretical ionic value. What is the most justified conclusion?
- The lattice energy data contains an error, so the Born-Haber cycle must be wrong
- The compound must be a gas, so its lattice energy is always positive
- The compound contains only Group 1 metals, which always show extra exothermicity
- The bonding has significant covalent character
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Arrange the sizes of the cations Na+ (about 102 pm), Mg2+ (about 72 pm) and Al3+ (about 53 pm) in order of increasing polarising power.
- Al3+ < Na+ < Mg2+
- Al3+ < Mg2+ < Na+
- Mg2+ < Na+ < Al3+
- Na+ < Mg2+ < Al3+
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A student claims polarising power depends only on the charge of a cation. Which correction is best?
- Polarising power depends on the number of electrons in the anion
- Polarising power is independent of charge and depends only on the anion radius
- Polarising power depends on both charge and radius, so charge density is the key factor
- Polarising power depends only on the mass of the cation
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Why is LiI more covalent than LiF?
- I- is large and highly polarisable
- F- is more polarisable than I- because it has a higher electronegativity
- Li+ has a larger charge in LiI, so its polarising power is higher
- LiF is covalent because F- has more electrons to share with lithium
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A teacher says ionic compounds are perfectly ionic. Which evaluation is best?
- Correct, because only covalent compounds can show polarisation, so ionic compounds must be perfectly ionic
- Incorrect, because all metal halides are molecular at room temperature and so are not ionic at all
- Incorrect, because polarisation introduces covalent character, so real bonding lies between the ionic and covalent extremes
- Correct, because all ions are perfectly spherical and so cannot be distorted by an electric field at all
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Which pair of cations would be expected to polarise anions more strongly: Mg2+ or Ca2+?
- Ca2+, because its larger size spreads the charge more evenly and so it polarises anions more strongly
- Mg2+ and Ca2+ are equally polarising, because both carry 2+ charge and differ only in their electron count
- Mg2+, because its smaller radius gives a higher charge density than Ca2+ of the same charge
- Ca2+, because it has more electrons available to polarise the anion and so distorts it more
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Which combination of ion properties would maximise the covalent character of an ionic compound?
- A small, low-charged cation paired with a small anion that is not easily polarised by any cation
- A small, highly charged cation with a large, highly charged anion
- A large cation with a large, low-charged anion, which gives strong covalent character
- A large, low-charged cation with a small, low-charged anion, which gives the most ionic bonding
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Which compound is more covalent: AgCl or NaCl?
- Both are equally covalent, because both contain the chloride ion, whose electron cloud is the same in each
- NaCl, because sodium has a lower first ionisation energy than silver, so its bonds are more covalent
- AgCl, because the small, polarising Ag+ cation distorts the chloride electron cloud more than Na+ does
- NaCl, because silver chloride is a metallic compound with delocalised electrons across its lattice
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Which compound would be expected to show more covalent character: MgF2 or MgI2?
- Both are equally covalent because both contain Mg2+
- MgF2, because F- is the most electronegative halide ion
- MgI2, because I- is large and easily polarised by Mg2+
- Neither compound contains an ionic bond
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Which cation has the greater polarising power: a 3+ ion of radius 60 pm or a 2+ ion of radius 70 pm?
- The 2+ ion, because its larger radius gives greater polarising power
- The 2+ ion, because polarising power decreases as charge increases
- They are equally polarising because the radii are similar
- The 3+ ion, because 3/60 gives a higher charge density than 2/70
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