Lesson 3.2.5.2
3.2.5.2 Substitution reactions Quiz: AQA Chemistry, Unit 2
20 questions
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Lesson 3.2.5.2, Substitution reactions: 20 multiple choice questions for the AQA Chemistry (7405), Unit 2: Inorganic chemistry, written with Revision Ninja.
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The 20 questions
-
Which of these is a monodentate ligand?
- Water, H2O
- H2NCH2CH2NH2
- Ethanedioate ion, C2O4^2-
- EDTA4-
-
Which ligand is multidentate?
- EDTA4-
- Water, H2O
- Chloride ion, Cl-
- Ammonia, NH3
-
What is the denticity of the ethanedioate ion, C2O4^2-?
- Monodentate
- Tridentate
- Bidentate
- Hexadentate
-
Which pair of ligands is similar in size and uncharged?
- CN- and Cl-
- NH3 and H2O
- Cl- and H2O
- Cl- and NH3
-
Which metal ion shows exchange of NH3 and H2O without a change in co-ordination number?
- Co2+ and Cu2+
- Cu+ only
- Fe3+ only
- Ag+ only
-
Why can exchange of H2O by Cl- change the co-ordination number of a metal ion?
- Cl- is larger than H2O, so fewer ligands can fit around the metal ion
- Cl- is uncharged, so it cannot bond to metal ions
- H2O is multidentate and Cl- is monodentate only
- Cl- is smaller than H2O, so more ligands can fit around the metal ion
-
What is the chelate effect?
- Metal ions reacting with chloride to form a solid precipitate
- Monodentate ligands replacing bidentate ligands in a complex
- Oxidation of a metal ion by a ligand
- Bidentate and multidentate ligands replacing monodentate ligands in a complex
-
Which complex is an iron(II) complex with a multidentate ligand, and what does it transport?
- Chlorophyll, which transports water
- Haemoglobin, which transports carbon dioxide
- Haem, which transports oxygen in blood
- Vitamin B12, which transports sodium ions
-
Why is carbon monoxide toxic?
- It replaces oxygen co-ordinately bonded to Fe(II) in haemoglobin
- It oxidises Fe(II) to Fe(III) in haemoglobin
- It dissolves haemoglobin in the blood plasma
- It reacts with the ligands to form solid precipitates
-
Which equation shows the formation of an incompletely substituted complex?
- [Cu(H2O)6]2+ + 6NH3 -> [Cu(NH3)6]2+ + 6H2O
- [Cu(H2O)6]2+ + 2NH3 -> [Cu(NH3)2(H2O)4]2+ + 2H2O
- [Cu(H2O)6]2+ + 4Cl- -> [CuCl4]2- + 6H2O
- Cu2+ + 2e- -> Cu
-
In the reaction [Cu(H2O)6]2+ + 4Cl- -> [CuCl4]2- + 6H2O, how does the co-ordination number of copper change?
- It changes from 2 to 4
- It stays at 6
- It changes from 6 to 4
- It changes from 4 to 6
-
What is the balanced equation for ethanedioate ions displacing water from [Cu(H2O)6]2+? (The ethanedioate is C2O4^2-.)
- [Cu(H2O)6]2+ + C2O4^2- -> Cu(C2O4) + 6H2O
- [Cu(H2O)6]2+ + 2C2O4^2- -> [Cu(C2O4)2] + 6H2O
- [Cu(H2O)6]2+ + C2O4^2- -> [Cu(C2O4)(H2O)4] + 2H2O
- [Cu(H2O)6]2+ + C2O4^2- -> [Cu(C2O4)2]2+ + 6H2O
-
Why is the chelate effect favourable in terms of entropy?
- Polydentate ligands lower the total number of particles in solution
- Polydentate ligands make the reaction endothermic and disorder falls
- Entropy is always unchanged in ligand exchange reactions
- Replacing monodentate ligands with a polydentate ligand releases more particles, increasing disorder
-
Which property of EDTA4- makes it useful for removing metal ions from solution?
- It is a monatomic ion that precipitates metals
- It is a neutral molecule with no lone pairs
- It is monodentate and forms weak bonds with all metals
- It is multidentate and forms very stable complexes with metal ions
-
Explain in terms of enthalpy and entropy why a chelate complex is more stable than a complex with monodentate ligands.
- The enthalpy change is similar, but the entropy increase from more particles produced makes the overall free energy change more favourable
- The entropy decreases because the complex is more ordered
- The reaction is endothermic and so stability increases with temperature
- The enthalpy change is larger and positive, so the complex is more stable
-
A student adds concentrated HCl to [Cu(H2O)6]2+ and the solution turns from blue to yellow-green. Which best explains this?
- Cu2+ is reduced to Cu+ metal by the chloride ions
- A precipitate of copper chloride forms and colours the solution
- H2O is oxidised to oxygen gas by the chloride ions
- Cl- ligands replace H2O ligands and change the co-ordination number and colour
-
Which statement about the iron(II) complex in haemoglobin is correct?
- Iron is oxidised to iron(III) when oxygen binds
- Oxygen replaces the iron ion in the complex
- Oxygen forms an ionic bond with iron(II)
- Oxygen forms a co-ordinate bond to the iron(II) centre
-
A complex with four monodentate ligands and one bidentate ligand has what co-ordination number?
- 8
- 6
- 5
- 4
-
Which species is the best example of a complex that has a chelate effect when formed?
- [Cu(H2O)6]2+ alone with six water ligands
- [Cu(en)2(H2O)2]2+ with two bidentate ethylenediamine ligands
- [CuCl4]2- with four monodentate chloride ligands
- [Cu(NH3)4(H2O)2]2+ with monodentate ligands
-
Why is ammonia, NH3, a monodentate ligand?
- It has one lone pair that it can donate to a metal ion
- It has three lone pairs that all bond to one metal
- It has no lone pairs of electrons
- It has two lone pairs on separate nitrogen atoms
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