Lesson 15A.3
15A.3 Colour of transition metal ions Quiz: Pearson Edexcel Chemistry, Unit 15
20 questions
In partnership with Revision Ninja
Lesson 15A.3, Colour of transition metal ions: 20 multiple choice questions for the Pearson Edexcel Chemistry (9CH0), Unit 15: Transition Metals, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
-
Why are many transition metal ions coloured in solution?
- Metal ions emit light from electron transitions between 4s and 4p levels
- Colour arises from the nucleus absorbing visible light
- Ligands split the d orbital energies
- Colour arises because the ligands themselves are coloured
-
Why is the Zn2+ ion colourless in aqueous solution?
- It is a Group 2 ion, so it forms colourless compounds
- It has a full 3d10 subshell, so no d-d transitions are possible
- It has a half-filled d subshell, which absorbs no light
- It has no electrons at all, so no transitions are possible
-
Why is the Sc3+ ion colourless in aqueous solution?
- It has no d electrons, so d-d transitions cannot occur
- It has a full 3d10 subshell that reflects all visible light
- It is a Group 3 ion, so it forms only colourless salts
- It has only one d electron, which absorbs in the ultraviolet
-
How does a change in oxidation number affect the colour of a transition metal ion?
- It changes the d electron count and the splitting
- Only ligands affect colour, not oxidation number
- Oxidation number has no effect on colour
- Colour is determined only by the mass of the metal
-
How does changing the ligand affect the colour of a complex ion?
- Ligand changes have no effect on colour
- Only the number of water molecules matters, not the type of ligand
- Ligands always make complexes colourless
- It changes the energy gap between the split d orbitals
-
How does a change in coordination number affect the colour of a complex?
- Coordination number affects only solubility
- Coordination number has no effect on colour
- It changes the geometry and the d orbital splitting
- Coordination number only changes the charge of the complex
-
Which factor sets the energy of light absorbed in a d-d transition?
- The number of protons in the nucleus only
- The mass of the complex only
- The temperature of the solution only
- The size of the d orbital splitting
-
Which aqueous ion is pale green?
- Zn2+(aq)
- Mn2+(aq)
- Cu2+(aq)
- Fe2+(aq)
-
What colour is aqueous copper(II) ion, [Cu(H2O)6]2+?
- Blue
- Colourless
- Green
- Yellow
-
What colour is aqueous chromium(III) ion?
- Violet
- Colourless
- Orange
- Yellow
-
What colour is the aqueous vanadium(II) ion, V2+?
- Violet
- Yellow (V5+)
- Blue (V4+)
- Green (V3+)
-
What colour is aqueous cobalt(II) ion?
- Colourless
- Pink
- Yellow
- Blue
-
What colour is the complex [Cu(NH3)4(H2O)2]2+ formed from aqueous copper(II) by adding excess ammonia?
- Yellow
- Deep blue
- Pale green
- Colourless
-
Why is Ti4+ in TiO2 colourless?
- It has a full 3d10 subshell, so it reflects all light
- It is white because of the oxide anion, not the titanium ion
- It absorbs only ultraviolet light because of its 4s electrons
- It has no d electrons, so d-d transitions cannot occur
-
Which species is colourless: [Zn(NH3)4]2+ or [Cu(NH3)4(H2O)2]2+?
- [Zn(NH3)4]2+, because zinc has a full 3d10 subshell
- Neither is coloured because both contain a d-block metal
- [Cu(NH3)4(H2O)2]2+, because copper is a transition metal
- Both are coloured because both contain ammonia
-
A student says all transition metal ions are coloured. Which evaluation is best?
- False, because colour depends only on temperature and the pressure of the solution at 298 K
- True, because ligands always add colour to the metal ion, so every complex is coloured in solution
- True, because all d-block elements have partially filled d orbitals and so absorb visible light
- False, because ions such as Sc3+ and Zn2+ with empty or full d subshells are colourless
-
Why does exchanging H2O for Cl- change the colour of cobalt(II) from pink to blue?
- Cobalt is oxidised to Co(III) by the chloride ions, so its colour changes to the blue shade
- Both the ligand and the coordination number change, altering the d orbital splitting and geometry
- Cl- makes the solution more acidic, which changes the colour only through a change in pH
- Only the charge changes, and charge alone determines colour through the size of the metal ion
-
Why is light absorbed in d-d transitions in the visible region for many aqueous complexes?
- Visible photons have too much energy to promote d electrons
- The energy gap between the split d orbitals matches the energy of visible photons
- The d orbitals are not split by ligands, so visible light passes straight through
- The energy gap is larger than visible photons, so only ultraviolet is absorbed
-
Why do V2+ (d3) and V3+ (d2) have different colours?
- They have identical d electron counts, so the difference must come from the anion
- The difference is only due to the charge, not the electron configuration
- Different d electron counts give different splitting and transitions
- V2+ is colourless because it has no d electrons
-
Why is Cu2+ (d9) coloured while Zn2+ (d10) is colourless?
- Zn2+ has more d electrons, so it absorbs all light
- Cu2+ has more protons, which always absorb visible light
- Both ions are coloured, but Zn2+ is too dilute to see
- d-d transitions need a gap between partially filled d orbitals
Related quizzes
- Electronic configurations and oxidation states Quiz · 15A.1 · 20 questions
- Ligands, complex ions and coordination number Quiz · 15A.2 · 20 questions
- Shapes of complexes and cis-platin Quiz · 15A.4 · 20 questions
- Biological complexes: haemoglobin Quiz · 15A.5 · 20 questions
- Vanadium and dichromate redox chemistry Quiz · 15B.1 · 20 questions
- Ligand exchange reactions Quiz · 15B.2 · 20 questions
- Transition metals as catalysts Quiz · 15B.3 · 20 questions
- Sub-atomic particles, isotopes and relative masses Quiz · 1.1.1 · 20 questions
- Dynamic equilibrium and the equilibrium constant Kc Quiz · 10.1.1 · 20 questions
- Kp and partial pressures Quiz · 11.1.1 · 20 questions