Lesson 3.2.5.1
3.2.5.1 General properties of transition metals Quiz: AQA Chemistry, Unit 2
20 questions
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Lesson 3.2.5.1, General properties of transition metals: 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 property is NOT a characteristic of transition metals?
- Forming coloured compounds
- Forming complex ions
- Forming only +1 ions in all compounds
- Variable oxidation states
-
What feature of atoms or ions of Ti to Cu gives rise to their characteristic transition metal properties?
- An incomplete d sub-level
- A completely filled d sub-level
- An incomplete p sub-level
- A completely filled s sub-level
-
Which of these is a transition metal in the Ti to Cu range?
- Titanium
- Aluminium
- Calcium
- Zinc
-
What is a ligand?
- A positive ion that accepts electrons from a metal
- A metal atom or ion surrounded by ligands
- A molecule or ion that donates a pair of electrons to a metal atom or ion to form a co-ordinate bond
- A bond formed between two metal atoms
-
What is a complex in transition metal chemistry?
- A compound made only of metal atoms bonded together
- A solid made of metal and non-metal ions in a lattice
- A molecule with only covalent bonds to hydrogen
- A central metal atom or ion surrounded by ligands
-
What is the co-ordination number of the central copper ion in [Cu(NH3)4]2+?
- 4
- 8
- 2
- 6
-
What is the co-ordination number of the central iron ion in [Fe(H2O)6]3+?
- 6
- 3
- 9
- 4
-
What is the co-ordination number of the central cobalt ion in [Co(C2O4)3]3-, where C2O4^2- is a bidentate ligand?
- 4
- 9
- 3
- 6
-
Which species is acting as a ligand in the complex [Cu(NH3)4]2+?
- NH3 molecule
- Cu2+ ion
- Hydrogen ion
- Nitrogen atom
-
Which property is shown when Fe2+ ions are oxidised to Fe3+ ions?
- Variable oxidation state
- Ionic bonding only
- Complex formation only
- Radioactivity
-
Why does Zn2+ not form coloured aqueous ions in the way that Cu2+ does?
- Zn2+ has no ligands
- Zn2+ has a larger co-ordination number than Cu2+
- Zn2+ is not a metal ion
- Zn2+ has a full 3d sub-level, so no d-d transition of visible light is possible
-
Which property distinguishes transition metals from Group 2 metals such as calcium?
- Forming positive ions
- Conducting electricity
- Forming coloured compounds
- Reacting with water
-
In [Cu(H2O)6]2+ what type of bond joins each water ligand to the copper ion?
- Ionic bond
- Hydrogen bond
- Metallic bond
- Co-ordinate (dative) bond
-
What is the co-ordination number of [CuCl4]2-?
- 2
- 4
- 6
- 8
-
The complex [Ni(H2NCH2CH2NH2)3]2+ contains three bidentate ligands. What is its co-ordination number?
- 3
- 9
- 6
- 4
-
Why do transition metals often act as catalysts?
- They can change oxidation state and provide alternative reaction routes with lower activation energy
- They always produce heat when they react
- They are always gases at room temperature
- They dissolve in all solvents to form ions
-
A transition metal ion forms a co-ordinate bond with a ligand. Which description of the bonding is correct?
- The ligand donates both electrons of a lone pair to the metal
- The metal donates both electrons of its outer shell to the ligand
- The ligand is positively charged and loses its electrons
- Electrons are shared equally between metal and ligand
-
Which statement about the co-ordination number of a complex is correct?
- It is always equal to the oxidation state of the metal
- It is the number of co-ordinate bonds formed to the central metal atom or ion
- It is the number of metal atoms in the complex
- It is the total number of electrons in the complex
-
Explain why transition metal ions are described as forming complexes with many different ligands.
- The metal ion has no empty orbitals available
- The ligands must be metal ions to form bonds
- The metal ion has a full outer shell that repels all ligands
- The metal ion has vacant d orbitals that can accept electron pairs from ligands with lone pairs
-
What is the co-ordination number of the silver ion in [Ag(NH3)2]+?
- 2
- 1
- 6
- 4
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