Lesson 3.1.3.4

3.1.3.4 Bonding and physical properties Quiz: AQA Chemistry, Unit 1

20 questions

In partnership with Revision Ninja

Lesson 3.1.3.4, Bonding and physical properties: 20 multiple choice questions for the AQA Chemistry (7405), Unit 1: Physical chemistry, 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.

Host this setFree Play

The 20 questions

  1. Which of these is NOT one of the four types of crystal structure in the specification?

    • Metallic
    • Ionic
    • Molecular
    • Ceramic
  2. Which crystal structure does diamond have?

    • Macromolecular (giant covalent)
    • Ionic lattice of charged ions
    • Metallic lattice of positive ions
    • Molecular, held together by weak forces
  3. Which of these is an example of a molecular structure?

    • Iodine
    • Sodium chloride
    • Magnesium
    • Diamond
  4. Which solid has a giant covalent structure and conducts electricity?

    • Iodine
    • Ice
    • Graphite
    • Diamond
  5. Which crystal structure does sodium chloride have?

    • Macromolecular
    • Molecular
    • Metallic
    • Ionic
  6. Why does ice have a lower density than liquid water?

    • Hydrogen bonds hold the molecules further apart in an open hexagonal lattice
    • Ice contains dissolved gases that expand the solid when the water freezes into ice
    • Ice contains more protons than liquid water, which makes its molecules repel more strongly
    • Ice has covalent bonds that expand as the solid forms, pushing the molecules further apart
  7. Which substance has a high melting point and conducts electricity in the solid state?

    • Solid sodium chloride
    • Iodine
    • Magnesium
    • Diamond
  8. Why does diamond have a very high melting point?

    • Many strong covalent bonds must be broken throughout the giant lattice
    • Diamond has ionic bonds between carbon atoms that need little energy to break apart
    • Diamond has weak van der Waals forces between atoms that are easily broken on heating
    • Diamond contains delocalised electrons that repel each other strongly on heating the solid
  9. Why does graphite conduct electricity?

    • Each carbon has a delocalised electron that can move between the layers
    • Graphite's layers are held together by metallic bonds, which allow electrons to flow
    • Graphite contains free ions that move through the solid when a voltage is applied to it
    • Graphite has no bonds between atoms, so electrons can move freely through its structure
  10. Why does iodine have a low melting point even though its covalent bonds are strong?

    • Melting releases delocalised electrons from the iodine atoms, which then move freely through the solid
    • Melting converts iodine into an ionic lattice, which then holds the atoms together much more strongly than before
    • Melting only overcomes the weak intermolecular forces between molecules, not the covalent bonds within each I2 molecule
    • Melting breaks the covalent bonds, which are weak in iodine and easily broken by a small input of heat
  11. When iodine sublimes, which energy change is involved?

    • Energy is released as iodine turns to gas, which is why iodine feels cold when it sublimes
    • No energy is involved in sublimation, because the molecules simply drift apart in the gas
    • Energy must be supplied to overcome the intermolecular forces between iodine molecules
    • Covalent bonds within I2 molecules must be broken before the iodine can turn into a gas
  12. Which description best fits an ice crystal?

    • Metallic, with delocalised electrons
    • Macromolecular, with covalent bonds throughout
    • Ionic, with a lattice of H+ and O2- ions
    • Molecular, with hydrogen bonds between molecules
  13. Solid magnesium conducts electricity but solid sodium chloride does not. Why?

    • In magnesium, delocalised electrons are free to move, but in solid NaCl the ions are fixed in the lattice
    • Magnesium is a molecular substance, so its electrons are free to flow between neighbouring molecules
    • Magnesium contains covalent bonds that allow electrons to conduct through the solid metal sample
    • NaCl has delocalised electrons that cannot move because they are locked into fixed positions
  14. Why do molten ionic compounds conduct electricity?

    • Electrons are delocalised in the melt
    • The ions are free to move and carry charge
    • Molecules move freely to carry current
    • Protons are released when the compound melts
  15. Which substance has the highest melting point: NaCl at 801 C, iodine at 114 C or diamond above 3500 C?

    • All three have similar melting points because they all involve comparable bonding in solids
    • NaCl, because its small ions pack tightly, so the lattice needs a great deal of energy
    • Iodine, because its molecules are large and need a great deal of energy to be separated
    • Diamond, because breaking covalent bonds throughout the giant lattice needs the most energy
  16. Why is graphite soft even though its covalent bonds within the layers are strong?

    • Graphite has ionic bonds that are weak
    • Graphite contains delocalised electrons that dissolve
    • Graphite molecules are small, so they melt easily
    • Layers are held by weak forces, so they can slide over each other
  17. A solid is hard, has a very high melting point and does not conduct electricity as a solid or as a liquid. Which structure is most likely?

    • Metallic lattice of positive ions
    • Molecular, held together by weak forces
    • Ionic lattice of oppositely charged ions
    • Macromolecular (giant covalent)
  18. Which set of properties is expected of a simple molecular substance such as iodine?

    • Malleable with conduction when solid
    • Low melting point and no conduction of electricity as a solid
    • High melting point and conduction when dissolved in water
    • Very high melting point and conduction when solid
  19. Which statement correctly relates structure to electrical conductivity?

    • Conduction needs charged particles free to move, such as delocalised electrons or mobile ions
    • Macromolecular structures always conduct electricity, because their covalent bonds carry current through them
    • Ionic solids conduct when solid because the ions are free to move through the rigid lattice
    • Only molecular substances conduct electricity, because their molecules carry free electrons across
  20. Which of these is a giant metallic structure?

    • Iodine
    • Ice
    • Graphite
    • Magnesium

All AQA Chemistry quizzes