Question 1
Why is SiO₂ a giant structure rather than a simple molecule?
Need a hint for Question 1?
Look for a continuous network of bonds.
Check Question 1
Its covalent bonds extend through a continuous network, not separate SiO₂ molecules.
Relate bonding and structure to the properties and uses of diamond, graphite, silica and metals.
| English | Chinese |
|---|---|
| giant covalent | 巨型共价结构 |
| delocalised electron | 离域电子 |
| malleable | 可锻的 |
Try each question before opening its hint or answer. Use paper for calculations and diagrams.
Why is SiO₂ a giant structure rather than a simple molecule?
Look for a continuous network of bonds.
Its covalent bonds extend through a continuous network, not separate SiO₂ molecules.
Explain why graphite is useful as both a lubricant and an electrode.
Explain sliding layers and mobile electrons separately.
Layers slide because forces between them are weak. Delocalised electrons carry charge.
Explain why a metal conducts electricity and can change shape without shattering.
Metallic attraction persists when layers change position.
Delocalised electrons move and carry charge. Layers of ions slide while metallic attraction remains.
Use the matching chapter worksheet. Attempt independently, compare your reasoning with your partner, then bring unresolved questions to your teacher.