GCSE Combined Science (AQA)
622 videos | 38 hours
Please subscribe to watch this video.
This, and all other videos, are included in our premium subscriptions.
Premium accounts get access to all videos.
Enable autoplay to keep watching
Your browser is blocking videos from playing automatically. To turn it back on:
Safari (Mac): Click the Safari menu item in the top bar, then Settings → Websites → Auto-Play, then set Auto-Play to Allow All Auto-Play for the current website.
Safari (iPhone/iPad): open the Settings app, then Apps → Safari → Auto-Play, and select Allow All Auto-Play.
Giant Covalent Structures
- Different types of covalent structures exist, such as water and diamond.
- Water has a simple covalent structure, while diamond has a giant covalent structure.
- Giant covalent structures consist of a large number of non-metal atoms bonded together.
- Diamond is an example of a giant covalent structure made entirely of carbon atoms.
- Atoms in giant covalent structures are bonded by strong covalent bonds.
- Many giant covalent structures are made of carbon, including diamond and graphite.
- Silicon dioxide (silica) is another example of a giant covalent structure, forming solid crystals.
- Silicon dioxide is made from silicon atoms covalently bonded to oxygen atoms.
- Silicon dioxide turns into glass when heated and is used in glass products.
- Giant covalent structures are solids with very high melting and boiling points.
- Silicon dioxide has a melting point of 1,710��C and a boiling point of 2,230��C.
- High melting and boiling points are due to the need to overcome strong covalent bonds.
- A lot of energy is required to break these bonds in giant covalent structures.
- This is different from substances with simple covalent structures, like water, where only weak intermolecular forces need to be broken.
Please subscribe to access these revision notes.
This, and all other video notes, are included in our premium subscriptions.
Premium accounts get access to all videos and revision notes.