Every card in Bonding and structure, Year 10: ionic compounds, small molecules and polymers
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- Why does sodium chloride have a high melting point?
A lot of energy is needed to break its many strong ionic bonds
HintThink about how each particle in the lattice is held, and by what number of neighbours.
WhyIn the giant ionic lattice every ion is strongly attracted to the oppositely charged ions all around it. All of these attractions have to be overcome before the ions can move past one another, and that takes a large amount of energy.
- Solid sodium chloride does not conduct electricity. Why not?
Its ions are fixed in position and cannot move
HintTo carry a current, charged particles have to be able to travel.
WhyThe solid is full of charged particles, but each one is held in place in the lattice. Charge can flow only when the ions are free to move, which happens when the compound is melted or dissolved in water.
- An ionic compound conducts electricity only when it is ____ or ____ in water.
molten; dissolved
HintBoth are ways of breaking up the rigid lattice so that the charged particles can travel.
WhyHeating an ionic solid until it becomes a liquid, or stirring it into water, frees the ions from their fixed positions. Once they can move, charge can flow.
- When molten sodium chloride conducts electricity, which particles carry the charge through the liquid? (one word)
Ions
HintNot the particles that carry current in a copper wire: here it is the charged sodium and chloride particles themselves.
WhyIn the liquid, the positive sodium ions and negative chloride ions are free to move, and their movement is the flow of charge.
- A white solid melts at 770 °C. It does not conduct electricity as a solid, but it does conduct when dissolved in water. What type of bonding does it have?
Ionic bonding
HintCharged particles must be present, but locked in place until the solid is broken up.
WhyA high melting point shows strong forces throughout a giant structure. Conducting only when dissolved (or molten) shows that the charge carriers are ions that are fixed in the solid. Together these point to a giant ionic lattice.
- Steam is still made of H2O molecules. So what is overcome when water boils?
The weak forces between the molecules
HintNothing inside each H2O unit changes; look at what holds one unit near the next.
WhyBoiling separates whole molecules from one another. The strong covalent bonds inside each molecule are not broken, which is why little energy is needed and why substances made of small molecules have low boiling points.
- The weak forces of attraction that act between neighbouring molecules
Intermolecular forces
HintThe prefix is the one in "international": between nations.
WhyThese attractions are much weaker than the covalent bonds inside a molecule. They are what has to be overcome when a substance made of molecules melts or boils.
- Substances made of small molecules do not conduct electricity because their molecules carry no overall ____.
charge
HintIt is what an ion has and a neutral particle lacks.
WhyAn electric current is a flow of charged particles. A molecule is neutral overall, and it has no delocalised electrons, so even when the molecules are free to move there is nothing to carry a current.
- Butane, C4H10, boils at a higher temperature than methane, CH4. Both are made of small molecules. Why does butane have the higher boiling point?
Its bigger molecules have stronger intermolecular forces
HintCompare the two formulae and ask which particle has more surface to attract its neighbours.
WhyThe forces between molecules increase with the size of the molecules. More energy is then needed to separate them, so the melting and boiling points rise.
- At room temperature, substances made of small molecules are usually in which two states?
Gas or liquid
HintWith so little holding one molecule to the next, they are rarely locked rigidly in place.
WhyThe forces between small molecules are weak, so their melting and boiling points are low. Many have already melted, or even boiled, by the time they reach room temperature: oxygen and methane are gases, water is a liquid.
- Substances made of small molecules are often gases, but polymers are solids at room temperature. Why?
The intermolecular forces between the very large polymer molecules are relatively strong
HintLonger chains have far more places where one chain can attract the next.
WhyThe attraction between molecules grows with their size, and polymer molecules are enormous. The total attraction between neighbouring chains is strong enough to hold them in place at room temperature.
- What type of bond joins the atoms to one another along a polymer chain? (one word)
Covalent
HintThe atoms in the chain are non-metals, mostly carbon and hydrogen.
WhyEach atom in the chain shares pairs of electrons with its neighbours. These bonds are strong, so the chains themselves do not fall apart when the polymer softens or melts.
- Poly(ethene) and diamond both contain strong covalent bonds, yet poly(ethene) melts at a far lower temperature. Why?
Melting poly(ethene) only separates the chains; melting diamond breaks covalent bonds
HintAsk what actually has to come apart in each case for the solid to flow.
WhyPoly(ethene) is made of separate long molecules held to each other by intermolecular forces, which are weaker than covalent bonds. Diamond is one giant structure, so nothing can move until covalent bonds themselves are broken.
- A diagram shows several very long chains of carbon atoms. Each atom is joined by lines to its neighbours in the chain and to hydrogen atoms, and the separate chains lie side by side. Is this a substance of small molecules, a polymer or a giant covalent structure?
A polymer
HintThe units are very long, but they are still separate from one another.
WhySmall molecules contain only a few atoms each. A giant covalent structure is one continuous network with no separate units. Long, separate chains of covalently bonded atoms are the mark of a polymer.
- In a polymer, the atoms within each chain are joined by covalent bonds, but one chain is held to the next only by ____ forces.
intermolecular
HintIt is the same kind of attraction that holds one water molecule near another.
WhyEach chain is a single huge molecule. The attractions between chains are weaker than the bonds along them, which is why many polymers soften and melt when heated without their chains breaking up.
1★ GCSE-CHEM-BON-0031
2★ GCSE-CHEM-BON-0032
3★ GCSE-CHEM-BON-0033
4★ GCSE-CHEM-BON-0034
5★ GCSE-CHEM-BON-0035
6★ GCSE-CHEM-BON-0036
7★ GCSE-CHEM-BON-0037
8★ GCSE-CHEM-BON-0038
9★ GCSE-CHEM-BON-0039
10★ GCSE-CHEM-BON-0040
11★ GCSE-CHEM-BON-0041
12★ GCSE-CHEM-BON-0042
13★ GCSE-CHEM-BON-0043
14★ GCSE-CHEM-BON-0044
15★ GCSE-CHEM-BON-0045
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