This question is about elements in Group 7 of the Periodic Table.
The table shows some properties of Group 7 elements.
| Element | Molecular formula | Melting point (∘C^\circ\text{C}∘C) | Boiling point (∘C^\circ\text{C}∘C) | Order of reactivity |
|---|---|---|---|---|
| Fluorine | F2\text{F}_2F2 | −220-220−220 | −188-188−188 | most reactive ↓\downarrow↓ |
| Chlorine | Cl2\text{Cl}_2Cl2 | .................... | −34-34−34 | ↓\downarrow↓ |
| Bromine | Br2\text{Br}_2Br2 | −7-7−7 | 595959 | ↓\downarrow↓ |
| Iodine | I2\text{I}_2I2 | 114114114 | .................... | ↓\downarrow↓ |
| Astatine | At2\text{At}_2At2 | 302302302 | 337337337 | least reactive |
Complete the table by estimating the missing melting point of chlorine and the boiling point of iodine. Use ideas about trends down Group 7.
Bromine reacts with potassium iodide, KI\text{KI}KI, in a displacement reaction. Write the balanced symbol equation for this reaction.
Explain, in terms of the arrangement of electrons, the decrease in reactivity from fluorine to astatine.
Aluminium reacts with chlorine to form aluminium chloride according to the equation:
2Al+3Cl2→2AlCl32\text{Al} + 3\text{Cl}_2 \rightarrow 2\text{AlCl}_32Al+3Cl2→2AlCl3
Calculate the mass of aluminium chloride that can be made from 1.80 g1.80\text{ g}1.80 g of aluminium. Give your answer to 3 significant figures.
(The relative atomic mass, ArA_rAr, of Cl\text{Cl}Cl is 35.535.535.5 and of Al\text{Al}Al is 27.027.027.0).