Every card in The periodic table, Year 10: groups 0, 1 and 7
The whole deck, in order — so you can read it through before your child ever sees it.
- In terms of electrons, why are the noble gases unreactive?
The outer shells of the atoms are full, which is a stable arrangement
HintNothing needs to be gained, lost or shared.
WhyOther atoms react in ways that give them the electron arrangement of a noble gas. A noble gas atom has that arrangement already, so it does not easily react, or even join with other atoms of its own kind.
- Every noble gas except one has eight electrons in its outer shell. Which noble gas has only two? (one word)
Helium
HintIt is the first in the group, with room for just one shell.
WhyIts two electrons fill the first shell, which holds only two, so the arrangement is just as stable as the eight of neon (2,8) or argon (2,8,8).
- The boiling points of three noble gases, going down the group, are: neon −246 °C, argon −186 °C, krypton −153 °C. Would you expect xenon, the next one down, to boil above or below −153 °C?
Above
HintSee which way the figures are heading as you go down the list, remembering that −186 is warmer than −246.
WhyEach noble gas boils at a higher temperature than the one before it, so the pattern lets you predict a value you have not been given. Xenon in fact boils at −108 °C.
- Unlike oxygen or chlorine, the noble gases do not easily form molecules: they exist as single ____.
atoms
HintThe smallest particle of an element, on its own.
WhyOxygen and chlorine pair up as O2 and Cl2, because sharing electrons gives each of the pair a full outer shell. A noble gas has a full outer shell already, so its particles stay separate. That is why the formula of helium gas is simply He.
- Going down Group 0, the boiling points of the noble gases rise. Which quantity, printed beside the atomic number for each element on the periodic table, rises with them?
Relative atomic mass
HintIt tells you how heavy an element's atoms are on average.
WhyHelium (4) has the lowest boiling point, and each heavier noble gas boils at a higher temperature. Linking a trend to a property like this is what lets you estimate values for elements further down the group.
- When lithium is added to water, the two products are ____ and ____.
lithium hydroxide; hydrogen
HintOne product makes the water alkaline; the other is the gas you see as fizzing.
WhyThe metal fizzes steadily as the gas is given off, and the other product dissolves to make an alkaline solution, which is why Group 1 is called the alkali metals. Sodium and potassium give the same kinds of product, more vigorously.
- Potassium reacts with chlorine gas. Name the product and describe what it looks like.
Potassium chloride, a white solid
HintIts name follows the same pattern as table salt's, and it looks much the same.
WhyAll three alkali metals react vigorously with chlorine to form metal chlorides: lithium chloride, sodium chloride and potassium chloride. Each is a white ionic salt that dissolves in water to give a colourless solution.
- A freshly cut piece of sodium is shiny, but it turns dull within seconds as the metal reacts with ____ from the air.
oxygen
HintIt is the reactive gas that makes up about a fifth of air.
WhyThe dull layer is sodium oxide. Lithium, sodium and potassium all tarnish like this, potassium the fastest, which is why they are stored under oil.
- Why is potassium more reactive than lithium, although both have the same number of outer electrons?
Potassium's outer electron is further from the nucleus, so it is lost more easily
HintCompare 2,1 with 2,8,8,1 and count the shells lying between the centre and that final 1.
WhyGoing down Group 1 the atoms get bigger, with more shells between the nucleus and the outer electron. The attraction holding that electron is weaker, so the atom gives it up more readily and reacts faster.
- How many electrons are in the outer shell of an atom of any alkali metal? (number only)
1
HintLithium is 2,?; sodium is 2,8,?; the missing figure is the same each time.
WhyLithium is 2,1, sodium 2,8,1 and potassium 2,8,8,1. That single outer electron is lost when the metal reacts, which is why the alkali metals behave so alike.
- Every halogen atom has ____ electrons in its outer shell, which is why the halogens all react in similar ways.
7
HintThe group number is the clue, just as it is for Group 1.
WhyFluorine is 2,7 and chlorine is 2,8,7. Each halogen atom needs one more electron to fill its outer shell, so they react in the same kinds of way.
- The halogens exist as molecules made of pairs of atoms. What is the formula of a bromine molecule? (type it on one line with an ordinary digit, as in H2)
Br2
HintWrite the element's two-letter symbol, then the number in a pair.
WhyAll the halogens are made of two-atom molecules: F2, Cl2, Br2 and I2. So in a symbol equation chlorine gas is written Cl2, never Cl.
- Going down Group 7 from chlorine to bromine to iodine, what happens to the melting point and the boiling point?
Both increase
HintAt room temperature the first is a gas, the second a liquid and the third a solid.
WhyFurther down the group the molecules have a higher relative molecular mass, and the melting and boiling points are higher. That is why chlorine is a gas at room temperature, bromine a liquid and iodine a solid.
- The ion, with a charge of 1−, that a halogen atom forms when it gains one electron from a metal
A halide ion
HintChloride, bromide and iodide are the three you will meet most; the family word shares their ending.
WhyWhen chlorine, bromine or iodine reacts with a metal, each halogen atom takes one electron. The product is an ionic salt, such as sodium chloride or potassium bromide: white or colourless crystals.
- Chlorine reacts with a non-metal, hydrogen, to make hydrogen chloride. What kind of compound is this: ionic, or made of small covalent molecules?
Made of small covalent molecules
HintNeither atom is a metal, so neither gives an electron away outright.
WhyWith non-metals the halogens share electrons instead of taking them, forming covalent bonds. The compounds, such as hydrogen chloride, HCl, are made of small molecules, and many are gases at room temperature.
- Which one of chlorine, bromine and iodine can displace both of the others from solutions of their salts? (one word)
Chlorine
HintReactivity in this group runs the opposite way to Group 1, where the lowest metal is the liveliest.
WhyA more reactive halogen displaces a less reactive one from a solution of its salt. Reactivity falls going down Group 7, so the top one of these three displaces the other two, bromine displaces only iodine, and iodine displaces neither.
- Iodine solution is added to potassium bromide solution. Is there a reaction? Give the reason.
No — iodine is less reactive than bromine
HintCompare where the two halogens sit in Group 7.
WhyDisplacement only works downwards: a halogen can push out one that is below it in the group, never one above. The bromide ions stay in the solution and nothing new is formed.
- Complete the word equation: chlorine + potassium iodide → ____ + ____.
potassium chloride; iodine
HintThe more reactive halogen takes the other's place in the salt and turns it out as the element.
WhyThe halogen added is more reactive than the one in the salt, so it ends up in the compound and the other is set free. The metal is unchanged throughout; it simply swaps partners.
- Bromine water is added to potassium iodide solution, and iodine is displaced. Write the balanced symbol equation. (State symbols are not needed.)
Br2 + 2KI → 2KBr + I2
HintBoth halogens are two-atom molecules, so you will need two units of each potassium compound.
WhyThe formulae are Br2, KI, KBr and I2. One Br2 molecule supplies two bromine atoms, enough for two KBr, and two KI supply the two iodine atoms in I2. Check each element: Br 2 and 2, K 2 and 2, I 2 and 2.
- A solution of an unknown halogen displaces iodine from potassium iodide solution, but does nothing to potassium bromide solution or to potassium chloride solution. Which halogen is it: chlorine, bromine or iodine? (one word)
Bromine
HintPlace it in the order of reactivity: above the element it pushes out, and not above the others.
WhyIt displaces iodine, so it is more reactive than iodine. It does not displace chlorine, so it is less reactive than chlorine. A halogen cannot displace itself, so no change with the middle solution fits as well.
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4★ GCSE-CHEM-PER-0019
5★ GCSE-CHEM-PER-0020
6★ GCSE-CHEM-PER-0021
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Keep what you learn
Here, nothing is saved. In your child’s own sky every card is scheduled — it comes back just before they’d forget it — and the professor who wrote it is one tap away.