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  3. The periodic table
  4. Group 0 and why groups exist

The periodic table · Model

Group 0 and why groups exist

Argon is one per cent of the air and has been going in and out of human lungs for as long as there have been lungs. Chemists analysed air for a century and missed it. How do you miss an element that common?

Start here

Mendeleev's table had no room for argon, because nobody knew argon existed.

It makes up nearly one per cent of the air. It had been going in and out of every pair of human lungs for as long as there had been lungs. Chemists had been analysing air for a century and missed it entirely.

How do you miss an element that common?

Group 0 — helium, neon, argon, krypton, xenon — are the noble gases. Colourless, invisible, and so unreactive that for decades they were thought to form no compounds at all.

The reason is the same one behind every group in the table. An atom's outer shell of electrons is what does the reacting, and the group number tells you how many electrons are in it. Group 0 atoms have a full outer shell. There is nothing to lose and no room to gain, so there is no reaction to have.

Reference · the one idea behind all of it

Group number is outer electrons

0 of 4 opened

Key fact

The group number is the number of outer electrons. Group 0 has a full outer shell, so it reacts with nothing — and that one fact is why every group has the family resemblance it does.

Your turn · four unknown elements

You are told the group and nothing else. Predict anyway.

0 of 4 predicted

Element X · group 1, period 5

A colleague drops a piece into water while you are out of the room. What should you expect to have happened?

Element Y · group 0, period 4

What will Y react with?

Element Z · group 7, period 5

Z is added to a solution of potassium chloride. What happens?

Element W · group 2, period 3

W is burned in air. What is the product, and what would it do to universal indicator once dissolved?

Three uses · unreactive is the point

Why anyone pays for a gas that does nothing

0 of 3 decided

Airships and weather balloons are filled with helium. Hydrogen is lighter and cheaper. Why is helium used?

The inside of a filament light bulb is filled with argon rather than air. Why?

Neon signs glow orange-red. Is the neon reacting?

Five words

Say your answer out loud before you turn each card over. If you cannot say it, you do not know it yet.

Think again

“The noble gases are unreactive because they are gases.”

They are all gases, and they all fail to react. Commit before you read on.

Mastery ladder

Not started yet.

Rungs 3 and 4 you mark yourself.

Rung 1 · Recall

Why are the group 0 elements unreactive?

Rung 2 · The one that catches people

What does an element's group number tell you about its atoms?

Rung 3 · Explain

Explain why elements in the same group react in similar ways, using group 1 and group 0 as your two examples.

Rung 4 · Take it somewhere new

A new element is made in a laboratory and placed in group 1, period 8. Predict three things about it — and then explain why the prediction is harder to trust than the one you made for rubidium.

Key note

Group 0, the noble gases, have full outer shells of electrons and so are almost completely unreactive. The group number of any element tells you how many electrons are in its outer shell, and that number is the reason elements in the same column react in the same way. Being unreactive is useful: it is why argon fills light bulbs and helium fills airships.

Going further

“Reacts with nothing” turned out to be slightly too strong. In 1962 Neil Bartlett persuaded xenon — the biggest of the ordinary noble gases, whose outer electrons are furthest from the nucleus and least tightly held — to form a compound with a platinum fluoride, and a shelf of xenon compounds followed. Nothing has ever been made from helium or neon. The rule survives with a footnote, which is what usually happens to good rules.

Helium is the only element on Earth that genuinely gets away. It is made underground by the slow radioactive decay of heavy elements and collected as a by-product of natural gas, and once it is released it is light enough to leave the atmosphere altogether — there is no getting it back. It is also the only coolant cold enough for the superconducting magnets in an MRI scanner. An element that cannot be manufactured, cannot be recovered and cannot be substituted is a genuinely finite thing, and helium is the clearest example of one in the whole table.

Before this lesson

Next in this unit

At GCSE this becomes

  • Electron configurations written out shell by shell, ionic bonding as the transfer of outer electrons, and the noble gas structure as the target both sides are aiming at.

Where to next

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