IB Physics SL Topic 5 — The Atomic & Nuclear World Paper 1 & 2 AZX · neutrons = A − Z ~7 min read

Nuclear Notation

Now we know the atom has a tiny nucleus, let’s name what’s inside it — and give every nucleus a neat two-number label. With just a symbol and two numbers, physicists can tell you exactly how many protons and neutrons a nucleus holds. Learn to read that label and a whole chunk of nuclear physics falls into place.

📘 What you need to know

Inside the Atom

Every atom has a dense central nucleus containing protons and neutrons (together called nucleons), surrounded by a cloud of orbiting electrons. Each particle has its own charge and mass, usually quoted in two handy sets of units: charge in coulombs (C) or in elementary charges e, and mass in kilograms (kg) or in atomic mass units (u), where 1 u is roughly the mass of one nucleon.

+ + + + proton charge +1 · mass ≈ 1 u neutron charge 0 · mass ≈ 1 u electron charge −1 · mass ≈ 0 (1/1836 u)nucleus = protons + neutrons; electrons orbit
Protons (red) and neutrons (green) sit together in the nucleus; electrons (blue) orbit far outside. Because the electron is nearly 2000 times lighter than a nucleon, almost all the atom’s mass lives in that tiny nucleus.

Labelling a Nucleus: AZX

Rather than write out “carbon with six protons and six neutrons” every time, we use a compact symbol. The element symbol X carries two numbers on its left: the nucleon number on top and the proton number on the bottom.

X A Z A — nucleon (mass) number = protons + neutrons Z — proton (atomic) number = number of protons X — element symbol neutrons = A − Z neutral atom: electrons = Z
The top number A counts all the nucleons (protons + neutrons); the bottom number Z counts just the protons. Subtract to find the neutrons, and for a neutral atom the electrons match the protons.
A (top) = nucleon number
= protons + neutrons
Z (bottom) = protons
A − Z
number of neutrons

Isotopes

Keep the number of protons the same but change the neutrons and you still have the same element — just a heavier or lighter version of it. These are called isotopes: same Z, different A. Carbon-12 and carbon-14, for instance, both have 6 protons (so both are carbon) but 6 and 8 neutrons respectively. Because chemistry is set by the electrons — and hence by Z — isotopes behave the same chemically but differ in mass.

Quick recap: atoms are protons + neutrons (nucleus) plus orbiting electrons. In AZX, A is the nucleon number and Z the proton number, so neutrons = A − Z and (for a neutral atom) electrons = Z. Isotopes share Z but differ in A.

🧭 Reading a nuclide AZX

  1. Bottom number Z → the number of protons (this fixes which element it is)
  2. Top number A → the number of nucleons (protons + neutrons)
  3. Neutrons = A − Z — subtract the bottom from the top
  4. Neutral atom? Then electrons = Z (protons and electrons balance)
  5. Same Z, different A? They’re isotopes of the same element
WE 1

A neutral atom of aluminium is written 2713Al. State the number of protons, neutrons and electrons it contains.

Read off Z and A Z = 13 (bottom), A = 27 (top) Protons = Z 13 protons Neutrons = A − Z 27 − 13 = 14 14 neutrons Neutral atom → electrons = Z 13 electrons
WE 2

Carbon-12 is written 126C and carbon-14 is written 146C. (a) State the number of neutrons in each. (b) State what makes them isotopes of the same element.

Part (a) — neutrons = A − Z carbon-12: 12 − 6 = 6 neutrons carbon-14: 14 − 6 = 8 neutrons Part (b) — why isotopes Both have Z = 6, so both are carbon (same element)… …but different A means a different number of neutrons same protons, different neutrons → isotopes

💡 Top tips

⚠ Common mistakes

Up next: we shine light on atoms. The next page looks at emission and absorption spectra — the sharp coloured (or dark) lines atoms produce, and how those lines are the fingerprints that reveal an atom’s electron energy levels.

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