The idea

Protons and neutrons sit in a tiny central nucleus. Electrons occupy shells around it, and each shell holds only so many.

ParticleChargeRelative massWhere
Proton1Nucleus
Neutron1Nucleus
ElectronShells around the nucleus

Shell capacity

Drawing one, step by step

Take sodium: atomic number 11, mass number 23.

  1. Protons = atomic number = 11
  2. Electrons = 11 for a neutral atom
  3. Neutrons = mass number − atomic number =
  4. Fill shells outward: 2, then 8, leaving 1 in the third shell
graph TD
    N["Nucleus: 11p, 12n"] --- S1["Shell 1: 2 electrons"]
    S1 --- S2["Shell 2: 8 electrons"]
    S2 --- S3["Shell 3: 1 electron"]

The outermost shell is the whole story

That single lonely electron is why sodium is violently reactive: losing one electron leaves a full shell behind. Chemistry is mostly the behaviour of valence electrons.

Practise at Bohr-Rutherford Diagrams.

Curriculum connection

C2.3

identify the location, relative mass, and charge of subatomic particles within an atom, using the Bohr- Rutherford model

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C2.4

explain the relationship between the position of an element in the periodic table and the structure of its atoms, using models

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