Atomic structure, nuclide notation and isotopes

Read atomic models and nuclide notation, calculate neutrons and identify isotopes.

  • SEC G3 Combined Science Chemistry component 2027
On this page

Learning objectives

  • state the relative charges and approximate relative masses of a proton, a neutron and an electron
  • describe, with the aid of diagrams, the structure of an atom as consisting of protons and neutrons (nucleons) in the nucleus and electrons arranged in shells (energy levels) (knowledge of s, p, d and f classification is not required; a copy of the Periodic Table will be available in the examination)
  • define proton (atomic) number and nucleon (mass) number
  • interpret and use nuclide notations such as ¹²₆C
  • define the term isotopes

Your goal is to interpret atomic structure, nuclide notation and isotopes, including calculating neutrons with A-Z.

1. Retrieve what you know

What property stays fixed when an atom undergoes a physical change of state? Recall that element identity is not set by particle spacing or motion.

Check the retrieval

The atom’s proton number stays fixed. A physical state change does not alter its nucleus.

2. Atomic and nuclide models

Structure of a carbon-12 atomA carbon-12 atom model: six protons and six neutrons form the nucleus; six electrons occupy shells. The drawing is schematic and not to scale.electron (−1)nucleusproton: charge +1relative mass 1neutron: charge 0relative mass 1electrons: negligiblerelative massSchematic model—not to scale. Electrons occupy shells around a tiny nucleus.
A carbon-12 atom model: six protons and six neutrons form the nucleus; six electrons occupy shells. The drawing is schematic and not to scale.

Use this as a model, not a scale drawing: the nucleus is extremely small compared with the atom. Protons and neutrons are in the nucleus; electrons occupy shells around it. A proton has charge 1 + and relative mass 1, a neutron has charge 0 and relative mass 1, and an electron has charge 1- and a much smaller relative mass.

For ^A_ZX, read Z first. It is the proton number and fixes the element. A is the nucleon number, the total number of protons and neutrons. Therefore:

neutrons = A-Z

Isotopes are atoms of the same element with the same proton number but different neutron numbers.

3. Modelled example: decode a nuclide

Modelled example 1

Read the nucleus in a safe order

Core

Problem

Find the proton and neutron counts in ²³₁₁Na.

Study the worked solution
  1. Read Z

    Method

    Use the lower number as proton number.

    Reason

    Proton number identifies the element.

    Working

    Protons = 11.
  2. Calculate A − Z

    Method

    Subtract proton number from nucleon number.

    Reason

    Nucleon number counts protons plus neutrons.

    Working

    Neutrons = 23-11 = 12.

4. Guided attempt: identify isotopes

Guided practice 2

Decide whether two nuclides are isotopes

About 4 min

Problem

Compare ³⁵₁₇Cl and ³⁷₁₇Cl.

Try this before viewing the solution

Relationship

Hints

Hint 1: identity first

Compare proton numbers before any other particle count.

Hint 2: neutron difference

Use A-Z for each nuclide, then compare the neutron counts.

View solution step by step
  1. Fix identity

    Method

    Compare proton numbers first.

    Reason

    Both have Z = 17, so both are chlorine.

    Working

    Same element.
  2. Compare neutrons

    Method

    Calculate 18 and 20 neutrons.

    Reason

    Same protons but different neutrons is the definition of isotopes.

    Working

    They are isotopes of chlorine.

5. Misconception contrast

Nucleon number is not neutron number: it counts protons and neutrons. Isotopes do not become different elements because their neutron counts differ; only a change in proton number would change element identity.

6. Changed-context transfer

An unfamiliar neutral nuclide has nucleon number 40 and proton number 18. Determine its proton, neutron and electron counts, then state what another isotope of that element must share.

Show transfer feedback

It has 18 protons, 40-18 = 22 neutrons and 18 electrons because it is neutral. Another isotope must also have 18 protons but would have a different neutron count.

7. Independent check

Decode ³¹₁₅P and compare it with ³²₁₅P. State the decisive evidence for their element identity and isotope relationship.