Atomic Structure

Learn and apply Atomic Structure in the published Chemistry course sequence.

  • GCE A-Level H1 Chemistry 8873-2027
Learning goals
  • identify and describe protons, neutrons and electrons in terms of their relative charges and relative masses
  • deduce the behaviour of beams of protons, neutrons and electrons in an electric field
  • describe the distribution of mass and charges within an atom
  • deduce the numbers of protons, neutrons and electrons present in both atoms and ions given proton and nucleon numbers (and charge)
  • — describe the contribution of protons and neutrons to atomic nuclei in terms of proton number and nucleon number
  • — distinguish between isotopes on the basis of different numbers of neutrons present
  • describe the number and relative energies of the s, p and d orbitals for the principal quantum numbers 1, 2 and 3 and also the 4s and 4p orbitals
  • describe the shapes of s and p orbitals [knowledge of wave functions is not required]
  • state the electronic configuration of atoms and ions given the proton number (and charge)
  • explain the factors influencing the ionisation energies of elements (see the Data Booklet) (see also Section 4)
  • deduce the electronic configurations of elements from successive ionisation energy data
  • interpret successive ionisation energy data of an element in terms of the position of that element within the Periodic Table

H1 Atomic Structure learning outcomes

Atomic structure is the evidence chain behind electron arrangements and ionisation-energy data. Follow the sequence from particles to orbitals, configurations and then energetic evidence.

Use this hub

First learning: work through the five lessons in order. Revision: use the quick reference to find the fact or explanation you need, then open that lesson. H1 8873 requires s and p orbital shapes; d-orbital shapes belong to H2 9476.

What You’ll Learn

  • Use particle, isotope and ion data to determine atomic composition.
  • Describe s and p orbitals, write electron configurations and explain ionisation-energy evidence.
  • Deduce electronic structure and Periodic Table position from successive ionisation energies.

The order is deliberate: each lesson supplies language or evidence used by the next. When revising, jump directly to the lesson matching the gap in your answer.

  • Subatomic Particles, Isotopes and Ions

    Use particle properties, nuclide notation and charge to determine the composition of atoms, isotopes and ions.

  • Atomic Orbitals: Energies and Shapes

    Separate orbital capacity, relative energy and the H1-required s and p shapes without importing d-orbital shape content.

  • Orbitals and Electron Configuration

    Build exam-safe electron configurations for atoms and ions, then connect arrangements to chemical evidence.

  • First Ionisation Energy Trends

    Explain ionisation-energy trends and anomalies using attraction, shielding, distance and subshell energy.

  • Successive Ionisation Energies

    Read large jumps in successive ionisation-energy data to infer valence electrons and Periodic Table position.

Quick Reference

IdeaExam-ready reminder
Orbital capacityone orbital holds two electrons; s has one orbital and p has three
First ionisation energyenergy required to remove one electron from each atom in one mole of gaseous atoms
Successive ionisationa large jump shows removal has begun from an inner shell
Build a complete explanation

For ionisation-energy questions, name the changing factor, state how it changes the attraction between the nucleus and the electron being removed, and then link that attraction to the energy required.

Practice and Check Your Understanding

Use practice in two passes: first without notes, then revisit only the lesson linked to the misconception you exposed.

  • Atomic Structure Topic Practice

    Course-specific 8873 questions with server-graded feedback across the whole topic.

  • Atomic Structure: Check Your Understanding

    Check the key ideas, read the targeted feedback, then try a fresh question independently.

Practise

Work through questions with marking and feedback as you learn.

About 10 minutes

Questions are picked at random each time you start. You'll see the answer after each question. It's for practice only and doesn't count towards mastery.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Practise after feedback

After a check, practise the skills it showed you need to work on.

About 10 minutes

Questions are picked at random each time you start. You'll see the answer after each question. It's for practice only and doesn't count towards mastery.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Check what I know

Start here to see which parts you already know.

About 8 minutes

Answer 7 short questions. It shows what to work on next and doesn't count towards mastery.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Check my progress

When you feel ready, answer on your own to show what you can do.

About 10 minutes

Answer 7 questions. You'll see your score, the answers and explanations at the end. Your result can count towards your course progress.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Check again

After practising what your progress check showed, check those skills again.

About 10 minutes

Answer 7 questions. You'll see your score, the answers and explanations at the end. Your result can count towards your course progress.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.

Review

Come back later to see whether your learning has lasted.

About 10 minutes

Answer 7 questions. You'll see your score, the answers and explanations at the end. A scheduled review counts towards your course progress only when it is due.

Recent attempts

History is stored only in this browser.

No completed attempts are saved yet.