Physics Revision Notes

Leaving Cert Ordinary Level Physics

Chapter 1: Motion, Forces and Energy

These notes explain Motion, Forces and Energy in simple English so students can understand the topic clearly, not just memorise rules. The Ordinary Level version keeps the focus on the core ideas without unnecessary overload.

Focus
Understanding before memorising
Interactive
Simulators and guided tools
Question Style
Worked examples, exam practice and teacher explanation
Format
Website reading and printable notes

Subtopics Covered

  • Chapter 1: Motion, Forces and Energy
  • Objectives
  • Exam-Ready Definitions
  • Concepts Explained Simply
  • Visual Learning Zone
  • Formula Toolbox

What This Pack Includes

  • Structured physics notes formatted for ExamsLogic website reading
  • Exam-focused diagrams, equations, and worked examples
  • Practical notes and mark scheme style guidance from the source files
  • Independent study guidance based on the official curriculum
  • Print-friendly layout for future PDF export when needed
Disclaimer
This publication is an independent educational resource developed by ExamsLogic and compiled by experienced educators. It is based on publicly available official curricula, including Cambridge, Pearson Edexcel, IB, and the Irish Leaving Certificate. This product is not endorsed by, affiliated with, or sponsored by any examination board or governing authority. All registered trademarks remain the property of their respective owners.

Chapter 1: Motion, Forces and Energy

Ordinary LevelMotion, forces, work, energy, power and pressure

1. Objectives

Simple explanation: Treat these objectives as your finish line. If you can do each one without help, the chapter is in strong shape for the exam.
  • Describe motion using speed, velocity and acceleration.
  • Read simple distance-time and speed-time graphs.
  • Use common formulae for force, work, energy, power and pressure.
  • Explain energy transfers in everyday situations.

2. Exam-Ready Definitions

Simple explanation: Learn these definitions in short, exact sentences. In physics, one missing word can turn a full-mark definition into a half-mark answer.
TermMeaning
SpeedDistance travelled per unit time.
VelocitySpeed in a stated direction.
AccelerationChange in velocity per unit time.
ForceA push or pull that can change motion or shape.
EnergyThe ability to do work.

3. Concepts Explained Simply

Simple explanation: This chapter is about how objects move, how we describe that motion, and how forces change what happens next.

This chapter explains how objects move and how forces change motion. At Ordinary Level, the key is to choose the correct formula, use the correct units, and read graphs carefully.

4. Visual Learning Zone

Simple explanation: Read the diagram like a story. Ask what is changing, what stays constant, and which label explains the main physics idea.
Motion graph: distance-time graph
Time (s)Distance (m)movingstoppedfaster motion

5. Formula Toolbox

Simple explanation: Do not treat the formula box like decoration. First decide what each symbol means in the question, then check that your units make sense.
speed = distance / time

force = mass × acceleration

weight = mass × gravity

work = force × distance

power = work / time

pressure = force / area

Always write the formula first, substitute values clearly, then give the final answer with units.

Interactive Simulators

Teacher voice: These tools are here to slow the topic down. Change one value at a time and watch which part of the answer changes with it.
Motion Tool 1
Speed Calculator

Use this to connect the basic formula to real numbers.

Speed
6.00 m/s
Motion Tool 2
Constant Acceleration Displacement

This one helps with SUVAT by showing how the variables work together.

Displacement using s = ut + ½at2
36.00 m

6. Worked Example

Simple explanation: Move through the example line by line. The goal is not only to get the answer, but to see why that method was the sensible choice.
Question: A cyclist travels 120 m in 20 s. Calculate the speed.

Solution:
speed = distance/time = 120/20 = 6 m/s.

7. Examiner Tips

Simple explanation: These are the small habits that protect marks under pressure, especially when the maths is easy but the wording is sneaky.
Tip 1: Underline the quantity the question asks for.
Tip 2: Check units before using a formula.
Tip 3: For diagram questions, label clearly and use arrows where needed.

8. Common Mistakes

Simple explanation: This section matters because students often understand the science but still lose marks through a sign error, unit slip, or definition mix-up.
1. Writing a formula but not substituting correctly.
2. Forgetting the unit in the final answer.
3. Confusing similar terms such as heat/temperature or current/voltage.

9. Examiner Traps

Simple explanation: Pause on these trigger words. Examiners like to hide the method inside one or two ordinary-looking phrases.
Look for hidden words such as from rest, constant speed, halved, complete circuit, and change of state. These words usually tell you which idea or formula to use.

10. Practical Skills

Simple explanation: In a practical answer, imagine the examiner cannot see your setup. You need to state the apparatus, the measurement, the precaution, and the reason clearly.
In practical questions, always mention: apparatus, what is measured, how results are calculated, one precaution, and one way to improve accuracy.

11. Exam Practice Questions

Simple explanation: Treat these as rehearsal, not decoration. Before solving, say out loud what topic the question is really testing.

Q1. State two key definitions from this chapter. [4 marks]

Q2. Use the main formula from this chapter to solve a numerical question. [4 marks]

Q3. Explain one everyday application of this topic. [3 marks]

12. MCQs with Explanations

Simple explanation: Use MCQs to test understanding, not guessing speed. Try to explain why each wrong option is wrong before you check the answer.

1. Which action usually helps you gain marks in a calculation question?
A. Write only the final answer   B. Write formula, substitution and unit   C. Skip units   D. Guess the formula

Answer: B. Examiners can award method marks when your working is clear.

13. Past Paper Spotlight

Simple explanation: This is where theory turns into exam judgement. Notice which facts are given, which facts are implied, and which formula or principle unlocks the question.

Ordinary-style question: A question may ask you to define a term, complete a labelled diagram, and then do one short calculation using the formula box above.

14. Ordinary Level Challenge

Simple explanation: This challenge is there to deepen confidence. Even if it feels harder, start with the simplest idea from the chapter and build from there.

Explain the difference between two similar terms in this chapter using one real-life example.

15. Last-Minute Revision Box

Simple explanation: Use this as your final scan before an exam: key facts, key equations, and the traps you are most likely to forget.
If the exam is tomorrow: learn the definitions, memorise the formulae, practise one diagram, and complete at least two calculation questions with units.

16. Self-Assessment Checklist

Simple explanation: Be honest with the checklist. It is much better to spot a weak area now than in the exam hall.
  • I can define the key terms.
  • I can use the main formulae.
  • I can explain the main diagram.
  • I can avoid the common mistakes.
  • I can answer a short exam-style question.

17. Mark Scheme Guide

Simple explanation: Study the mark scheme wording carefully. It shows what examiners reward, not just what students hope will be accepted.

Q1: 1 mark for each correct definition + 1 mark for correct detail/example.

Q2: formula [1], substitution [1], calculation [1], unit [1].

Q3: correct application [1], physics explanation [1], clear link to everyday situation [1].