Academic Guides 7 - 12

Course Description

Course Structure

SL and HL

Prerequisites:

Nil

Exclusions:

Nil


Physics is the most fundamental of the experimental sciences, as it seeks to explain the universe itself — from the behaviour of subatomic particles to the vast distances between galaxies.

The IB Physics course is a rigorous, mathematically grounded subject structured around five unifying themes: space, time and motion; the particulate nature of matter; wave behaviour; fields; and nuclear and quantum physics. Three overarching concepts — forces, energy and particles — permeate the entire course, ensuring that students develop connections across topics rather than learning them in isolation. Students begin by building a strong foundation in kinematics, forces and energy before progressing through thermal physics, wave phenomena, gravitational and electromagnetic fields, and ultimately the quantum and nuclear world.

Throughout the course, students apply mathematical models, equations and graphical analysis to physical systems of increasing complexity. Emphasis is placed on developing quantitative reasoning — including vector analysis, uncertainty calculations and data interpretation — reflecting the way physicists construct and test knowledge claims. Students also develop practical skills including experimental design, measurement techniques and critical evaluation of evidence.

A significant experimental component underpins the course, culminating in the Internal Assessment (IA) — an individual scientific investigation in which students design and carry out their own research question and communicate their findings in a written report.

The Higher Level course extends both the breadth and depth of understanding — including topics such as rigid body mechanics, special relativity, thermodynamics and electromagnetic induction — and is comparable to first-year university study.

IB Physics develops strong analytical, problem-solving and communication skills, while encouraging students to reflect on the ethical, environmental and societal implications of scientific and technological progress. It provides excellent preparation for further study and careers in physics, engineering, medicine, architecture and related fields.

Coursework

Group 4Syllabus RequirementsTeaching Hours
SLHL
CoreA. Space, time and motion
B. The particulate nature of matter
C. Wave behaviour
D. Fields
E. Nuclear and quantum physics
27
24
17
19
23
42
32
29
38
39
Experimental programmePractical work

Collaborative sciences project

Scientific investigation
20
10
10
40
10
10
Total teaching hours150240

Assessment

Group 4:Physics Standard Level  Physics Higher Level  
Type of AssessmentFormat of assessmentTime (hours)Weighting of final grade (%) Format of assessmentTime (hours)Weighting of final grade (%)
External 380 4.580
Paper 1Part A: 30 multiple-choice questions0.7536Part A: 40 multiple-choice questions (Core and HL)136
Part B:  One data-based question and some questions on experimental work for a total of 25 marks0.75Part B:  One data-based question and some questions on experimental work for a total of 35 marks1
Paper 2Short answer questions and extended response questions. All questions are compulsory, i.e. there is no choice of questions.1.544Short answer questions and extended response questions. All questions are compulsory, i.e. there is no choice of questions.2.544
      
Internal Individual InvestigationInvestigation and write-up of maximum 3000 words1020 Investigation and write-up of 6 to 12 pages1020

Discover
More