IB Mathematics · Complete topic list

1037 topic ideas for the Mathematics IA and Extended Essay.

Find suitable starting points for Mathematics AA and AI at SL and HL—from calculus, statistics and modelling to geometry, number theory and experimental investigations.

Mathematics and applications

Compare 1037 ideas clearly.

The list mixes calculus, statistics, modelling, geometry, number theory, computer science, sport, environmental topics and other areas. Each entry includes a short explanation and visible methods such as differential calculus, integral calculus, statistics or regression.

Planning guidance, not official topic approvalThe IA, EE, AA, Math AI, SL and HL classifications are editorial guidance. The current subject guide, assessment session, mathematical depth, focus and school approval remain decisive.
1

Select an idea. Titles and areas are starting points, not finished research questions.

2

Check A and C. These codes give an initial indication of assessment type, course and level.

3

Read P, M and S. They show possible independent direction, tools, and safety or data-protection needs.

Work
Course
Level

Topics 1–25 of 1037

Mixed topic list for the Mathematics IA and Mathematics Extended Essay
No. Topic idea A C P M S
1 Game theory & decision-makingNash equilibria in extended rock-paper-scissors games

Turn “Nash equilibria in extended rock-paper-scissors games” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modelling
3 9 1811 0 0
2 Transport & mobility mathematicsModelling delay propagation along a bus route

Turn “Modelling delay propagation along a bus route” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingGraph theory
3 9 161112 6813 0
3 Biomathematics & medicineModelling blood-glucose levels after meals with the Bergman minimal model

Turn “Modelling blood-glucose levels after meals with the Bergman minimal model” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential calculus
2 8 111 1319 3
4 Operations research & logisticsRoute optimisation for school deliveries with capacity constraints

Turn “Route optimisation for school deliveries with capacity constraints” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential calculusGraph theoryGeometryOptimisation
3 9 46711 13 0
5 Environmental mathematics & sustainabilityCalculating a family's ecological footprint using geometric means

Turn “Calculating a family's ecological footprint using geometric means” into a focused research question and select a transparent dataset or your own measurements. Compare suitable models, examine residuals, and evaluate uncertainty, outliers, and limitations.

Statistics & probabilityGeometry
1 6 15 13 0
6 Networks & social systemsCentrality measures in an anonymised school collaboration network

Turn “Centrality measures in an anonymised school collaboration network” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Graph theory
3 9 4712 1314 3
7 Sports biomechanics & movementCalculating the optimal approach speed in long jump

Turn “Calculating the optimal approach speed in long jump” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential calculusOptimisation
3 9 1311 13 1
8 Information & coding theoryShannon entropy across different written languages

Turn “Shannon entropy across different written languages” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Geometry
3 8 8910 13 0
9 Data science & introductory algorithmsBenford's law in financial data and election results

Turn “Benford's law in financial data and election results” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Simulation & algorithms
3 6 19 0 0
10 Robotics, control & sensingOptimising PID control for a line-following robot

Turn “Optimising PID control for a line-following robot” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential calculusSequences & seriesOptimisation
2 8 271112 571320 1
11 Chaos & dynamical systemsThe logistic map and the transition to chaos

Turn “The logistic map and the transition to chaos” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modelling
2 2 1 13 0
12 Image processing & computer graphicsChoosing thresholds for edge detection on personal photographs

Turn “Choosing thresholds for edge detection on personal photographs” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Graph theory
3 9 2712 713 0
13 Music, acoustics & wavesCalculating optimal room acoustics for a music studio

Turn “Calculating optimal room acoustics for a music studio” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential calculusTrigonometryOptimisation
3 9 1811 913 0
14 Language & text mathematicsHeaps’ law and vocabulary growth in long texts

Turn “Heaps’ law and vocabulary growth in long texts” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modelling
3 9 891012 13 0
15 Art, design & architectureProportions in the human face and claims about the golden ratio

Turn “Proportions in the human face and claims about the golden ratio” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Geometry
3 9 12 17 0
16 Education & learning analyticsEstimating forgetting curves from personal flashcard logs

Turn “Estimating forgetting curves from personal flashcard logs” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modelling
1 9 1471112 13 3
17 Astronomy & spaceflightCalculating satellite orbits with Kepler's laws

Turn “Calculating satellite orbits with Kepler's laws” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modelling
2 2 1 1317 0
18 Economic models & marketsEstimating price elasticity from public retail data

Turn “Estimating price elasticity from public retail data” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modelling
3 6 591112 13 0
19 Psychology & cognitionReaction-time distributions within a class

Turn “Reaction-time distributions within a class” into a focused research question and select a transparent dataset or your own measurements. Compare suitable models, examine residuals, and evaluate uncertainty, outliers, and limitations.

Statistics & probability
1 6 14 619 3
20 Time series & forecastingComparing exponential smoothing and autoregressive models for electricity demand

Turn “Comparing exponential smoothing and autoregressive models for electricity demand” into a focused research question and select a transparent dataset or your own measurements. Compare suitable models, examine residuals, and evaluate uncertainty, outliers, and limitations.

Functions & modellingSequences & seriesTime-series analysisAlgebra
2 8 791112 13 0
21 Probability & riskCalculating expected loss for different insurance types

Turn “Calculating expected loss for different insurance types” into a focused research question and select a transparent dataset or your own measurements. Compare suitable models, examine residuals, and evaluate uncertainty, outliers, and limitations.

Statistics & probabilityFinancial mathematics
1 6 5 13 0
22 Geospatial & cartographic mathematicsDistortion in different map projections as a function of latitude

Turn “Distortion in different map projections as a function of latitude” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Algebra
2 8 691012 13 0
23 Culinary mathematicsCalculating the best-value pizza size by area and price

Turn “Calculating the best-value pizza size by area and price” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential calculusGeometryOptimisation
1 9 159 113 0
24 Engineering design & optimisationMinimising truss weight under load constraints

Turn “Minimising truss weight under load constraints” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential calculusOptimisation
2 2 271011 1320 0
25 ThermodynamicsNewton's law of cooling for coffee in ceramic, glass, metal and paper cups

Turn “Newton's law of cooling for coffee in ceramic, glass, metal and paper cups” into a measurable or mathematically precise research question. Develop an appropriate model, test it with your own data, constructions, or examples, and evaluate assumptions, errors, and possible improvements.

Functions & modellingDifferential equations
1 9 15 3 0
Code legend

What A, C, P, M and S mean.

The table stays narrow on a phone by replacing long descriptions with numeric codes. Entries may contain several P and M codes.

AAssessment type
1
Internal Assessment (IA)
2
Mathematics Extended Essay (EE)
3
Potentially suitable for an IA or EE, depending on focus and mathematical depth
CCourse and level
1
Mathematics AA SL
2
Mathematics AA HL
3
Mathematics AA at SL or HL
4
Mathematics AI SL
5
Mathematics AI HL
6
Mathematics AI at SL or HL
7
Mathematics AA or AI at SL
8
Mathematics AA or AI at HL
9
Mathematics AA or AI at SL or HL
PWays to demonstrate independent direction and personal engagement
1
Own data, measurements, observations or experiment
2
Own photographs, drawings, constructions or models
3
Own sport, video, GPS or tracker context
4
Own school or class survey or observation
5
Own everyday, household, consumer or financial data
6
Local context: environment, buildings, traffic, climate or nature
7
Own programming, simulation or algorithm
8
Personal interest: music, art, games, design or another hobby
9
Public data selected, prepared and analysed independently
10
Own conjecture, proof idea, generalisation or theoretical comparison
11
Own modelling decision, construction, optimisation or adaptation
12
Critical comparison of assumptions, errors, limitations or ethical issues
MMeasuring instruments, tools or data access
0
No specialist physical instrument; a calculator, CAS, spreadsheet or open data may be sufficient
1
Ruler, tape measure, calliper or protractor
2
Balance or precision scale
3
Contact thermometer or temperature data logger
4
Infrared thermometer or thermal camera
5
Multimeter or another electrical measuring instrument
6
Stopwatch or timer
7
Camera or smartphone for photographic and video analysis
8
GPS device or fitness tracker
9
Microphone, sound-level meter or audio-analysis software
10
Light meter, light sensor or solar sensor
11
Conductivity, pH or salinity meter
12
Weather instruments, such as an anemometer or rain gauge
13
Computer, spreadsheet, CAS, GeoGebra, Desmos or Python
14
Survey form, data sheet or observation record
15
Force sensor or spring balance
16
Laboratory glassware, measuring cylinder or pipette
17
Telescope, binoculars or a suitable camera
18
Humidity or material-moisture sensor
19
Non-invasive physiology sensor, such as heart-rate or reaction-time measurement
20
Physical model, 3D printer or material samples
21
Specialist school laboratory equipment
SSafety and data protection
0
Likely to be low risk within normal school practice
1
Supervision recommended, for example for heat, electricity, sport or traffic observation
2
Carry out only in a school laboratory or with qualified supervision
3
Sensitive personal or health data: consent, anonymisation and preferably secondary data; no medical self-intervention
From heading to investigation

A topic becomes workable only through independent decisions.

The table is designed to speed up the first step. The actual research question emerges through focus, mathematical choice and critical checking.

Focus the object

Define the object, dataset, time period, variable or mathematical structure as precisely as possible.

Select the mathematics

Decide which models, proofs, statistical procedures or optimisation steps can genuinely answer the question.

Plan independent direction

Use your own data, comparisons, modelling choices, extensions or proof ideas rather than reproducing a standard procedure.

Reflect on limitations

Examine assumptions, sources of error, data quality, model limitations, safety and possible improvements.

Personal engagement and independent direction

A personal connection is more than one sentence in the introduction.

The P codes indicate possible ways to shape an investigation independently. Independent thinking becomes visible through justified decisions, appropriate data selection, personal model variants, meaningful comparisons and critical reflection. A code does not guarantee a particular mark.

Review the IA requirements
Frequently asked questions

Use the topic list correctly.

Are the titles finished research questions?

No. They name a possible direction. A question for assessed work must be focused more narrowly, matched to the course and level, and connected to a clear mathematical method.

What does A = 3 mean?

The broad direction could be developed as an IA or Mathematics EE, depending on focus and depth. An EE will normally require a substantially deeper mathematical argument and an appropriate research scope.

Is C an official IB classification?

No. C is editorial guidance for Mathematics AA or Math AI and SL or HL. Final suitability depends on the specific research question and the current requirements.

Do I need to own the listed instruments?

No. M indicates typical or possible tools. Many topics can use open data, a spreadsheet, CAS, GeoGebra, Desmos or Python. Adapt the topic to resources that are genuinely available.

How should topics involving health or personal data be handled?

Prefer anonymised or publicly available secondary data. Original data collection needs consent, data protection, school approval and a low-risk method. Diagnosis, medication changes and invasive self-experimentation do not belong in a Mathematics project.

The complete list is also machine-readable.

The same 1037 entries are available as plain text and bilingual JSON for search, accessibility and AI systems.

Authoritative foundations

Check the current curriculum version before starting.

The catalogue complements the PreLearning explanations. Current official IB documents and the school's instructions remain authoritative.

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