Focus the object
Define the object, dataset, time period, variable or mathematical structure as precisely as possible.
Topics 1026 to 1037 with explanations, methods, course and equipment guidance.
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.
Select an idea. Titles and areas are starting points, not finished research questions.
Check A and C. These codes give an initial indication of assessment type, course and level.
Read P, M and S. They show possible independent direction, tools, and safety or data-protection needs.
| No. | Topic idea | A | C | P | M | S |
|---|---|---|---|---|---|---|
| 1026 | Smartphone data & technologyEffect of screen brightness on the battery life of a smartphone Investigate how “Effect of screen brightness on the battery life of a smartphone” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1027 | Smartphone data & technologyWi-Fi, 4G, or 5G: effect of network type on battery life Investigate how “Wi-Fi, 4G, or 5G: effect of network type on battery life” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1028 | Smartphone data & technologyCharging power and the smartphone charging-time curve from 0 to 100 per cent Investigate how “Charging power and the smartphone charging-time curve from 0 to 100 per cent” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1029 | Smartphone data & technologyCharge cycles and measurable decline in battery capacity Investigate how “Charge cycles and measurable decline in battery capacity” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1030 | Smartphone data & technologySmartphone price and actual useful life of different models Investigate how “Smartphone price and actual useful life of different models” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1031 | Smartphone data & technologySmartphone sales as a function of price and feature set Investigate how “Smartphone sales as a function of price and feature set” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1032 | Smartphone data & technologyDaily smartphone use and sleep duration in an anonymised survey Investigate how “Daily smartphone use and sleep duration in an anonymised survey” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1033 | Smartphone data & technologyDistribution of usage time across app categories Investigate how “Distribution of usage time across app categories” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1034 | Smartphone data & technologyScreen time, processor load, and battery temperature Investigate how “Screen time, processor load, and battery temperature” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1035 | Smartphone data & technologySmartphone GPS accuracy in urban areas, woodland, and open terrain Investigate how “Smartphone GPS accuracy in urban areas, woodland, and open terrain” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1036 | Smartphone data & technologyCamera resolution, file size, and smartphone processing time Investigate how “Camera resolution, file size, and smartphone processing time” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
| 1037 | Smartphone data & technologyDevice age and launch time of selected apps Investigate how “Device age and launch time of selected apps” can be described and compared quantitatively using self-collected measurements or suitable open data. Statistics and probability help test relationships, variation, and uncertainty; differential and integral calculus can extend trend models with rates of change or cumulative effects. |
3 | 9 | 1571112 | 56781314 | 0 |
No topic ideas match this combination.
The table stays narrow on a phone by replacing long descriptions with numeric codes. Entries may contain several P and M codes.
The table is designed to speed up the first step. The actual research question emerges through focus, mathematical choice and critical checking.
Define the object, dataset, time period, variable or mathematical structure as precisely as possible.
Decide which models, proofs, statistical procedures or optimisation steps can genuinely answer the question.
Use your own data, comparisons, modelling choices, extensions or proof ideas rather than reproducing a standard procedure.
Examine assumptions, sources of error, data quality, model limitations, safety and possible improvements.
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 requirementsNo. 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.
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.
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.
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.
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 same 1037 entries are available as plain text and bilingual JSON for search, accessibility and AI systems.
The catalogue complements the PreLearning explanations. Current official IB documents and the school's instructions remain authoritative.