Your Maths Methods PSMT is assessed as IA1 and is worth 10% of your final QCE result. If you are in Year 10 Maths, and completing a PSMT-style task for the first time, this guide will help you understand the structure before you encounter it as a formal assessment in Year 11 Methods. If you are already in Year 11 or 12, it is a practical reference for organising your report in a way that addresses all four ISMG criteria clearly.
Before anything else, read your school's task sheet carefully. Queensland schools use different templates and your teacher's instructions take priority over any suggested structure you find online. What this guide gives you is a logical framework to ensure your report addresses all four criteria: Formulate, Solve, Evaluate and Communicate.
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KEY ARTICLE INSIGHTS:
Your Maths Methods PSMT is assessed as IA1 in Year 11 Maths Methods and is worth 10% of your final QCE result
For Year 10 Maths Methods, you will be completing a PSMT-style task for the first time will find this structure a useful starting point
There is no single compulsory heading structure for a Maths Methods PSMT. Your school's task sheet and teacher instructions take priority
Essential reasoning and calculations must stay in the main body of the report, not the appendix
The Four Criteria Your Maths Methods PSMT Is Marked Against
Every section of your Methods PSMT should be written with these four criteria in mind. Understanding what each one requires helps you decide what belongs in each part of your report.
Criterion | What It Assesses |
📐 Formulate | Your ability to translate a real-world problem into mathematical language, including observations, assumptions, variables and a clear mathematical approach |
🔣 Solve | Your ability to select and apply mathematical techniques, develop a model and produce a solution with clear, justified working |
📊 Evaluate | Your ability to assess whether your solution is reasonable, identify strengths and limitations and refine or extend the model where appropriate |
✍️ Communicate | The clarity, accuracy and organisation of your mathematical language, notation, graphs, tables and written reasoning throughout the entire report |
Communicate is not a separate section. It is assessed across everything you write, so clear and consistent mathematical language matters from the first sentence to the last.
Suggested PSMT Report Structure
The structure below is a practical guide, not a compulsory template. Adapt it to suit your school's task sheet and always follow your teacher's instructions.
🎯 Preliminary Pages
1️⃣ Title page: Include your name, student number, teacher name, task title and date. This is not counted in your page or word limit.
2️⃣ Table of contents: List all headings and subheadings with corresponding page numbers. This helps the marker navigate your report and demonstrates organised communication.
✍️ Section 1: Introduction
Purpose: Introduce the context, explain why the investigation is taking place and state what you are trying to find or model. This section must make sense to a reader who has not seen your task sheet.
What to include:
The real-world context and why it is worth investigating
The mathematical topic being applied, for example linear and non-linear relationships, calculus or statistics
A clear statement of the question or outcome your model needs to address
Any relevant background information that helps the reader understand the problem
Things to consider: Does your introduction stand alone without the task sheet? Have you linked the context to a specific mathematical concept? Have you stated what your report will do?
Sentence starters:
"Current research indicates that [relevant context or data]. The following investigation explores..."
"This report investigates the relationship between..."
"The purpose of this task is to develop a mathematical model that..."
"This investigation explores how [topic] can be applied to..."
"The following report analyses [context] in order to determine..."
"By applying [mathematical concept], this report aims to..."
✍️ Section 2: Observations and Assumptions
Purpose: Document what is given in the task and what simplifications or boundaries you have chosen to apply, with justification for each.
What to include:
🔎 Observations: facts, data or conditions directly stated in the task or stimulus material
🧠 Assumptions: simplifications, boundaries or decisions you have made, each with a reason
Every assumption needs a justification. Listing assumptions without explaining why you made them will cost you marks. For detailed guidance on how to write assumptions and observations, see Observations vs Assumptions in a Maths Methods PSMT and How to Write Assumptions in a Maths Methods PSMT.
Things to consider: Are your assumptions realistic? Does each assumption have a clear justification? Have you listed all the conditions that will affect how your model works?
Sentence starters:
"It is observed that..."
"It is assumed that [condition] because..."
"For the purposes of this model, [variable] is treated as [value] because..."
"The following simplification has been made: [assumption], as this allows..."
"Based on the data provided, it is assumed that..."
✍️ Section 3: Mathematical Formulation
Purpose:
Translate the real-world problem into mathematical language. Define your variables, state the model you will use and explain your approach before beginning any calculations. Do not include any calculations but rather the methodology you will use to arrive at your solution.
What to include:
Definitions of all variables, including units and domains
The mathematical model(s) or function(s) you will use and why
Any formulas, theorems or techniques you plan to apply in chronological order
The technology you will use and how it will support your solution, for example CAS calculator, Excel or GeoGebra
Things to consider: Has every variable been clearly defined? Has every concept been identified and explained? Have you explained why you chose this model rather than an alternative? Is the domain of your model appropriate for the context?
Sentence starters:
"The data for [name dataset provided] was first tabulated and processed to show..."
"Let x represent [variable] measured in [units], where x is restricted to..."
"The following model has been selected because..."
"A [type] function has been chosen to model this situation as it..."
"Technology will be used to [purpose] in order to..."
"The mathematical approach involves [technique], which is appropriate because..."
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✍️ Section 4: Your Solution
Purpose: Apply your model, show your working clearly and explain the reasoning behind each significant step. This is the largest section of your report and where most of your mathematical marks are earned.
What to include:
Step-by-step calculations with written explanations alongside each stage
Graphs, tables and technology outputs with clear captions and figure numbers
Justification for each mathematical decision, not just the result
Comparison of models if more than one approach is tested
Verification of results where appropriate, for example substituting back into the original equation
Do not rely on calculations alone. The marker needs to follow your reasoning, not just your arithmetic. Graphs must be clearly labelled with axis titles, scales and units. Technology screenshots should be annotated to show what they represent. Make sure each and every table and figure is linked to and mentioned in your written explanation.
Things to consider: Does each calculation have accompanying explanation? Are your graphs labelled and readable? Have you verified your solution? Have you used consistent notation and rounding throughout?
Sentence starters:
"Substituting [value] into the equation gives..."
"This result indicates that..."
"The data in Table 1 was graphed on a scatterplot in Figure 1 to show..."
"Figure 1 shows that..."
"To verify this result, [value] is substituted back into..."
"Comparing the two models, [model] was chosen because..."
In our Maths Methods tutoring sessions, one of the most common issues we see in the solution section is students presenting calculations without any written reasoning. The ISMG awards marks for mathematical justification, not just correct answers. Every significant step should have a sentence explaining what was done and why.
✍️ Section 5: Evaluation
Purpose: Step back from the mathematics and assess whether your solution is meaningful in the real world. Discuss what your model does well, where it falls short and what could be improved.
What to include:
✅ Reasonableness: does the solution make practical sense given the context and your observations and assumptions? did you make any mathematical decisions that you can justify (e.g. omitting outliers, selecting a model)?
💪 Strengths: where does your model work well and why?
❌ Limitations: what does your model not account for,where is it weak and how might this affect the validity and reliability of your results and mathematical conclusion?
📈 Refinements: if you have refined or extended the model, explain what changed and why it improved the response
For detailed guidance on this section, see How to Evaluate a Maths Methods PSMT Model, How to Write Limitations in a Maths Methods PSMT and How to Refine a Mathematical Model in a PSMT.
Things to consider: Have you linked your evaluation back to your original assumptions? Are your strengths and limitations specific to your model rather than generic? Have you explained how limitations actually affect the results?
Sentence starters:
"The solution is reasonable because..."
"A strength of this model is that it..."
"A limitation of this model is [issue], which may affect the results by..."
"This model could be improved by..."
"The assumption that [assumption] affects the validity and reliability of the model because..."
✍️ Section 6: Conclusion
Purpose: Directly answer the original question posed in the task and summarise the key findings of your investigation.
What to include:
A direct response to the question or purpose stated in your introduction
A brief summary of the most significant findings
Reference back to the real-world context
The conclusion should not introduce new calculations or ideas. It should draw together what your solution and evaluation have already shown.
Things to consider: Does your conclusion directly answer the task question? Is it clearly linked back to the context introduced at the start? Have you avoided adding new mathematical content?
Sentence starters:
"The investigation aimed to [restate aim/purpose]. Based on the results, the model indicates..."
"In conclusion, the investigation has shown that..."
"Based on the mathematical model developed, it can be determined that..."
"The results indicate that [finding], which suggests..."
"Overall, the model demonstrates that..."
"Therefore, in the context of [real-world situation], the most appropriate solution is..."
✍️ Ending the Report
References: Include a reference list if you have used any external sources including data, formulas, images or background information. Use a consistent referencing style as specified by your school.
Appendix: Include raw data, extended tables or redundant calculations here if needed. The appendix is not marked directly, which means any reasoning or evidence that supports your marks must appear in the main body of your report. Do not place important justifications in the appendix hoping the marker will find them there.
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Section Summary Table
Section | Purpose | Common Mistakes |
1️⃣ Introduction | Establish context, purpose and mathematical direction | Writing a summary of the task sheet rather than an independent introduction |
2️⃣ Observations and Assumptions | Document given facts and justified simplifications | Listing assumptions without justification |
3️⃣ Mathematical Formulation (Mathematical Concepts & Techniques) | Define variables, select the model and explain the approach | Not defining domains or units, choosing a model without explaining why |
4️⃣ Solve | Apply the model with justified working, graphs and verification | Presenting calculations without written reasoning, unlabelled graphs |
4️⃣ Evaluate | Assess reasonableness, strengths and limitations | Generic limitations not connected to the specific model, no link back to assumptions |
5️⃣ Conclusion | Answer the original question directly | Introducing new calculations, restating the introduction rather than summarising findings |
6️⃣ References | Acknowledge external sources | Missing references for data or images, inconsistent formatting |
7️⃣ Appendix | Supporting material that does not need to be marked | Placing essential reasoning in the appendix rather than the main report |
What Belongs in the Main Report vs the Appendix
This is one of the most important structural decisions in a PSMT. A common mistake is moving calculations or graphs into the appendix to save space, not realising that anything in the appendix cannot contribute to your marks.
Keep in the main report:
All reasoning and justification, including sample calculations of all mathematical processes
Key graphs and tables referenced in the text
Technology outputs that support your solution
Verification of results
All evaluation commentary
Move to the appendix:
Raw data that has already been summarised in the report
Extended working that repeats what is already shown in the sample calculations table
Additional graphs that are not directly referenced
We regularly work through PSMT drafts with students in our Year 11 and Year 12 Maths Methods tutoring sessions. One of the first things we check is whether the student has hidden essential reasoning in the appendix. If the marker cannot see your justification in the main report, those marks are gone regardless of how strong the mathematics is.
Communication: What It Means Across Your Whole Report
Communicate is assessed throughout your entire report, not just in one section.
Here is what consistent communication looks like in practice:
All variables are defined the first time they appear and used consistently throughout
Every graph has a title, labelled axes, appropriate scale and units
Every table has a caption and clear column headings
Rounding is consistent and stated explicitly when first applied
Mathematical notation is correct and used accurately
Written sentences explain what calculations show, not just what they are
When to Get Maths Methods Tutoring Help For Your PSMT
If you are a Year 10 Methods student completing your first PSMT-style task and are unsure how to structure a formal mathematical report, or if you are in Year 11 working on your Maths Methods IA1 and getting feedback that your reasoning is unclear or your evaluation is too generic, working with a Maths tutor before you submit can make a significant difference.
Our Maths Methods tutors work with both Year 11 and Year 12 students through each section of the PSMT, identifying where marks are being lost and helping build a response that addresses all four ISMG criteria. Book a free trial lesson to get started.
Frequently Asked Questions
What is the structure of a Maths Methods PSMT?
A Maths Methods PSMT, assessed as IA1 in Year 11 Mathematical Methods, typically includes an introduction, observations and assumptions, mathematical formulation, solution development, evaluation and a conclusion, followed by references and an appendix if needed. Year 10 students completing a PSMT-style task for the first time should follow the same general structure. The report should align with the four ISMG criteria: Formulate, Solve, Evaluate and Communicate. Your school may provide a specific template, which takes priority over any general guide.
What should I include in the formulate section of my Maths PSMT?
The formulate section should include your introduction to the context and purpose, all observations and assumptions with justifications, definitions of variables including units and domains and an explanation of the mathematical model or approach you have selected. See What Is a PSMT in QCE Maths Methods? for a broader overview of the task.
Can I put calculations in the appendix of my Methods PSMT?
Only calculations that are not essential to your argument and are not needed to support your marks. Any reasoning, justification or evidence that relates to the criteria must appear in the main body of the report. If you move important working to the appendix, the marker cannot award marks for it even if it is correct.
How do I write the evaluation section of a Maths Methods PSMT?
Your evaluation should assess whether your solution is reasonable in the real-world context, identify specific strengths of your model and discuss genuine limitations with an explanation of how they affect your results. See How to Evaluate a Maths Methods PSMT Model for a detailed guide to this section.
What are the most common PSMT mistakes?
The most common mistakes in the Methods IA1 or Maths PSMTs include presenting calculations without written reasoning, writing generic limitations not connected to the specific model, placing essential justification in the appendix, not defining variables or domains and writing a conclusion that introduces new ideas rather than answering the original question. See Maths Methods PSMT Common Mistakes for a full breakdown.
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