Complete AI Training

AI app for education · no coding needed

Accessible equation exploration tutor

Enable independent exploration of mathematical structure.

Made for: Math education accessibility providers

What Accessible equation exploration tutor looks like
Open the demo For members · a working demo with sample data

What it does for you

The problem

Static equations are hard to navigate with assistive tools.

What it gives you

Educator-reviewed accessible math activity

What you give it

Educator-approved expressionsaccessibility preferences

How it works, step by step

  1. Decompose expression structure
  2. Offer alternate spoken navigation
  3. Generate equivalent practice representations
  4. Compare the reviewed result with the recorded baseline and value assumptions
  5. Capture corrections and named-owner approval before consequential use
  6. Export a versioned educator-reviewed accessible math activity with source references and unresolved questions

Build it yourself with your AI system

Build this app yourself, no coding needed

Start with a quick version you can try in a few minutes. Like it? Then build the full app by copying and pasting our step-by-step instructions: everything is prepared for you.

Sign in to see how to build it yourself

Build a quick version to try, or get the full app pack for Accessible equation exploration tutor with the step-by-step building instructions. You don't need any technical skills: you copy, paste and answer a few questions. Both are included in the membership.

Sign in Become a member

4 Have it built for you days to a few weeks

Rather not do it yourself, or want it fully tailored to your data, your way of working and your brand? Nexibeo builds Accessible equation exploration tutor with you.

Have Nexibeo build it

What's in the app pack

Included in the Complete AI Training membership.

  • The building instructions your AI follows, step by step
  • The questions your AI will ask you about your business before it starts
  • A clickable demo you can open in your browser, to see how it should work
  • A detailed blueprint of the screens, the information it keeps and the checks it runs

Become a member to get the app packAlready a member? Sign in

The files, for the technically curious
  • START-HERE.mdHow to build it with your own AI (read first)3 KB
  • README.mdOverview and links1 KB
  • questions.mdQuestions to answer before you build2 KB
  • prompt-cloudflare.mdThe full build prompt, hosted on Cloudflare26 KB
  • prompt-vps.mdThe same build on your own server (Docker)26 KB
  • spec.jsonData model, API, AI pipeline, acceptance criteria13 KB
  • demo/index.htmlThe working demo on sample data196 KB

Questions

Do I need to know how to code?

No. You copy and paste the prompts on this page into ChatGPT or Claude, and the AI does the building. When it asks you something, you answer in your own words.

What does it cost?

The quick version, the app pack and the step-by-step instructions are for members: you pay the membership price, not a price per app (see the plans). Building the full app uses your own ChatGPT or Claude subscription. Putting it online is often cheap or no cost at the start, and your AI tells you before anything costs money.

How long does it take?

The quick version: about two minutes. The real app: an afternoon for a first version you can use, longer if you want every feature.

Can I change it to fit my business?

Yes. Tell your AI what to change in plain words, like “add a column for the price” or “use our logo and colours”. Or have Nexibeo build and customise it for you.

More detailsHow the AI works, safeguards and what to build first

Enable independent exploration of mathematical structure

Confirm the buyer's problem and scope, collect educator-approved expressions and accessibility preferences, then follow this sequence: 1. Decompose expression structure. 2. Offer alternate spoken navigation. 3. Generate equivalent practice representations. Resolve uncertain cases with qualified reviewers, approve educator-reviewed accessible math activity, and measure task success with chosen access method and support time required against a documented baseline.

How the AI works

Use AI to interpret permitted inputs, suggest structured mappings and generate candidate outputs for the three stated task modules. Use deterministic code for arithmetic, schema validation, hard constraints and reproducible tests. Review source-linked explanations and uncertainty before accepting results. One notation family; test with assistive-technology users. A model suggestion is never a verified fact, professional decision or authorization to act.

Safeguards

Use educator-reviewed content and answer keys. Apply appropriate access and consent for learner records and distinguish completion from demonstrated learning. One notation family; test with assistive-technology users. Keep all consequential actions under authorized human control and do not fabricate missing inputs, permissions, professional judgments or market evidence.

What to build first

Pilot scope: One notation family; test with assistive-technology users. Implement one approved input format, a bounded representative case set and the first two task modules: decompose expression structure; offer alternate spoken navigation. Support the third module with operator review: generate equivalent practice representations. Include source references, corrections, basic organization access, approval states, export and value measurement. Use managed operator assistance for unresolved exceptions. The cost estimate covers this narrow prototype, not unrestricted multi-tenant scale, complex production integrations, specialist certification or physical operations.

What it can connect to

Learning resources, course portals and educator review processes. Learning portals, employee or member directories and completion exports. Validate standards and identity requirements before promising native LMS compatibility. Start with authorized file exchange. Validate current provider access, usage rights and schema behavior before promising a connector.

The screens in detail

Primary screens: Goals and source material, Interactive reviewed practice, Learner reflection and educator review. Provide a learner home with the next useful lesson, a practice activity and progress evidence. Give authors a source-linked course editor and assessment review queue. Supervisors see completed tasks and explicit sign-offs. Use short modules that work on mobile as well as desktop. Make the task-specific outcome educator-reviewed accessible math activity visible beside its evidence, review state and value baseline.