Equations, code, diagrams and live interactive scenes — every format placed where it explains best. Reach in, and things respond.
A visual guide to rates of change and tangent lines.
The derivative measures how quickly a function's output changes relative to its input.
Differentiating a quadratic gives a linear function — the rate of change grows steadily.
A function can only be differentiated where it is smooth and continuous.
| Function | Derivative | Rule |
|---|---|---|
| x² | 2x | Power |
| sin x | cos x | Trig |
| eˣ | eˣ | Exponential |
Which rule applies to differentiating x⁵?
Each scene pairs a body — the narrative — with a detail zone: the diagram, code, or equation that shows it. Every idea has a place to be explained and a place to be seen.
Parametric diagrams respond to variables in real time. Adjust a parameter and every equation, graph, and scene that depends on it updates live.
Which rule applies to differentiating ?
Multichoice, Wordbank, and Math Response — which evaluates actual algebraic expressions. The test lives inside the document.
Inline and display blocks. Fractions, integrals, summations, matrices — exactly as they should look. Not screenshots. Not approximations.
Syntax highlighting and editable interactive mode. Diff annotations and line highlighting. Code that's meant to be read and understood.
Developers build plugins using the Element SDK — custom interactive elements that run sandboxed inside internotes. Physics simulations, data visualisers, domain-specific tools. Import them with @plugin and they become first-class elements.
Definition, Example, Note, Task — semantic callout types that communicate what kind of content follows before a word is read.
Mathematics, Physics, Chemistry, Computer Science, Literature, History — the library spans the full breadth of academic knowledge.
Ask reads what you're studying and guides you toward understanding — not just the answer.
An interactive educational document that combines prose, equations, code, diagrams, and live scenes in one place. Unlike a static page, content responds when you reach in and interact with it — adjust a parameter and every element that depends on it updates live. Assessment questions live inside the document too, so you can test your understanding without switching tools or losing your place.
A PDF is fixed — the content is the same no matter what you do. An internote responds: change a parameter and every element that depends on it updates in real time. It can also contain assessment questions that let you test your understanding inside the document, without switching tools. The content is designed to be interacted with, not just read.
Internotes combine the kinds of content that learning actually needs — prose, mathematics, code, and diagrams — with interactive elements that respond when you engage with them, and assessment questions that let you test yourself without leaving the page. The format is designed to put each type of content where it explains best, rather than forcing everything into a single text block.
The library spans the breadth of academic knowledge — mathematics, physics, chemistry, computer science, literature, history, biology, economics, and more. Some internotes are concise five-minute explainers; others are full chapter-length treatments of a topic. The depth and scope varies by subject and author.
Plugins are custom interactive elements that can be embedded inside an internote — physics simulations, data visualisers, chemistry tools, and anything else built for a specific domain. They run safely inside the document and can connect to the rest of the internote, updating live when parameters change.
Yes. Public internotes are fully readable without signing in — no account is required to browse, read, or interact with the content. An account is only needed to create internotes, save your progress across sessions, or use Ask Internote.