Most tools that claim to write math flatten it into one line: a/b instead of a real fraction, a small radical sign covering nothing, an exponent sitting mid-line. Here the formula is built the way you write it in a notebook, numerator over denominator, a radical bar that stretches over the whole expression, exponents and indices at the right height and Greek letters, all in your own handwriting. Paste LaTeX or plain text, download a PDF.
Numerator over denominator, with a bar that stretches to the expression, nested fractions included.
The bar extends over everything inside it, instead of a small sign stranded at the front.
Alpha to omega, integral, sum, nabla, partial derivative, infinity and the inequality signs.
Paste the formula as it is and get a handwritten page, ready to hand in or print.
The difference is two-dimensional versus one-dimensional. A tool that prints math in a line gives you (a+b)/c and x^2; here the numerator sits above the denominator, the fraction bar stretches to the width of the expression, the radical bar extends over everything under it, exponents are raised and reduced and indices are lowered and reduced. Every symbol, Greek letters and integral and sum signs included, is written in the hand captured from your template, not pasted in from a math font.
Mixed with Hebrew it gets interesting: a formula line inside a Hebrew paragraph keeps both directions, Hebrew right-to-left and the formula left-to-right, without brackets or equals signs jumping to the wrong side. That is where Latin-first tools break on a Hebrew page.
The engine takes LaTeX as it is: fractions, radicals, exponents and indices, functions such as ln, sin and lim, Greek letters, relations and operators. That is exactly what comes out of an AI chat, Overleaf or a Markdown summary, so nothing needs converting by hand. Plain text works too: write an exponent with ^ and an index with _, and the engine recognizes the formula line on its own.
Anything the engine does not know is simply not drawn, and you see that in the preview before printing. Three cases worth knowing up front: a higher-order root is written without the small index (a cube root looks like a plain root), arrows over vectors and bars over expressions are not drawn, and matrix environments, tables and diagrams are not supported. For a graph or a sketch, leave room on the page and draw it by hand, which is what most people do anyway.
The courses that still require handwritten submissions are exactly the symbol-heavy ones: a lab report with formulas and measurements, a full worked solution, exam practice, or a personal formula sheet written once and used all semester. Type it, choose grid or lined paper, download a PDF or Word file.
After rendering you can tune letter size, stroke weight and line and word spacing, for the whole page or for a single letter that landed badly, which matters on a dense page of formulas. If the exercises are school-level or you work from an AI chat, the homework page carries the prompt wizard and the same engine.
Yes, paste the formula or the whole solution as it is. The engine understands fractions, radicals, exponents and indices, functions (ln, sin, cos, lim and more), Greek letters and relation signs, and builds them on the page in your handwriting.
Yes, that is the point. The fraction is built in two dimensions and the bar stretches to the width of the numerator and denominator, nested fractions included. Same for radicals: the bar extends over the whole expression instead of a small sign at the front.
Three things, better known up front: a higher-order root is written without the small index, arrows over vectors and bars over expressions are not drawn, and matrix environments, tables, graphs and diagrams are not supported. Add a graph or sketch by hand on the printed page.
Yes. Paste the whole report, prose and formulas together, choose grid, lined, dotted or blank paper, and download a PDF or Word file. After rendering you can tune size, weight and spacing until the page sits right.
No. Paste plain text and mark an exponent with ^ and an index with _; the engine recognizes the formula line and builds it. LaTeX just saves you the trouble when the solution is already written in it.
It is free, with no page limit. Fill one template, and every render after it is included.