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LaTeX -- Typst

Griechische Buchstaben

kleine griechische Buchstaben

LaTeX Vorschau Typst
\alpha \alpha alpha
\beta \beta beta
\gamma \gamma gamma
\delta \delta delta
\epsilon \epsilon epsilon.alt
\zeta \zeta zeta
\eta \eta eta
\theta \theta theta
\iota \iota iota
\kappa \kappa kappa
\lambda \lambda lambda
\mu \mu mu
\nu \nu nu
\xi \xi xi
\omicron \omicron omnicron
\pi \pi pi
\rho \rho rho
\sigma \sigma sigma
\tau \tau tau
\upsilon \upsilon upsilon <—- bis hier
\phi \phi phi.alt
\chi \chi chi
\psi \rho rho
\omega \omega omega
\varepsilon \varepsilon epsilion
\vartheta \vartheta theta.alt
\varpi \varpi pi.alt
\varrho \varrho rho.alt
\varsigma \varsigma sigma.alt
\varphi \varphi phi

Grosse griechische Buchstaben

LaTeX Vorschau Typst
\Gamma \Gamma Gamma
\Delta \Delta Delta
\Theta \Theta Theta
\Lambda \Lambda Lambda
\Xi \Xi Xi
\Pi \Pi Pi
\Sigma \Sigma Sigma
\Upsilon \Upsilon Upsilon
\Phi \Phi Phi
\Psi \Psi Psi
\Omega \Omega Omega

Integral

LaTeX Vorschau Typst
\int_a^b f(x) \mathrm{d} x \int_a^b f(x) \mathrm{d} x integral_a^b f(x) dif x
\int \int integral
\oint \oint integral.cont
\iint \iint integral.double
\oiint \oiint integral.surf
\iiint \iiint integral.triple
\oiiint \oiiint integral.vol

Fonts

LaTeX Vorschau Typst
\boldsymbol{A} \boldsymbol{A} bold(A)
\mathbb{A} \mathbb{A} AA

Temp

\mathbb{A} A AA
\mathbf{A} A upright(bold(A))
\mathcal{A} A cal(A)
\mathscr{A} A scr(A)
\mathit{A} A italic(A)
\mathfrak{A} A frak(A)
\mathrm{A} A upright(A)
\mathsf{A} A sans(A)
\mathtt{A} A mono(A)

Arrows

LaTeX Preview Typst (Textual) Typst (Shorthand)
\leftarrow ← arrow.l <-
\gets ← arrow.l <-
\rightarrow → arrow.r ->
\to → arrow.r ->
\leftrightarrow ↔ arrow.l.r <->
\Leftarrow ⇐ arrow.l.double ``
\Rightarrow ⇒ arrow.r.double =>
\Leftrightarrow ⇔ arrow.l.r.double <=>
\mapsto ↦ arrow.r.bar `
\hookleftarrow ↩ arrow.l.hook ``
\leftharpoonup ↼ harpoon.lt ``
\leftharpoondown ↽ harpoon.lb ``
\rightleftharpoons ⇌ harpoons.rtlb ``
\longleftarrow ⟵ arrow.l.long <--
\longrightarrow ⟶ arrow.r.long -->
\longleftrightarrow ⟷ arrow.l.r.long <-->
\Longleftarrow ⟸ arrow.l.double.long <==
\Longrightarrow ⟹ arrow.r.double.long ==>
\Longleftrightarrow ⟺ arrow.l.r.double.long <==>
\longmapsto ⟼ arrow.r.long.bar ``
\hookrightarrow ↪ arrow.r.hook ``
\rightharpoonup ⇀ harpoon.rt ``
\rightharpoondown ⇁ harpoon.rb ``
\iff ⟺ arrow.l.r.double.long <==>
\implies ⟹ arrow.r.double.long ==>
\uparrow ↑ arrow.t ``
\downarrow ↓ arrow.b ``
\updownarrow ↕ arrow.t.b ``
\Uparrow ⇑ arrow.t.double ``
\Downarrow ⇓ arrow.b.double ``
\Updownarrow ⇕ arrow.t.b.double ``
\nearrow ↗ arrow.tr ``
\searrow ↘ arrow.br ``
\swarrow ↙ arrow.bl ``
\nwarrow ↖ arrow.tl ``
\leadsto ⇝ arrow.r.squiggly ~>
\leftleftarrows ⇇ arrows.ll ``
\rightrightarrows ⇉ arrows.rr

Set and Elements

LaTeX Preview Typst
\in ∈ in
\subset ⊂ subset
\subseteq ⊆ subset.eq
\supset ⊃ supset
\supseteq ⊇ supset.eq
\varnothing ∅ diameter

Non-mathematical Symbols

LaTeX Preview Typst
\$ $ \$
\pounds £ pound
\yen ¥ yen
\copyright c◯ copyright
\S § section
\P pilcrow

Miscellaneous Symbols

LaTeX Preview Typst (Textual) Typst (Shorthand)
\Cap ⋒ inter.double ``
\Cup ⋓ union.double ``
\Join ⋈ join ``
\aleph ℵ alef ``
\angle ∠ angle ``
\approx ≈ approx ``
\approxeq ≊ approx.eq ``
\ast ∗ ast ``
\bigcap ⋂ inter.big ``
\bigcirc ◯ circle.big ``
\bigcup ⋃ union.big ``
\bigodot ⨀ dot.o.big ``
\bigoplus ⨁ xor.big ``
\bigotimes ⨂ times.o.big ``
\bigsqcup ⨆ union.sq.big ``
\bigtriangledown ▽ triangle.b ``
\bigtriangleup △ triangle.t ``
\biguplus ⨄ union.plus.big ``
\bigvee ⋁ or.big ``
\bigwedge ⋀ and.big ``
\bullet ∙ bullet ``
\cap ∩ inter ``
\cdot ⋅ dot.op ``
\cdots ⋯ dots.c ``
\checkmark ✓ checkmark ``
\circ ∘ circle.small ``
\colon : colon ``
\cong ≅ tilde.equiv ``
\coprod ∐ product.co ``
\cup ∪ union ``
\curlyvee ⋎ or.curly ``
\curlywedge ⋏ and.curly ``
\dagger † dagger ``
\dashv ⊣ tack.l ``
\ddagger ‡ dagger.double ``
\ddots ⋱ dots.down ``
\diamond ⋄ diamond ``
\div ÷ div ``
\divideontimes ⋇ times.div ``
\dotplus ∔ plus.dot ``
\ell ℓ ell ``
\emptyset ∅ nothing ``
\equiv ≡ equiv ``
\exists ∃ exists ``
\forall ∀ forall ``
\ge ≥ gt.eq >=
\geq ≥ gt.eq >=
\geqslant ⩾ gt.eq.slant ``
\gg ≫ gt.double >>
\hbar ℏ planck ``
\imath dotless.i ``
\infty ∞ infinity oo
\intercal ⊺ top ``
\jmath dotless.j ``
\land ∧ and ``
\langle ⟨ chevron.l ``
\lbrace { brace.l ``
\lbrack [ bracket.l ``
\ldots … dots.l ``
\le ≤ lt.eq <=
\leftthreetimes ⋋ times.three.l ``
\leq ≤ lt.eq <=
\leqslant ⩽ lt.eq.slant ``
\lhd ⊲ triangle.l ``
\ll ≪ lt.double <<
\ltimes ⋉ times.l ``
\measuredangle ∡ angle.arc ``
\mid ∣ divides ``
\models ⊨ models ``
\mp ∓ minus.plus ``
\nRightarrow ⇏ arrow.double.not ``
\nabla ∇ nabla ``
\ncong ≆ tilde.nequiv ``
\ne = eq.not !=
\neg ¬ not ``
\neq = eq.not !=
\nexists ∄ exists.not ``
\ngeq ≱ gt.eq.not ``
\ni ∋ in.rev ``
\nleftarrow ↚ arrow.l.not ``
\nleq ≰ lt.eq.not ``
\nparallel ∦ parallel.not ``
\nmid ∤ divides.not ``
\notin ∈/ in.not ``
\nrightarrow ↛ arrow.not ``
\nsim ≁ tilde.not ``
\nsubseteq ⊈ subset.eq.not ``
\ntriangleleft ⋪ lt.tri.not ``
\ntriangleright ⋫ gt.tri.not ``
\odot ⊙ dot.o ``
\ominus ⊖ minus.o ``
\oplus ⊕ xor ``
\otimes ⊗ times.o ``
\parallel ∥ parallel ``
\partial ∂ partial ``
\perp ⊥ perp ``
\pm ± plus.minus ``
\prec ≺ prec ``
\preceq ⪯ prec.eq ``
\prime ′ prime ``
\prod ∏ product ``
\propto ∝ prop ``
\rangle ⟩ chevron.r ``
\rbrace } brace.r ``
\rbrack ] bracket.r ``
\rhd ⊳ triangle ``
\rightthreetimes ⋌ times.three.r ``
\rtimes ⋊ times.r ``
\setminus ∖ without ``
\sim ∼ tilde ``
\simeq ≃ tilde.eq ``
\smallsetminus ∖ without ``
\spadesuit ♠ suit.spade ``
\sqcap ⊓ inter.sq ``
\sqcup ⊔ union.sq ``
\sqsubseteq ⊑ subset.eq.sq ``
\sqsupseteq ⊒ supset.eq.sq ``
\star ⋆ star ``
\subsetneq ⊊ subset.neq ``
\succ ≻ succ ``
\succeq ⪰ succ.eq ``
\sum ∑ sum ``
\supsetneq ⊋ supset.neq ``
\times × times ``
\top ⊤ top ``
\triangle △ triangle.t ``
\triangledown ▽ triangle.b.small ``
\triangleleft ◃ triangle.l.small ``
\triangleright ▹ triangle.r.small ``
\twoheadrightarrow ↠ arrow.r.twohead ->>
\upharpoonright ↾ harpoon.tr ``
\uplus ⊎ union.plus ``
\vdash ⊢ tack.r ``
\vdots ⋮ dots.v ``
\vee ∨ or ``
\wedge ∧ and ``
\wr ≀ wreath

Implementing LaTeX macros unsupported by Typst

Background

There is not always a Typst equivalent for every LaTeX macro. This document provides a guide on how to implement unsupported LaTeX macros in Typst.

The \mathscr macro

scr is natively supported in Typst since version 0.14.0! [1]

The \LaTeX and \TeX macro

LaTeX: \LaTeX and \TeX

Implementation in Typst [2]

#let TeX = context {
  set text(font: "New Computer Modern")
  let e = measure("E")
  let T = "T"
  let E = text(1em, baseline: e.height * 0.31, "E")
  let X = "X"
  box(T + h(-0.15em) + E + h(-0.125em) + X)
}

#let LaTeX = context {
  set text(font: "New Computer Modern")
  let a-size = 0.66em
  let l = measure("L")
  let a = measure(text(a-size, "A"))
  let L = "L"
  let A = box(scale(x: 105%, text(a-size, baseline: a.height - l.height, "A")))
  box(L + h(-a.width * 0.67) + A + h(-a.width * 0.25) + TeX)
}

Usage example:

You can use #LaTeX in text environments.
You can use $#LaTeX$ in math environments as well.

Using the op function to define custom operators

For example, if you want to define a custom operator \myopr.

LaTeX: \newcommand{\myopr}{\operatorname{myopr}}

Equivalent in Typst:

#let myopr = op("myopr");

Usage example:

$
y = myopr x
$

A vertical bar for evaluation

It's common to use a vertical bar to denote the evaluation of a function at a point. e.g.

➣ LaTeX:

f(x) \bigg\rvert_{x = x_0}

Where \bigg\rvert may be replaced with \bigg\vert, \bigg| etc.

➣ Walkaround in Typst:

f(x) lr(| vec(delim: #none, , , x = x_0))

Also it's common to use a vertical bar to denote the deference of function values at two points, especially when calculating definite integrals. e.g. [3]

➣ LaTeX:

F(x) \bigg\rvert_{a}^{b}

Where \bigg\rvert may be replaced with \bigg\vert , \bigg| etc.

➣ Walkaround in Typst:

F(x) lr(| vec(delim: #none, b, , a))

The \cancelto macro

\cancelto{value}{expression} is a LaTeX command provided by the cancel package. It is used to place an arrow through an expression and annotate it with a value to which the expression is be evaluated.

➣ LaTeX:

\cancelto{0}{\frac{\partial^2 Q}{\partial r^2}}

➣ Implementation in Typst (adapted from [4] ):

#let cancelto(to, body) = {
  let max(a, b) = if a > b { a } else { b };
  context {
    let m = measure(body)
    let (w, h) = (m.width, m.height * 2)
    let arrow = rotate(-55deg, math.stretch(sym.arrow.r, size: max(h*1.8, w*2.0)))
    set place(center + horizon)
    body
    place(dx: -w * 0.5, dy: -h * 0.1, arrow)
    place(dx: w * 0.3, dy: -h * 1.1, to)
  }
}

➣ Usage example:

$
cancelto(0, (partial^2 Q)/(partial r^2))
$

https://qwinsi.github.io/tex2typst-webapp/cheat-sheet.html