mathjax-rendering
Render mathematical formulas in Obsidian using LaTeX/MathJax syntax. Use when writing equations, matrices, integrals, summations, or any mathematical notation in Obsidian notes.
Best use case
mathjax-rendering is best used when you need a repeatable AI agent workflow instead of a one-off prompt.
Render mathematical formulas in Obsidian using LaTeX/MathJax syntax. Use when writing equations, matrices, integrals, summations, or any mathematical notation in Obsidian notes.
Teams using mathjax-rendering should expect a more consistent output, faster repeated execution, less prompt rewriting.
When to use this skill
- You want a reusable workflow that can be run more than once with consistent structure.
When not to use this skill
- You only need a quick one-off answer and do not need a reusable workflow.
- You cannot install or maintain the underlying files, dependencies, or repository context.
Installation
Claude Code / Cursor / Codex
Manual Installation
- Download SKILL.md from GitHub
- Place it in
.claude/skills/mathjax-rendering/SKILL.mdinside your project - Restart your AI agent — it will auto-discover the skill
How mathjax-rendering Compares
| Feature / Agent | mathjax-rendering | Standard Approach |
|---|---|---|
| Platform Support | Not specified | Limited / Varies |
| Context Awareness | High | Baseline |
| Installation Complexity | Unknown | N/A |
Frequently Asked Questions
What does this skill do?
Render mathematical formulas in Obsidian using LaTeX/MathJax syntax. Use when writing equations, matrices, integrals, summations, or any mathematical notation in Obsidian notes.
Where can I find the source code?
You can find the source code on GitHub using the link provided at the top of the page.
SKILL.md Source
# MathJax Rendering in Obsidian
Obsidian uses MathJax to render LaTeX math expressions. This skill covers essential syntax for mathematical notation.
For complete symbol tables and advanced commands, see [reference.md](reference.md).
## 1. Basic Syntax
### Inline vs Block
```markdown
Inline: The equation $E = mc^2$ appears within text.
Block (centered, display-style):
$$
\int_0^{\infty} e^{-x^2} dx = \frac{\sqrt{\pi}}{2}
$$
```
- **Inline** (`$...$`): Compact, flows with paragraph
- **Block** (`$$...$$`): Larger, centered, multi-line capable
---
## 2. Fractions and Roots
```latex
\frac{a}{b} % Standard fraction
\sqrt{x} % Square root
\sqrt[n]{x} % n-th root
\binom{n}{k} % Binomial coefficient
```
**Examples:**
```latex
$$
\frac{d}{dx}\left(\frac{f(x)}{g(x)}\right) = \frac{f'(x)g(x) - f(x)g'(x)}{[g(x)]^2}
$$
$$
\sqrt{a^2 + b^2} = c \qquad \sqrt[3]{27} = 3
$$
```
---
## 3. Superscripts and Subscripts
```latex
$x^2$ % Superscript
$x_1$ % Subscript
$x_i^2$ % Both combined
$x^{10}$ % Multiple characters need braces
$x_{n+1}$ % Expression as subscript
```
**Note**: Use braces `{}` for multi-character exponents/subscripts.
---
## 4. Greek Letters
### Common Letters
| Lowercase | | Uppercase | |
|-----------|--------|-----------|--------|
| `\alpha` α | `\beta` β | `\Gamma` Γ | `\Delta` Δ |
| `\gamma` γ | `\delta` δ | `\Theta` Θ | `\Lambda` Λ |
| `\epsilon` ε | `\theta` θ | `\Sigma` Σ | `\Phi` Φ |
| `\lambda` λ | `\mu` μ | `\Psi` Ψ | `\Omega` Ω |
| `\pi` π | `\sigma` σ | | |
| `\phi` φ | `\omega` ω | | |
See [reference.md](reference.md) for complete Greek alphabet.
---
## 5. Common Operators and Symbols
| Symbol | Syntax | | Symbol | Syntax |
|--------|--------|---|--------|--------|
| ≤ | `\leq` | | ∈ | `\in` |
| ≥ | `\geq` | | ∉ | `\notin` |
| ≠ | `\neq` | | ⊂ | `\subset` |
| ≈ | `\approx` | | ∪ | `\cup` |
| × | `\times` | | ∩ | `\cap` |
| · | `\cdot` | | ∞ | `\infty` |
| ± | `\pm` | | ∂ | `\partial` |
| ∀ | `\forall` | | ∇ | `\nabla` |
| ∃ | `\exists` | | ∅ | `\emptyset` |
See [reference.md](reference.md) for complete symbol tables.
---
## 6. Matrices
### Matrix Environments
| Environment | Brackets |
|-------------|----------|
| `pmatrix` | ( ) |
| `bmatrix` | [ ] |
| `vmatrix` | \| \| (determinant) |
| `Bmatrix` | { } |
### Examples
```latex
$$
A = \begin{pmatrix}
a & b \\
c & d
\end{pmatrix}
$$
$$
\det(A) = \begin{vmatrix}
a & b \\
c & d
\end{vmatrix} = ad - bc
$$
$$
I = \begin{bmatrix}
1 & 0 & 0 \\
0 & 1 & 0 \\
0 & 0 & 1
\end{bmatrix}
$$
```
### With Ellipsis
```latex
$$
\begin{pmatrix}
a_{11} & \cdots & a_{1n} \\
\vdots & \ddots & \vdots \\
a_{m1} & \cdots & a_{mn}
\end{pmatrix}
$$
```
---
## 7. Aligned Equations
Use `aligned` environment with `&` for alignment and `\\` for line breaks:
```latex
$$
\begin{aligned}
(a+b)^2 &= (a+b)(a+b) \\
&= a^2 + 2ab + b^2
\end{aligned}
$$
```
### Conditional Definitions (cases)
```latex
$$
f(x) = \begin{cases}
x^2 & \text{if } x \geq 0 \\
-x & \text{if } x < 0
\end{cases}
$$
```
### Text in Math
Use `\text{...}` for regular text:
```latex
$$
x = 5 \text{ where } x \in \mathbb{N}
$$
```
---
## 8. Integrals, Sums, and Limits
### Integrals
```latex
$$
\int_a^b f(x) \, dx \qquad \iint_D f \, dA \qquad \oint_C \mathbf{F} \cdot d\mathbf{r}
$$
```
**Tip**: Use `\,` before `dx` for proper spacing.
### Sums and Products
```latex
$$
\sum_{n=1}^{\infty} \frac{1}{n^2} = \frac{\pi^2}{6}
$$
$$
\prod_{i=1}^{n} a_i
$$
```
### Limits
```latex
$$
\lim_{x \to 0} \frac{\sin x}{x} = 1
$$
$$
\lim_{n \to \infty} \left(1 + \frac{1}{n}\right)^n = e
$$
```
---
## 9. Delimiters
Use `\left` and `\right` for auto-sizing:
```latex
$$
\left( \frac{a}{b} \right) \qquad \left[ \sum_{i=1}^{n} x_i \right] \qquad \left\{ x : x > 0 \right\}
$$
```
### One-sided Delimiter
Use `\left.` or `\right.` for invisible delimiter:
```latex
$$
\left. \frac{df}{dx} \right|_{x=0}
$$
```
---
## 10. Font Styles
| Style | Syntax | Use Case |
|-------|--------|----------|
| Bold | `\mathbf{v}` | Vectors |
| Roman | `\mathrm{d}x` | Differential d |
| Blackboard | `\mathbb{R}` | Number sets |
| Calligraphic | `\mathcal{L}` | Operators |
### Number Sets
```latex
$$
\mathbb{N} \subset \mathbb{Z} \subset \mathbb{Q} \subset \mathbb{R} \subset \mathbb{C}
$$
```
---
## 11. Decorations
| Decoration | Syntax |
|------------|--------|
| Hat | `\hat{x}` |
| Bar | `\bar{x}` |
| Tilde | `\tilde{x}` |
| Vector | `\vec{x}` |
| Dot | `\dot{x}` |
| Double dot | `\ddot{x}` |
### Overbrace/Underbrace
```latex
$$
\overbrace{a + b + c}^{\text{sum}} = \underbrace{x + y + z}_{\text{total}}
$$
```
### Arrows
```latex
$$
\overrightarrow{AB} \qquad \overleftarrow{CD}
$$
```
---
## 12. Common Patterns
### Derivatives
```latex
$$
\frac{dy}{dx} \qquad \frac{\partial f}{\partial x} \qquad \nabla f
$$
```
### Norm and Absolute Value
```latex
$$
\|x\| = \sqrt{\sum x_i^2} \qquad |x - y| \leq |x| + |y|
$$
```
### Probability
```latex
$$
P(A \mid B) = \frac{P(B \mid A) P(A)}{P(B)}
$$
$$
\mathbb{E}[X] = \sum_{i} x_i P(X = x_i)
$$
```
---
## Quick Reference
```latex
% Fractions and roots
\frac{a}{b} \sqrt{x} \sqrt[n]{x}
% Greek (common)
\alpha \beta \gamma \theta \lambda \pi \sigma \omega
\Gamma \Delta \Sigma \Omega
% Relations
= \neq \leq \geq \approx \equiv \in \subset
% Operations
+ - \times \div \cdot \pm
% Calculus
\int \sum \prod \lim \partial \nabla
% Sets
\mathbb{R} \mathbb{N} \mathbb{Z} \mathbb{Q} \mathbb{C}
% Decorations
\hat{x} \bar{x} \vec{x} \dot{x}
```Related Skills
3ds Max Rendering
Configure production renders with V-Ray and Corona. Optimize quality vs. render time for architectural visualization, product shots, and animation.
nextjs-rendering
SSG, SSR, ISR, Streaming, and Partial Prerendering (PPR). Use when choosing a rendering strategy (SSG, SSR, ISR, PPR, or Streaming) in Next.js. (triggers: **/page.tsx, **/layout.tsx, generateStaticParams, dynamic, dynamicParams, PPR, streaming)
cloudflare-browser-rendering-automation
Automate Cloudflare Browser Rendering tasks via Rube MCP (Composio). Always search tools first for current schemas.
Daily Logs
Record the user's daily activities, progress, decisions, and learnings in a structured, chronological format.
Socratic Method: The Dialectic Engine
This skill transforms Claude into a Socratic agent — a cognitive partner who guides
Sokratische Methode: Die Dialektik-Maschine
Dieser Skill verwandelt Claude in einen sokratischen Agenten — einen kognitiven Partner, der Nutzende durch systematisches Fragen zur Wissensentdeckung führt, anstatt direkt zu instruieren.
College Football Data (CFB)
Before writing queries, consult `references/api-reference.md` for endpoints, conference IDs, team IDs, and data shapes.
College Basketball Data (CBB)
Before writing queries, consult `references/api-reference.md` for endpoints, conference IDs, team IDs, and data shapes.
Betting Analysis
Before writing queries, consult `references/api-reference.md` for odds formats, command parameters, and key concepts.
Research Proposal Generator
Generate high-quality academic research proposals for PhD applications following Nature Reviews-style academic writing conventions.
Paper Slide Deck Generator
Transform academic papers and content into professional slide deck images with automatic figure extraction.
Medical Imaging AI Literature Review Skill
Write comprehensive literature reviews following a systematic 7-phase workflow.