Requirements
- Target platform
- OpenClaw
- Install method
- Manual import
- Extraction
- Extract archive
- Prerequisites
- OpenClaw
- Primary doc
- SKILL.md
Generate satirical "math slop" ragebait formulas that connect famous constants (φ, π, e, i) in trivially true but profound-looking equations. Outputs LaTeX. Use for math memes or when someone asks for "math slop."
Generate satirical "math slop" ragebait formulas that connect famous constants (φ, π, e, i) in trivially true but profound-looking equations. Outputs LaTeX. Use for math memes or when someone asks for "math slop."
Hand the extracted package to your coding agent with a concrete install brief instead of figuring it out manually.
I downloaded a skill package from Yavira. Read SKILL.md from the extracted folder and install it by following the included instructions. Then review README.md for any prerequisites, environment setup, or post-install checks. Tell me what you changed and call out any manual steps you could not complete.
I downloaded an updated skill package from Yavira. Read SKILL.md from the extracted folder, compare it with my current installation, and upgrade it while preserving any custom configuration unless the package docs explicitly say otherwise. Then review README.md for any prerequisites, environment setup, or post-install checks. Summarize what changed and any follow-up checks I should run.
Generate single-line "ragebait" formulas connecting famous constants in ways that look profound but are trivially true.
node scripts/generate-slop.js # Multiple formulas node scripts/generate-slop.js --count 5
\varphi^{\ln e} = \varphi^{i^4} → φ¹ = φ¹ e^{i\pi} + 1 + \gamma = 0 + \gamma → Euler + γ both sides \tau - 2\pi = e^{i\pi} + 1 → 0 = 0 \sqrt{2}^{\,2} = 2^{\sin^2 x + \cos^2 x} → 2 = 2¹
The script outputs LaTeX. To render as an image, use any LaTeX renderer: Online: latex.codecogs.com, quicklatex.com Local: pdflatex, mathjax, katex
Add zeros: (φ-φ), ln(1), e^{iπ}+1, sin(0) Multiply by ones: e^0, i⁴, sin²θ+cos²θ Both sides: same constant added/multiplied to both sides Euler mashups: variations on e^{iπ}+1=0 Golden ratio: φ² = φ+1 variations
Agent frameworks, memory systems, reasoning layers, and model-native orchestration.
Largest current source with strong distribution and engagement signals.